38 results on '"Ya Nan Han"'
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2. Selecting Related Knowledge via Efficient Channel Attention for Online Continual Learning.
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Ya-nan Han and Jianwei Liu 0006
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- 2022
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3. Adaptive instance similarity embedding for online continual learning.
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Ya-nan Han and Jian-wei Liu
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- 2024
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4. Online Continual Learning via the Knowledge Invariant and Spread-out Properties.
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Ya-nan Han and Jian-Wei Liu 0006
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- 2023
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5. Bilevel Online Deep Learning in Non-stationary Environment.
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Ya-nan Han, Jian-wei Liu 0006, Bing-biao Xiao, Xin-Tan Wang, and Xionglin Luo
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- 2021
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6. Tri-Transformer Hawkes Process: Three Heads are Better Than One.
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Zhi-yan Song, Jianwei Liu 0006, Lu-ning Zhang, and Ya-nan Han
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- 2021
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7. Bilevel Online Deep Learning in Non-stationary Environment.
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Ya-nan Han, Jianwei Liu 0006, Bing-biao Xiao, Xin-Tan Wang, and Xionglin Luo
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- 2022
8. Online Continual Learning via the Meta-learning Update with Multi-scale Knowledge Distillation and Data Augmentation.
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Ya-nan Han and Jian-wei Liu
- Published
- 2022
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- View/download PDF
9. An Improved Latent Low Rank Representation for Automatic Subspace Clustering.
- Author
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Ya-nan Han, Jianwei Liu 0006, and Xiong-Lin Luo
- Published
- 2020
- Full Text
- View/download PDF
10. Greater Biofilm Formation and Increased Biodegradation of Polyethylene Film by a Microbial Consortium of Arthrobacter sp. and Streptomyces sp.
- Author
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Ya-Nan Han, Min Wei, Fang Han, Chao Fang, Dong Wang, Yu-Jie Zhong, Chao-Li Guo, Xiao-Yan Shi, Zhong-Kui Xie, and Feng-Min Li
- Subjects
Arthrobacter ,carbonyl index ,FTIR spectroscopy ,microbial consortium ,plastic biodegradation ,plastic pollution ,Biology (General) ,QH301-705.5 - Abstract
The widespread use of polyethylene (PE) mulch films has led to a significant accumulation of plastic waste in agricultural soils. The biodegradation of plastic waste by microorganisms promises to provide a cost-effective and environmentally-friendly alternative for mitigating soil plastic pollution. A large number of microorganisms capable of degrading PE have been reported, but degradation may be further enhanced by the cooperative activity of multiple microbial species. Here, two novel strains of Arthrobacter sp. and Streptomyces sp. were isolated from agricultural soils and shown to grow with PE film as a sole carbon source. Arthrobacter sp. mainly grew in the suspension phase of the culture, and Streptomyces sp. formed substantial biofilms on the surface of the PE film, indicating that these strains were of different metabolic types and occupied different microenvironments with contrasting nutritional access. Individual strains were able to degrade the PE film to some extent in a 90-day inoculation experiment, as indicated by decreased hydrophobicity, increased carbonyl index and CO2 evolution, and the formation of biofilms on the film surface. However, a consortium of both strains had a much greater effect on these degradation properties. Together, these results provide new insights into the mechanisms of PE biodegradation by a microbial consortium composed of different types of microbes with possible metabolic complementarities.
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- 2020
- Full Text
- View/download PDF
11. IDDF2022-ABS-0124 Breath volatile organic compounds as non-invasive biomarkers for the detection and monitoring of inflammatory bowel disease
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Xiaohui Zhang, Ya-Nan Han, Jing Zhang, and Yixiang Duan
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- 2022
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12. IDDF2022-ABS-0142 UHRF1-mediated NPY1R gene methylation protects intestinal epithelial cells through activation of creb signaling
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Ya-Nan Han, Xiao-Hui Zhang, Li-Na Sun, Hao Liu, Hao-Hao Zhang, Xiao-Xia Ren, Fang-Fan Wang, Jie Chen, Yong-Zhan Nie, Ying Fang, Xiao-Di Zhao, and Kai-Chun Wu
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- 2022
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13. Enhanced Prediction Performance of a Neuromorphic Reservoir Computing System Using a Semiconductor Nanolaser With Double Phase Conjugate Feedbacks
- Author
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Xing Xing Guo, Yue Hao, Ya Nan Han, Shuiying Xiang, Yan Qu, and Ai Jun Wen
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Physics ,Coupling ,Amplitude modulation ,Neuromorphic engineering ,Nanolaser ,Photonic integrated circuit ,Reservoir computing ,Topology ,Atomic and Molecular Physics, and Optics ,Photonic-crystal fiber ,Semiconductor laser theory - Abstract
A neuromorphic reservoir computing (RC) system using a semiconductor nanolaser (SNL) with double phase conjugate feedbacks (PCF) is proposed for the first time and demonstrated numerically. The prediction performance of such RC system is investigated via Santa Fe chaotic time series prediction task. The Purcell cavity-enhanced spontaneous emission factor F and the spontaneous emission coupling factor β are included in the rate equations, and the influences of F and β on the prediction performance of such RC system are analyzed extensively. For the purpose of comparison, the prediction performance of SNL-based RC system with single PCF is also considered. The simulation results indicate that, compared with the SNL-based RC system with single PCF, enhanced prediction performance can be obtained for the SNL-based RC system with double PCF. Moreover, the influences of bias current, the modulation depth of input signal, feedback strength, as well as feedback delay, are also taken into account. The proposed SNL-based RC system subject to double PCF in this paper has the potential to develop the RC-based neuromorphic photonic integrated circuit.
