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1. Protein arginine methyltransferase 1 regulates mouse enteroendocrine cell development and homeostasis

2. Competitive PCR with dual fluorescent primers enhances the specificity and reproducibility of genotyping animals generated from genome editing

3. Thyroid hormone receptor knockout prevents the loss of Xenopus tail regeneration capacity at metamorphic climax

4. Simplifying Genotyping of Mutants from Genome Editing with a Parallel qPCR-Based iGenotype Index

5. Cell cycle activation in thyroid hormone-induced apoptosis and stem cell development during Xenopus intestinal metamorphosis

6. l-Type amino acid transporter 1 in hypothalamic neurons in mice maintains energy and bone homeostasis

7. Liver development during Xenopus tropicalis metamorphosis is controlled by T3-activation of WNT signaling

8. Thyroid hormone receptor α controls larval intestinal epithelial cell death by regulating the CDK1 pathway

9. Transcriptome profiling reveals gene regulation programs underlying tail development in the Ornamented Pygmy frog Microhyla fissipes

10. Protein arginine methyltransferase 1 regulates cell proliferation and differentiation in adult mouse adult intestine

11. Evolutionary divergence in tail regeneration between Xenopus laevis and Xenopus tropicalis

12. Direct activation of tRNA methyltransferase-like 1 (Mettl1) gene by thyroid hormone receptor implicates a role in adult intestinal stem cell development and proliferation during Xenopus tropicalis metamorphosis

13. Thyroid hormone receptor beta is critical for intestinal remodeling during Xenopus tropicalis metamorphosis

14. Thyroid hormone activates Xenopus MBD3 gene via an intronic TRE in vivo

15. Proteomic Analysis Reveals That Placenta-Specific Protein 9 Inhibits Proliferation and Stimulates Motility of Human Bronchial Epithelial Cells

16. Intestinal homeostasis: a communication between life and death

17. Well-Aligned TiO2 Nanotube Arrays with Ag Nanoparticles for Highly Efficient Detection of Fe3+ Ion

18. Thyroid and Corticosteroid Signaling in Amphibian Metamorphosis

19. The balance of two opposing factors Mad and Myc regulates cell fate during tissue remodeling

20. Thyroid Hormone Receptor α Controls the Hind Limb Metamorphosis by Regulating Cell Proliferation and Wnt Signaling Pathways in Xenopus tropicalis

22. Thyroid Hormone Receptor Is Essential for Larval Epithelial Apoptosis and Adult Epithelial Stem Cell Development but Not Adult Intestinal Morphogenesis during Xenopus tropicalis Metamorphosis

23. Genome-wide identification of thyroid hormone receptor targets in the remodeling intestine during Xenopus tropicalis metamorphosis

24. Gene Expression Program Underlying Tail Resorption During Thyroid Hormone-Dependent Metamorphosis of the Ornamented Pygmy Frog Microhyla fissipes

25. Validity study of Animal-City Alternating Form Fluency Test in the identification of mild cognitive impairment and Alzheimer's disease

26. The 2017 Ming K. Jeang award for excellence in Cell & Bioscience

27. A Low-Temperature Micro Hotplate Gas Sensor Based on AlN Ceramic for Effective Detection of Low Concentration NO2

28. The 2018 Ming K. Jeang award for excellence in Cell & Bioscience

29. iPSCs are safe!

30. The 2016 Ming K Jeang Award for Excellence in Cell & Bioscience

31. The catalytic subunit of the system L1 amino acid transporter (slc7a5) facilitates nutrient signalling in mouse skeletal muscle.

32. Tissue-specific upregulation of MDS/EVI gene transcripts in the intestine by thyroid hormone during Xenopus metamorphosis.

33. Characterization of Xenopus tissue inhibitor of metalloproteinases-2: a role in regulating matrix metalloproteinase activity during development.

34. Cytological and morphological analyses reveal distinct features of intestinal development during Xenopus tropicalis metamorphosis.

35. Modulation of thyroid hormone-