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- 2021
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14. miR-125b Promotes Colorectal Cancer Migration and Invasion by Dual-Targeting CFTR and CGN
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Xiaohui Zhang, Yongzhan Nie, Ya-Nan Han, Pei Wang, Minghui Ge, Lina Sun, Yuanyuan Lu, Tianyu Cao, Hao Liu, Daiming Fan, Tingyu Li, Xiaodi Zhao, Kaichun Wu, and Hao Guo
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Cancer Research ,Gene knockdown ,RHOA ,Cetuximab ,Colorectal cancer ,Neoplasms. Tumors. Oncology. Including cancer and carcinogens ,colorectal cancer ,Biology ,medicine.disease ,migration ,invasion ,Article ,Cystic fibrosis transmembrane conductance regulator ,digestive system diseases ,Metastasis ,Cingulin ,Oncology ,microRNA ,Cancer research ,biology.protein ,medicine ,metastasis ,RC254-282 ,medicine.drug ,miRNA - Abstract
Simple Summary Colorectal cancer (CRC) is the third leading cause for cancer related death, in which metastasis exerts a pivotal role. Therefore, we aim to find out the possible mechanism underlying CRC metastasis. We found that the level of miR-125b was elevated in normal, primary CRC, and distant metastasis tissues stepwise, and high level miR-125b was positively correlated with lymph node metastasis and tumor differentiation. In vitro and in vivo assays showed miR-125b significantly promoted CRC migration and invasion. To elucidate the potential mechanism, cystic fibrosis transmembrane conductance regulator (CFTR) and cingulin (CGN) were defined as two target genes of miR-125b. On the one hand, miR-125b promoted epithelial-mesenchymal transition (EMT) and the production and secretion of urokinase plasminogen activator (uPA) by inhibiting CFTR; on the other hand, miR-125b activated Ras Homolog Family Member A (RhoA)/Rho Kinase (ROCK) signaling by repressing CGN. Therefore, we provided a potential biomarker for CRC prevention and treatment in the future. Abstract Metastasis contributes to the poor prognosis of colorectal cancer, the causative factor of which is not fully understood. Previously, we found that miR-125b (Accession number: MIMAT0000423) contributed to cetuximab resistance in colorectal cancer (CRC). In this study, we identified a novel mechanism by which miR-125b enhances metastasis by targeting cystic fibrosis transmembrane conductance regulator (CFTR) and the tight junction-associated adaptor cingulin (CGN) in CRC. We found that miR-125b expression was upregulated in primary CRC tumors and metastatic sites compared with adjacent normal tissues. Overexpression of miR-125b in CRC cells enhanced migration capacity, while knockdown of miR-125b decreased migration and invasion. RNA-sequencing (RNA-seq) and dual-luciferase reporter assays identified CFTR and CGN as the target genes of miR-125b, and the inhibitory impact of CFTR and CGN on metastasis was further verified both in vitro and in vivo. Moreover, we found that miR-125b facilitated the epithelial-mesenchymal transition (EMT) process and the expression and secretion of urokinase plasminogen activator (uPA) by targeting CFTR and enhanced the Ras Homolog Family Member A (RhoA)/Rho Kinase (ROCK) pathway activity by targeting CGN. Together, these findings suggest miR-125b as a key functional molecule in CRC and a promising biomarker for the diagnosis and treatment of CRC.
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- 2021
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15. 5-methylcytosine promotes pathogenesis of bladder cancer through stabilizing mRNAs
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Hailin Wang, Zhuo Wei Liu, Dan Xie, Wen Su Wei, Ya Nan Han, Xiao Dan Ma, Xin Chen, Ang Li, Yanchao Liu, Mengmeng Zhang, Yu-Sheng Chen, Bao-Fa Sun, Fang Jian Zhou, Jun Hang Luo, Ying Yang, Yun-Gui Yang, Cong Lyu, Yong-Liang Zhao, Ri Xin Chen, Jinbiao Ma, Xun Yuan, Ying Huang, and Chun Chun Gao
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Untranslated region ,Biology ,Methylation Site ,Pathogenesis ,Mice ,03 medical and health sciences ,0302 clinical medicine ,Downregulation and upregulation ,medicine ,Animals ,Humans ,RNA, Messenger ,030304 developmental biology ,Carcinoma, Transitional Cell ,0303 health sciences ,Messenger RNA ,Oncogene ,RNA ,Cancer ,Methyltransferases ,Cell Biology ,medicine.disease ,Cell biology ,Gene Expression Regulation ,Urinary Bladder Neoplasms ,030220 oncology & carcinogenesis ,5-Methylcytosine ,Y-Box-Binding Protein 1 - Abstract
Although 5-methylcytosine (m5C) is a widespread modification in RNAs, its regulation and biological role in pathological conditions (such as cancer) remain unknown. Here, we provide the single-nucleotide resolution landscape of messenger RNA m5C modifications in human urothelial carcinoma of the bladder (UCB). We identify numerous oncogene RNAs with hypermethylated m5C sites causally linked to their upregulation in UCBs and further demonstrate YBX1 as an m5C 'reader' recognizing m5C-modified mRNAs through the indole ring of W65 in its cold-shock domain. YBX1 maintains the stability of its target mRNA by recruiting ELAVL1. Moreover, NSUN2 and YBX1 are demonstrated to drive UCB pathogenesis by targeting the m5C methylation site in the HDGF 3' untranslated region. Clinically, a high coexpression of NUSN2, YBX1 and HDGF predicts the poorest survival. Our findings reveal an unprecedented mechanism of RNA m5C-regulated oncogene activation, providing a potential therapeutic strategy for UCB.
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- 2019
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16. Effect of plastic film mulching and film residues on phthalate esters concentrations in soil and plants, and its risk assessment
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Xiao-Yan Shi, Feng-Min Li, Yue Xi, Dong Wang, Chao-Li Guo, Yu-Jie Zhong, and Ya-Nan Han
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China ,animal structures ,010504 meteorology & atmospheric sciences ,Health, Toxicology and Mutagenesis ,Harvest time ,Plastic film ,Phthalic Acids ,010501 environmental sciences ,Toxicology ,01 natural sciences ,Risk Assessment ,Crop ,chemistry.chemical_compound ,Soil ,Humans ,Soil Pollutants ,0105 earth and related environmental sciences ,Phthalate ,Agriculture ,Esters ,General Medicine ,Hazard index ,Pollution ,Zea mays ,Horticulture ,chemistry ,Soil water ,Mulch ,Plastics - Abstract
The application of plastic film mulching can greatly improve dryland productivity, while the release of toxic phthalate esters (PAEs) from the plastic film has generated concern. This study investigated the effects of mulched plastic film and residual plastic film on the PAE concentrations in the soil-crop system and assessed the risks to people eating crop products. The PAEs concentration in the 0–25 cm soil layer of plastic mulched farmland was 0.45–0.81 mg/kg, while the average PAEs concentration of 0.37–0.73 mg/kg in non-mulched farmland decreased by 19%. The PAEs concentration in mulched soil reached the highest in July, being 0.80–0.84 mg/kg, while in the non-mulched soil, the PAEs also appeared and gradually decreased from May at 0.62–0.74 mg/kg to October, and the PAEs concentrations were almost the same in the mulched and non–mulched soils at the harvest time in October at 0.37–0.44 mg/kg. With the amounts of residual film in farmland increasing from 0 kg/ha to 2700 kg/ha (equivalent to the total amount of residual film after 60 years of continuous plastic film mulching), the PAEs concentrations were no significant changes, being 0.54–0.93 mg/kg. Maize (Zea mays L.) roots could absorb and accumulate PAEs, and the bio-concentration factor (BCF) was 1.6–2.3, and the average PAEs concentrations in stems, leaves, and grains were 79%–80% of those in roots at 0.77–1.47 mg/kg. For the ingestion of maize grains or potato (Solanum tuberosum L.) tubers grown in plastic film mulched farmland or farmland containing residual film of 450–2700 kg/ha, the hazard index (HI) were less than 1, the carcinogenic risks (CRs) were 2.5 × 10−7–2.2 × 10−6, and the estrogenic equivalences were 6.17–17.73 ng E2/kg. This study provides important data for the risk management of PAEs in farmlands.
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- 2021
17. Bilevel Online Deep Learning in Non-stationary Environment
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Jian-Wei Liu, Bing-biao Xiao, Xin-Tan Wang, Xionglin Luo, and Ya-nan Han
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Concept drift ,Artificial neural network ,Computer science ,business.industry ,Deep learning ,Word error rate ,Machine learning ,computer.software_genre ,Bilevel optimization ,ComputingMethodologies_PATTERNRECOGNITION ,Classifier (linguistics) ,Probability distribution ,Artificial intelligence ,Gradient descent ,business ,computer - Abstract
Recent years have witnessed enormous progress of online learning. However, a major challenge on the road to artificial agents is concept drift, that is, the data probability distribution would change where the data instance arrives sequentially in a stream fashion, which would lead to catastrophic forgetting and degrade the performance of the model. In this paper, we proposed a new Bilevel Online Deep Learning (BODL) framework, which combine bilevel optimization strategy and online ensemble classifier. In BODL algorithm, we use an ensemble classifier, which use the output of different hidden layers in deep neural network to build multiple base classifiers, the important weights of the base classifiers are updated according to exponential gradient descent method in an online manner. Besides, we apply the similar constraint to overcome the convergence problem of online ensemble framework. Then an effective concept drift detection mechanism utilizing the error rate of classifier is designed to monitor the change of the data probability distribution. When the concept drift is detected, our BODL algorithm can adaptively update the model parameters via bilevel optimization and then circumvent the large drift and encourage positive transfer. Finally, the extensive experiments and ablation studies are conducted on various datasets and the competitive numerical results illustrate that our BODL algorithm is a promising approach.
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- 2021
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18. Truncated cotton subtilase promoter directs guard cell-specific expression of foreign genes in tobacco and Arabidopsis.
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Lei Han, Ya-Nan Han, and Xing-Guo Xiao
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Medicine ,Science - Abstract
A 993-bp regulatory region upstream of the translation start codon of subtilisin-like serine protease gene was isolated from Gossypium barbadense. This (T/A)AAAG-rich region, GbSLSP, and its 5'- and 3'-truncated versions were transferred into tobacco and Arabidopsis after fusing with GUS or GFP. Histochemical and quantitative GUS analysis and confocal GFP fluorescence scanning in the transgenic plants showed that the GbSLSP-driven GUS and GFP expressed preferentially in guard cells, whereas driven by GbSLSPF2 to GbSLSPF4, the 5'-truncated GbSLSP versions with progressively reduced Dof1 elements, both GUS and GFP expressed exclusively in guard cells, and the expression strength declined with (T/A)AAAG copy decrement. Deletion of 5'-untranslated region from GbSLSP markedly weakened the activity of GUS and GFP, while deletion from the strongest guard cell-specific promoter, GbSLSPF2, not only significantly decreased the expression strength, but also completely abolished the guard cell specificity. These results suggested both guard cell specificity and expression strength of the promoters be coordinately controlled by 5'-untranslated region and a cluster of at least 3 (T/A)AAAG elements within a region of about 100 bp relative to transcription start site. Our guard cell-specific promoters will enrich tools to manipulate gene expression in guard cells for scientific research and crop improvement.
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- 2013
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19. Greater Biofilm Formation and Increased Biodegradation of Polyethylene Film by a Microbial Consortium of Arthrobacter sp. and Streptomyces sp
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Chao Fang, Fang Han, Yu-Jie Zhong, Min Wei, Chao-Li Guo, Zhongkui Xie, Xiao-Yan Shi, Feng-Min Li, Ya-Nan Han, and Dong Wang
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Microbiology (medical) ,Microorganism ,0211 other engineering and technologies ,plastic biodegradation ,02 engineering and technology ,010501 environmental sciences ,01 natural sciences ,Microbiology ,Streptomyces ,Article ,plastic pollution ,microbial consortium ,Virology ,Arthrobacter ,Food science ,lcsh:QH301-705.5 ,0105 earth and related environmental sciences ,021110 strategic, defence & security studies ,biology ,Chemistry ,Biofilm ,water contact angle ,Biodegradation ,Microbial consortium ,biology.organism_classification ,FTIR spectroscopy ,carbonyl index ,lcsh:Biology (General) ,SEM ,Degradation (geology) ,Mulch - Abstract
The widespread use of polyethylene (PE) mulch films has led to a significant accumulation of plastic waste in agricultural soils. The biodegradation of plastic waste by microorganisms promises to provide a cost-effective and environmentally-friendly alternative for mitigating soil plastic pollution. A large number of microorganisms capable of degrading PE have been reported, but degradation may be further enhanced by the cooperative activity of multiple microbial species. Here, two novel strains of Arthrobacter sp. and Streptomyces sp. were isolated from agricultural soils and shown to grow with PE film as a sole carbon source. Arthrobacter sp. mainly grew in the suspension phase of the culture, and Streptomyces sp. formed substantial biofilms on the surface of the PE film, indicating that these strains were of different metabolic types and occupied different microenvironments with contrasting nutritional access. Individual strains were able to degrade the PE film to some extent in a 90-day inoculation experiment, as indicated by decreased hydrophobicity, increased carbonyl index and CO2 evolution, and the formation of biofilms on the film surface. However, a consortium of both strains had a much greater effect on these degradation properties. Together, these results provide new insights into the mechanisms of PE biodegradation by a microbial consortium composed of different types of microbes with possible metabolic complementarities.
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- 2020
20. Effects of Tensile Stress and Soil Burial on Mechanical and Chemical Degradation Potential of Agricultural Plastic Films
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Xu-Long Zhang, Yang-Yang Zhao, Feng-Min Li, Min Wei, Xiao-Yan Shi, Zhongkui Xie, Dong Wang, Ya-Nan Han, Meng Kong, and Xin Song
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Materials science ,Geography, Planning and Development ,Plastic film ,TJ807-830 ,010501 environmental sciences ,Management, Monitoring, Policy and Law ,TD194-195 ,01 natural sciences ,Renewable energy sources ,soil burial ,Crystallinity ,chemistry.chemical_compound ,GE1-350 ,Soil properties ,Composite material ,polyethylene film ,Chemical decomposition ,0105 earth and related environmental sciences ,Environmental effects of industries and plants ,Renewable Energy, Sustainability and the Environment ,04 agricultural and veterinary sciences ,Polyethylene ,Environmental sciences ,biodegradable film ,chemistry ,oxo-biodegradable film ,Soil water ,040103 agronomy & agriculture ,tensile stress ,plastic degradation ,0401 agriculture, forestry, and fisheries ,Degradation (geology) ,Mulch - Abstract
Plastic film mulching is widely practiced in arid and semiarid farming systems, but the accumulation of plastic residues in soils can negatively affect soil properties. Therefore, efficient means of plastic film degradation are urgently needed to mitigate its unfriendly environmental impacts for sustainable land use. Here, we characterized the effects of tensile stress (TS) and soil burial (SB) on potential degradation properties of three film types: Polyethylene film (PEF), oxo-biodegradable film (OBDF), and biodegradable film (BDF). Weight loss, mechanical properties, hydrophilicity, functional groups, and crystallinity were recorded after TS and SB treatments. The results indicated that: (1) Weight loss of plastic films was associated with SB, although the extent of weight loss depended on film type and was highest in BDF, (2) application of TS before SB weakened the mechanical properties of the films and increased their hydrophilicity, creating favorable conditions for the settlement of microorganisms on the film surface, (3) PEF treated with TS and SB had higher functional group indices and lower crystallinity. Our results highlighted that the combination of TS and SB has the potential to accelerate plastic film degradation.
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- 2020
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21. An Improved Latent Low Rank Representation for Automatic Subspace Clustering
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Xiong-lin Luo, Ya-nan Han, and Jian-wei Liu
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Computer Science::Machine Learning ,ComputingMethodologies_PATTERNRECOGNITION ,Subspace clustering ,business.industry ,Rank (computer programming) ,Representation (systemics) ,Pattern recognition ,Artificial intelligence ,business ,Mathematics - Abstract
There is growing interest in low rank representation (LRR) for subspace clustering. Existing latent LRR methods can exploit the global structure of data when the observations are insufficient and/or grossly corrupted, but it cannot capture the intrinsic structure due to the neglect of the local information of data. In this paper, we proposed an improved latent LRR model with a distance regularization and a non-negative regularization jointly, which can effectively discover the global and local structure of data for graph learning and improve the expression of the model. Then, an efficiently iterative algorithm is developed to optimize the improved latent LRR model. In addition, traditional subspace clustering characterizes a fixed numbers of cluster, which cannot efficiently make model selection. An efficiently automatic subspace clustering is developed via the bias and variance trade-off, where the numbers of cluster can be automatically added and discarded on the fly.
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- 2020
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22. Comparative Analysis of Clinical Characteristics in Children and Adults with 2019 Novel Coronavirus Infection: A Descriptive Study
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Li-na Sun, Yong-ming Xue, Ying Fang, Xiao-xia Ren, Zhan-wei Feng, Yi Wang, Ya-nan Han, and Hua Wang
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medicine.medical_specialty ,business.industry ,Internal medicine ,Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) ,medicine ,Descriptive research ,business - Abstract
Background: Since December 2019, acute respiratory disease (ARD) caused by 2019 novel coronavirus (2019-nCoV) rapidly spread throughout China. Children and adults seemed to differ in the clinical course of the disease. The purpose of the current study is to comparatively analyze the clinical characteristics of children and adult patients with 2019-nCoV infection and to explore the possible causes for the discrepant aspects.Methods: In this retrospective study, the medical records of 32 cases confirmed with 2019-nCoV ARD from Xi'an eighth hospital (Shaanxi, China) from January 31 to February 16, 2020 were reviewed.Results: In all 32 patients contained 7 children and 25 adults. All children were family cluster. For adult patients, local residents of Wuhan, recently travelled to Wuhan, patient contacted with people from Wuhan were 14 (56%), 10 (40%), 1 (4%), respectively. The median incubation period of children and adult was 5 days (range, 3 to 12) and 4 days (range, 2 to 12), respectively. Altogether 10 (40%) adult patients had underlying conditions significantly, but no children had. Fever (Children 71.4% vs. Adult 96%) and cough (Children 71.4% vs. Adult 76%) were the most common symptoms in both groups. The third symptom observed in children was diarrhea and/or vomiting (57.1%), for adult it was myalgia or fatigue (52%). On admission, 5 (71.4%) children patients showed pneumonia roughly the same as adult patients (20, 80%), and that the two group shared a multitude of common imaging characteristics. 20% of adult with leucopoenia, but leukocytosis was significantly more frequently in children (28.6%, P=0.014). More children had elevated creatine kinase isoenzyme (57.1% vs. 4%, P=0.004). All patients were discharged after symptomatic treatment, including oxygen therapy, antiviral treatment, antibiotic treatment. Only one infant was intravenously injected low-dose glucocorticoids.Conclusions: Our results multi-dimensionally demonstrate that children with 2019-nCoV infection present a clinical picture which is often distinct from that of adults. Knowledge of these differences will be helpful for the clinical diagnosis of 2019 novel coronavirus diseases (COVID-19) and for a future discussion on age specific infection case definitions.
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- 2020
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23. Application of UPFC to mitigate SSR in series‐compensated wind farms
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Bin Zheng, Du Ning, Peipeng Zhou, Jiang Hongli, Song Ruihua, Ya-nan Han, and Daye Yang
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series-compensated system ,grid-connected wind farms ,power generation control ,series transformer−converter ,series-compensated lines ,Computer science ,time-domain simulation ,wind power plants ,SSR characteristics ,Energy Engineering and Power Technology ,effective functionalities ,flexible AC transmission systems ,subsynchronous damping controllers ,wind farm integrations ,system operation security ,power transmission control ,power system stability ,dq decoupling control ,Control theory ,wind turbines ,series-compensated wind farms ,subsynchronous resonance ,damping ,Series (mathematics) ,simulation model ,service reliability ,UPFC' ,General Engineering ,mechanical facilities ,power grids ,time-domain analysis ,power convertors ,control strategy ,complex torque coefficient method ,lcsh:TA1-2040 ,load flow control ,system resonance characteristics ,lcsh:Engineering (General). Civil engineering (General) ,Software ,unified power flow controller - Abstract
Flexible AC transmission systems have shown effective functionalities in promoting the system operation security and service reliability. Facing with series-compensated lines, subsynchronous resonance (SSR) may jeopardise the stability and mechanical facilities. The control strategy and simulation model of a unified power flow controller (UPFC) based on the dq decoupling control are deduced and constructed. Considering the impacts of grid-connected wind farms, SSR characteristics of the series-compensated system with UPFC are studied by the complex torque coefficient method and time-domain simulation. The results verify the capability of UPFC in attenuating SSR in wind farm integrations by utilising subsynchronous damping controllers coordinated with UPFC's main controllers. It also suggests that the shunt transformer−converter has a slight effect on SSR, whereas the series transformer−converter affects the system resonance characteristics significantly. Simulations are carried out on a typical power system model integrated with wind turbines.
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- 2018
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24. Mechanisms of wheat (Triticum aestivum) grain storage proteins in response to nitrogen application and its impacts on processing quality
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Yan Wang, Pengfei Qi, Ma Hongliang, Qing Chen, Jiang-Ping Wang, Qian-Tao Jiang, Ya-Zhou Zhang, Yong-Li Cao, Yuan-Yuan Qiao, You-Liang Zheng, Xiujin Lan, Gaoqiong Fan, Jing Zhu, Ze-Hong Yan, Ya-Nan Han, Yu-Ming Wei, Ting Zheng, Hai-Yue Yu, Jirui Wang, Li Kong, Shi-Yu Hua, Zhen-Ru Guo, and Cai-Yi Zhou
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0106 biological sciences ,0301 basic medicine ,China ,Nitrogen ,lcsh:Medicine ,Biology ,01 natural sciences ,Article ,03 medical and health sciences ,Anthesis ,Glutamine synthetase ,Storage protein ,Food-Processing Industry ,Cultivar ,Plant breeding ,Common wheat ,lcsh:Science ,Genetic Association Studies ,Plant Physiological Phenomena ,Triticum ,Plant Proteins ,chemistry.chemical_classification ,Multidisciplinary ,lcsh:R ,Gluten ,Plant Breeding ,Horticulture ,030104 developmental biology ,chemistry ,Plant protein ,Seeds ,lcsh:Q ,Edible Grain ,Transcriptome ,010606 plant biology & botany - Abstract
Basis for the effects of nitrogen (N) on wheat grain storage proteins (GSPs) and on the establishment of processing quality are far from clear. The response of GSPs and processing quality parameters to four N levels of four common wheat cultivars were investigated at two sites over two growing seasons. Except gluten index (GI), processing quality parameters as well as GSPs quantities were remarkably improved by increasing N level. N level explained 4.2~59.2% and 10.4~80.0% variability in GSPs fractions and processing quality parameters, respectively. The amount of N remobilized from vegetative organs except spike was significantly increased when enhancing N application. GSPs fractions and processing quality parameters except GI were only highly and positively correlated with the amount of N remobilized from stem with sheath. N reassimilation in grain was remarkably strengthened by the elevated activity and expression level of glutamine synthetase. Transcriptome analysis showed the molecular mechanism of seeds in response to N levels during 10~35 days post anthesis. Collectively, we provided comprehensive understanding of N-responding mechanisms with respect to wheat processing quality from N source to GSPs biosynthesis at the agronomic, physiological and molecular levels, and screened candidate genes for quality breeding.
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- 2018
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25. Research on Key Technical Problem of System Commissioning of Sutong GIL Utility Tunnel Project
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Ning, DU, primary, Wen-jia, XU, additional, Zu-tao, XIANG, additional, Ya-nan, HAN, additional, Pei-peng, ZHOU, additional, Da-ye, YANG, additional, and Chang-yuan, XIANG, additional
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- 2020
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26. Neuromorphic Reservoir Computing System Using a Semiconductor Nanolaser with Double Phase Conjugate Feedbacks
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Shuiying Xiang, Yan Qu, Ya Nan Han, Xing Xing Guo, Ai Jun Wen, and Yue Hao
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Materials science ,business.industry ,Nanolaser ,Reservoir computing ,02 engineering and technology ,01 natural sciences ,Semiconductor laser theory ,020210 optoelectronics & photonics ,Semiconductor ,Neuromorphic engineering ,0103 physical sciences ,0202 electrical engineering, electronic engineering, information engineering ,Optoelectronics ,Spontaneous emission ,010306 general physics ,business ,Photonic-crystal fiber ,Conjugate - Abstract
A neuromorphic reservoir computing (RC) system using a semiconductor nanolaser (SNL) with double phase conjugate feedbacks (PCF) is proposed for the first time and demonstrated numerically, and enhanced performance can be obtained. © 2020 The Author(s)
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- 2020
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27. Reduction effects of solar radiation, mechanical tension, and soil burial on phthalate esters concentrations in plastic film and soils
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Ya-Nan Han, Ning Zhang, Xiao-Yan Shi, Farhan Ahmad, Dong Wang, Feng-Min Li, and Yue Xi
- Subjects
Field exposure ,animal structures ,Environmental Engineering ,010504 meteorology & atmospheric sciences ,Chemistry ,Plastic film ,Phthalate ,010501 environmental sciences ,Polyethylene ,Mechanical tension ,01 natural sciences ,Pollution ,chemistry.chemical_compound ,Environmental chemistry ,Soil water ,Environmental Chemistry ,Waste Management and Disposal ,0105 earth and related environmental sciences - Abstract
Phthalate esters (PAEs) are potentially dangerous chemicals in plastic film mulched fields; however, few studies have investigated how to reduce their concentrations in plastic film and soil. In this study, the effects of solar radiation, mechanical tension, and soil burial on PAEs concentrations in polyethylene (PE) film and degradable film were investigated, and the half-lives of di-n-butyl phthalate (DBP) and di(2-ethylhexyl) phthalate (DEHP) in soil also studied. PAEs concentrations in polyethylene films were about twice those in the degradable films; however, PAEs concentrations in all experimental films were similar after 1-year of field exposure. Mechanical tension had no effect on the PAEs concentrations of polyethylene films, but increased the detected concentrations of PAEs in degradable films by 34%–120%. After 4-years of burial, the PAEs concentrations in films decreased by 79.2%–98.0%, and mechanical tension promoted the reductions. However, there was little difference in PAEs concentrations between the buried soils with and without films, indicating the released PAEs reduced quickly in soil. Also, the half-lives of DBP and DEHP were 2.4–4.6 days and 18.5–41.4 days, respectively. Overall, the results presented herein provide reasonable approaches to reduce the concentrations of PAEs in plastic films and soils.
- Published
- 2021
- Full Text
- View/download PDF
28. A missense mutation affects the mobility of high molecular weight glutenin Dy10 subunit in SDS-PAGE
- Author
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Ya-Nan Han, Yuming Wei, Lu-Juan Zong, Zheng-Yuan Wei, Chen Chen, Yan Wang, Qing Chen, Jirui Wang, Xiujin Lan, Cai-Hong Liu, Yuan-Yuan Qiao, Yong-Li Cao, Qing-Yun Zheng, Zhen-Ru Guo, Pengfei Qi, Shi-Yu Hua, Xi Gong, Bin-Jie Xu, and You-Liang Zheng
- Subjects
0106 biological sciences ,0301 basic medicine ,biology ,Protein subunit ,Mutant ,food and beverages ,01 natural sciences ,Agricultural and Biological Sciences (miscellaneous) ,Molecular biology ,03 medical and health sciences ,030104 developmental biology ,Glutenin ,GenBank ,Genetics ,biology.protein ,Missense mutation ,Single amino acid ,Amino acid residue ,Polyacrylamide gel electrophoresis ,010606 plant biology & botany ,Biotechnology - Abstract
High-molecular-weight glutenin subunits (HMW-GS) are important in wheat end-use quality. We characterized a HMW-GS Dy10 mutant subunit with faster mobility than Dy10 in SDS-PAGE, and with equal mobility to Dy10 in urea-containing SDS-PAGE gel. A missense mutation was identified in the mutant subunit, which led to substitution of the 328th amino acid residue from ser (S) to phe (F) in the repetitive domain. The Dy10 subunit containing the missense mutation was designated as Dy10-m328SF (Genbank No. KU934284). Our results indicate that a single amino acid substitution in the repetitive domain can change the mobility of Dy10.
- Published
- 2016
- Full Text
- View/download PDF
29. Sulforaphane attenuates cisplatin-induced hearing loss by inhibiting histone deacetylase expression
- Author
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Ya-Nan Han, Jie Wang, Ying Fang, Fu-Quan Chen, Ke-Yong Tian, and Hui-Min Chang
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0301 basic medicine ,medicine.drug_class ,Hearing loss ,Immunology ,sulforaphane ,Antineoplastic Agents ,Cell Count ,Histone Deacetylases ,03 medical and health sciences ,chemistry.chemical_compound ,0302 clinical medicine ,Ototoxicity ,Isothiocyanates ,Evoked Potentials, Auditory, Brain Stem ,medicine ,HDAC inhibitor ,Animals ,Immunology and Allergy ,Cilia ,Original Research Article ,Rats, Wistar ,Hearing Loss ,histone deacetylase inhibitor ,Pharmacology ,Cisplatin ,Dose-Response Relationship, Drug ,biology ,Histone deacetylase inhibitor ,medicine.disease ,Cochlea ,Rats ,Histone Deacetylase Inhibitors ,Hair Cells, Auditory, Outer ,ototoxicity ,030104 developmental biology ,Histone ,chemistry ,Sulfoxides ,030220 oncology & carcinogenesis ,histone deacetylase ,biology.protein ,Cancer research ,Histone deacetylase ,medicine.symptom ,medicine.drug ,Sulforaphane - Abstract
Introduction Cruciferous vegetables are a rich source of sulforaphane (SFN), which acts as a natural HDAC inhibitor (HDACi). Our previous study found that HDACi could restore histone acetyltransferase/histone deacetylase (HAT/HDAC) balance in the cochlea and attenuate gentamicin-induced hearing loss in guinea pigs. Here, we investigated the protective effect of SFN on cisplatin-induced hearing loss (CIHL). Methods Thirty rats were randomly divided into 3 equal groups: the control group, cisplatin group, and SFN+cisplatin group. Rats were injected with SFN (30 mg/kg once a day) and cisplatin (7 mg/kg twice a day) for 7 days to investigate the protective role of SFN on CIHL. We observed auditory brainstem response (ABR) threshold shifts and immunostained cochlear basilar membranes of rats. For in vitro experiments, we treated HEI-OC1 cells and rat cochlear organotypic cultures with SFN (5, 10, and 15 μM) and cisplatin (10 μM). Immunofluorescence, cell viability, and protein analysis were performed to further analyze the protective mechanism of SFN on CIHL. Results SFN (30 mg/kg once a day) decreased cisplatin (7 mg/kg twice a day)-induced ABR threshold shifts and outer hair cell loss. CCK-8 assay showed that cisplatin (10 μM) reduced the viability of HEI-OC1 cells to 42%, and SFN had a dose-dependent protective effect. In cochlear organotypic cultures, we found that SFN (10 and 15 μM) increased cisplatin (10 μM)-induced myosin 7a+ cell count and restored ciliary morphology. SFN (5, 10, and 15 μM) reversed the cisplatin (10 μM)-induced increase in HDAC2, -4, and -5 and SFN (15 μM) reversed the cisplatin (10 μM)-induced decrease in H3-Ack9 [acetyl-histone H3 (Lys9)] protein expression in HEI-OC1 cells. Neither cisplatin nor cisplatin combined with SFN affected the expression of HDAC7, or HDAC9. Conclusion SFN prevented disruption of the HAT/HDAC balance, protecting against CIHL in rats.
- Published
- 2021
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30. Research on Subsynchronous Oscillation in 750 kV Qinghai Grid of China
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Miao Miao, Wen Shengyi, Ning Du, Rui-hua Song, Hong-xia Li, Pei-peng Zhou, Zhang Xiangcheng, Tao Xin, and Ya-nan Han
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Meteorology ,Oscillation ,Environmental science ,Grid ,China - Published
- 2018
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- View/download PDF
31. A PPO Promoter from Betalain-Producing Red Swiss Chard, Directs Petiole- and Root-Preferential Expression of Foreign Gene in Anthocyanins-Producing Plants
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Xing-Guo Xiao, Zhi-Hai Yu, and Ya-Nan Han
- Subjects
Arabidopsis ,Genetically modified crops ,Plant Roots ,Anthocyanins ,lcsh:Chemistry ,chemistry.chemical_compound ,polyphenol oxidase (PPO) ,Gene Expression Regulation, Plant ,Gene expression ,Cloning, Molecular ,Promoter Regions, Genetic ,lcsh:QH301-705.5 ,Abscisic acid ,Spectroscopy ,Methyl jasmonate ,food and beverages ,General Medicine ,Plants, Genetically Modified ,Computer Science Applications ,Shoot ,Gibberellin ,Beta vulgaris ,Catechol Oxidase ,vegetative organ ,Molecular Sequence Data ,Biology ,root-preferential expression ,Article ,Catalysis ,Petiole (botany) ,Inorganic Chemistry ,food ,Botany ,Beta vulgaris subsp. cicla ,Physical and Theoretical Chemistry ,Molecular Biology ,anthocyanin-producing plant ,betalain-producing plant ,development stage ,petiole-preference ,promoter ,Base Sequence ,fungi ,Organic Chemistry ,Swiss Chard ,food.food ,lcsh:Biology (General) ,lcsh:QD1-999 ,chemistry - Abstract
A 1670 bp 5'-flanking region of the polyphenol oxidase (PPO) gene was isolated from red Swiss chard, a betalain-producing plant. This region, named promoter BvcPPOP, and its 5'-truncated versions were fused with the GUS gene and introduced into Arabidopsis, an anthocyanins-producing plant. GUS histochemical staining and quantitative analysis of transgenic plants at the vegetative and reproductive stages showed that BvcPPOP could direct GUS gene expression in vegetative organs with root- and petiole-preference, but not in reproductive organs including inflorescences shoot, inflorescences leaf, flower, pod and seed. This promoter was regulated by developmental stages in its driving strength, but not in expression pattern. It was also regulated by the abiotic stressors tested, positively by salicylic acid (SA) and methyl jasmonate (MeJA) but negatively by abscisic acid (ABA), gibberellin (GA), NaCl and OH(-). Its four 5'-truncated versions varied in the driving strength, but not obviously in expression pattern, and even the shortest version (-225 to +22) retained the root- and petiole- preference. This promoter is, to our knowledge, the first PPO promoter cloned and functionally elucidated from the betalain-producing plant, and thus provides not only a useful tool for expressing gene(s) of agricultural interest in vegetative organs, but also a clue to clarify the function of metabolism-specific PPO in betalain biosynthesis.
- Published
- 2015
- Full Text
- View/download PDF
32. Synthesis of novel temperature responsive PEG-b-[PCL-g-P(MEO2MA-co-OEGMA)]-b-PEG (tBG) triblock-graft copolymers and preparation of tBG/graphene oxide composite hydrogels via click chemistry
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Ya-Nan Han, Yue-Ming An, Weijuan Sheng, Shouxin Liu, Teng Liu, Rong Tian, and Qinqin Wang
- Subjects
Materials science ,Polymers and Plastics ,Atom-transfer radical-polymerization ,General Chemical Engineering ,General Chemistry ,Methacrylate ,Biochemistry ,Lower critical solution temperature ,chemistry.chemical_compound ,chemistry ,Polymerization ,PEG ratio ,Polymer chemistry ,Self-healing hydrogels ,Materials Chemistry ,Copolymer ,Environmental Chemistry ,Ethylene glycol - Abstract
Novel triblock-graft copolymers, poly ethylene glycol-b-[poly(e-caprolactone)-g-poly(2-(2-methoxyethoxy) ethyl methacrylate-co-oligo (ethylene glycol) methacrylate)]-b-poly ethylene glycol (PEG-b-[PCL-g-P(MEO2MA-co-OEGMA)]-b-PEG) (tBG), were synthesized via ring-opening polymerization (ROP) and atom transfer radical polymerization (ATRP). In the synthesis process, temperature responsive P(MEO2MA-co-OEGMA) chains were grafted onto the PCL block of triblock copolymer PEG-b-PCL-b-PEG to improve its hydrophilicity. This method succeeded in increasing the solubility of PEG-b-PCL-b-PEG in water, and more importantly, endowing PEG-b-PCL-b-PEG with temperature sensitivity. By adjusting the feed ratio of 2-(2-methoxy ethoxy) ethyl methacrylate (MEO2MA) and oligo (ethylene glycol) methacrylate (OEGMA) monomers, the lower critical solution temperature (LCST) of the tBG can be realized at about 37 °C. Taking advantage of the excellent mechanical property of graphene sheets, alkyne-functionalized graphene oxide (alkyne-GO) was introduced to cross-link tBGs and prepare tBG/GO composite hydrogel through click reaction between tBG-N3 and alkyne-GO. Different from traditional cross-linkers, alkyne-GO acts as reinforcing filler in the composite hydrogel. Benefiting from superior properties of PCL, PEG, P(MEO2MA-co-OEGMA) and GO, the as-prepared temperature responsive tBG/GO hydrogel exhibits excellent mechanical strength and toughness, demonstrating future potential applications in tissue engineering and biotechnology fields.
- Published
- 2015
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33. Linoleic acid isomerase gene FgLAI12 affects sensitivity to salicylic acid, mycelial growth and virulence of Fusarium graminearum
- Author
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Ya-Nan Han, Yuan-Yuan Qiao, Yu-Ming Wei, Zhen-Zhen Wei, Zhen-Ru Guo, Qian-Tao Jiang, You-Liang Zheng, Wei Li, Bin-Jie Xu, Pengfei Qi, Chen Chen, Lu-Juan Zong, Ya-Zhou Zhang, Yong-Li Cao, Cai-Hong Liu, Mei Deng, Xiang Feng, Qing Chen, Ting Zheng, and Yan Wang
- Subjects
0106 biological sciences ,0301 basic medicine ,Fusarium ,Hypha ,Linoleic acid ,Conjugated linoleic acid ,Genes, Fungal ,Virulence ,01 natural sciences ,Article ,Microbiology ,Linoleic Acid ,03 medical and health sciences ,chemistry.chemical_compound ,Isomerism ,Isomerases ,Triticum ,Mycelium ,Plant Diseases ,Multidisciplinary ,biology ,Genetic Complementation Test ,Fungal genetics ,food and beverages ,Spores, Fungal ,biology.organism_classification ,030104 developmental biology ,Biochemistry ,chemistry ,Biocatalysis ,Salicylic Acid ,Gene Deletion ,Salicylic acid ,Subcellular Fractions ,010606 plant biology & botany - Abstract
Fusarium graminearum is the major causal agent of fusarium head blight in wheat, a serious disease worldwide. Linoleic acid isomerase (LAI) catalyses the transformation of linoleic acid (LA) to conjugated linoleic acid (CLA), which is beneficial for human health. We characterised a cis-12 LAI gene of F. graminearum (FGSG_02668; FgLAI12), which was downregulated by salicylic acid (SA), a plant defence hormone. Disruption of FgLAI12 in F. graminearum resulted in decreased accumulation of cis-9,trans-11 CLA, enhanced sensitivity to SA, and increased accumulation of LA and SA in wheat spikes during infection. In addition, mycelial growth, accumulation of deoxynivalenol, and pathogenicity in wheat spikes were reduced. Re-introduction of a functional FgLAI12 gene into ΔFgLAI12 recovered the wild-type phenotype. Fluorescent microscopic analysis showed that FgLAI12 protein was usually expressed in the septa zone of conidia and the vacuole of hyphae, but was expressed in the cell membrane of hyphae in response to exogenous LA, which may be an element of LA metabolism during infection by F. graminearum. The cis-12 LAI enzyme encoded by FgLAI12 is critical for fungal response to SA, mycelial growth and virulence in wheat. The gene FgLAI12 is potentially valuable for biotechnological synthesis of cis-9,trans-11 CLA.
- Published
- 2017
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- View/download PDF
34. Sol–gel transition of novel temperature responsive ABA triblock copolymer P(MEO2MA-co-HMAM)-b-PEG-b-P(MEO2MA-co- HMAM)
- Author
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Teng Liu, Weijuan Sheng, Lijuan Peng, Shouxin Liu, Xuan Li, Ya-Nan Han, and Naer Guang
- Subjects
Aqueous solution ,Materials science ,Polymers and Plastics ,Atom-transfer radical-polymerization ,Organic Chemistry ,technology, industry, and agriculture ,Degree of polymerization ,Lower critical solution temperature ,chemistry.chemical_compound ,chemistry ,Dynamic light scattering ,PEG ratio ,Polymer chemistry ,Materials Chemistry ,Copolymer ,Ethylene glycol - Abstract
A well-defined temperature responsive ABA triblock copolymer, poly(2-(2-methoxyethoxy) ethyl methacrylate-co-N-hydroxymethyl acrylamide)-b- poly(ethylene glycol)-b-poly (2-(2-methoxyethoxy) ethyl methacrylate-co-N- hydroxymethyl acrylamide) [P(MEO2MA-co-HMAM)-b-PEG-b-P(MEO2MA-co- HMAM)], was synthesized by atom transfer radical polymerization (ATRP). The synthesized triblock copolymer was characterized by 1H nuclear magnetic resonance (NMR), Fourier transform infrared (FTIR) spectroscopy and Gel Permeation Chromatography (GPC). The aqueous solution phase behaviors of the triblock copolymers were investigated by UV transmittance measurements, surface tension measurement, laser particle size and viscosity analysis. The micellization of temperature responsive triblock copolymer was investigated by fluorescence probe technique, dynamic light scattering (DLS) and transmission electron microscopy (TEM). The results showed that the molecular weight of the poly(ethylene glycol) (PEG), the N-hydroxymethylacrylamide (HMAM) content, and the degree of polymerization (DP) of the P(MEO2MA-co- HMAM) block for the synthesized triblock copolymers could all affect the lower critical solution temperature (LCST) of the triblock copolymer aqueous solution. The higher the molecular weight of the PEG and the HMAM content for a given triblock copolymer are, the higher the LCST of its aqueous solution. The higher the DP of the P(MEO2MA-co-HMAM) block is, the lower the LCST of the copolymer aqueous solution. Sol–gel transition temperature (T sol-gel) for the triblock copolymer determined by vial inversion test further indicated that it is dependent on the molecular weights of the PEG, the DP of the P(MEO2MA-co-HMAM) blocks and the concentration of the copolymer aqueous solution. Copolymer hydrogels loaded with bovine serum albumin (BSA) were used for the release study. The results revealed that 1) the hydrogels had sustained release for the BSA, 2) the release rate for the BSA is dependent of the length of the PEG chain, and 3) the longer the PEG chain is, the faster the release rate of the hydrogel for the BSA.
- Published
- 2015
- Full Text
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35. [Genotype, environment and their interactions of major bioactive components in 2-year licorice (Glycyrrhiza uralensis) population]
- Author
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Fu-Lai, Yu, Wen-Quan, Wang, Jun-Ling, Hou, Xiang-Zhen, Zhou, Ya-Nan, Han, and Dan, Wang
- Subjects
Genotype ,Plant Extracts ,Gene-Environment Interaction ,Glycyrrhiza uralensis ,Chromatography, High Pressure Liquid ,Ecosystem - Abstract
This study aimed at analyzing the effect of genotype (G), environment (E) and their interactions (G x E) on the major bioactive components of 2-year licorice (Glycyrrhiza uralensis) population, in order to provide a theoretical basis for the licorice breeding with high content of bioactive components and quality improvement.Four genotype licorice populations were transplanted under four different environments by using complete randomized block design with three replicates, and four major bioactive components, including glycyrrhizin (GL), total saponins (TS), liquiritin (LQ) and total flavonoids (TF) were determined by UV and by HPLC.The major bioactive components of licorice were influenced by genotype and environment, and the genotype had more effect on all of the bioactive components. The contents of GL and LQ were codetermined by genotype and environment factors.There exist different selective effects on different growth region for quality breeding in cultivated population of licorice.
- Published
- 2013
36. [Discussion on necessity of introduction of qualitative research into clinical research of traditional Chinese medicine]
- Author
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Dong-Bo Fu and Ya-Nan Han
- Subjects
medicine.medical_specialty ,Evaluation system ,Biomedical Research ,Traditional medicine ,business.industry ,Management science ,Alternative medicine ,Traditional Chinese medicine ,Treatment results ,Modernization theory ,Clinical research ,Complementary and alternative medicine ,medicine ,Humans ,Medicine, Chinese Traditional ,business ,Qualitative Research ,Qualitative research ,Western medicine - Abstract
Currently, the model of the research evaluation system of traditional Chinese medicine (TCM) is set up through imitating that of western medicine. The application of quantitative research to TCM does promote the advance of modernization of TCM, which explore the part of TCM that can be measured in quantitative method. However, TCM has a background of profound philosophy and culture. The priority of TCM can not be expressed through quantitative research alone. On the contrary, qualitative research is more suitable to most research area of TCM. In TCM clinical research, the priority of TCM should be fully explored. It is very significant to set up the effectiveness evaluation system of TCM, especially by applying qualitative research to the diagnosis and the evaluation of treatment results and combining quantitative research.
- Published
- 2004
37. A PPO Promoter from Betalain-Producing Red Swiss Chard, Directs Petiole-and Root-Preferential Expression of Foreign Gene in Anthocyanins-Producing Plants.
- Author
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Zhi-Hai Yu, Ya-Nan Han, and Xing-Guo Xiao
- Subjects
- *
BETALAINS , *PETIOLES , *GENE expression in plants , *ANTHOCYANINS , *INFLORESCENCES , *ABSCISIC acid - Abstract
A 1670 bp 5'-flanking region of the polyphenol oxidase (PPO) gene was isolated from red Swiss chard, a betalain-producing plant. This region, named promoter BvcPPOP, and its 5'-truncated versions were fused with the GUS gene and introduced into Arabidopsis, an anthocyanins-producing plant. GUS histochemical staining and quantitative analysis of transgenic plants at the vegetative and reproductive stages showed that BvcPPOP could direct GUS gene expression in vegetative organs with root-and petiole-preference, but not in reproductive organs including inflorescences shoot, inflorescences leaf, flower, pod and seed. This promoter was regulated by developmental stages in its driving strength, but not in expression pattern. It was also regulated by the abiotic stressors tested, positively by salicylic acid (SA) and methyl jasmonate (MeJA) but negatively by abscisic acid (ABA), gibberellin (GA), NaCl and OH-. Its four 5'-truncated versions varied in the driving strength, but not obviously in expression pattern, and even the shortest version (-225 to +22) retained the root-and petiole-preference. This promoter is, to our knowledge, the first PPO promoter cloned and functionally elucidated from the betalain-producing plant, and thus provides not only a useful tool for expressing gene(s) of agricultural interest in vegetative organs, but also a clue to clarify the function of metabolism-specific PPO in betalain biosynthesis. [ABSTRACT FROM AUTHOR]
- Published
- 2015
- Full Text
- View/download PDF
38. MicroRNA-7/NF-ΚB signaling regulatory feedback circuit regulates gastric carcinogenesis.
- Author
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Xiao-Di Zhao, Yuan-Yuan Lu, Hao Guo, Hua-Hong Xie, Li-Jie He, Gao-Fei Shen, Jin-Feng Zhou, Ting Li, Si-Jun Hu, Lin Zhou, Ya-Nan Han, Shu-Li Liang, Xin Wang, Kai-Chun Wu, Yong-Quan Shi, Yong-Zhan Nie, and Dai-Ming Fan
- Subjects
- *
MICRORNA , *GENE expression , *GENETIC regulation , *CARCINOGENESIS , *NF-kappa B , *STOMACH cancer - Abstract
MicroRNAs play essential roles in gene expression regulation during carcinogenesis. Here, we investigated the role of miR-7 and the mechanism by which it is dysregulated in gastric cancer (GC). We used genome-wide screenings and identified RELA and FOS as novel targets of miR-7. Overexpression of miR-7 repressed RELA and FOS expression and prevented GC cell proliferation and tumorigenesis. These effects were clinically relevant, as low miR-7 expression was correlated with high RELA and FOS expression and poor survival in GC patients. Intriguingly, we found that miR-7 indirectly regulated RELA activation by targeting the IΚB kinase IKKε. Furthermore, IKKε and RELA can repress miR-7 transcription, which forms a feedback circuit between miR-7 and nuclear factor ΚB (NF-ΚB) signaling. Additionally, we demonstrate that down-regulation of miR-7 may occur as a result of the aberrant activation of NF-ΚB signaling by Helicobacter pylori infection. These findings suggest that miR-7 may serve as an important regulator in GC development and progression. [ABSTRACT FROM AUTHOR]
- Published
- 2015
- Full Text
- View/download PDF
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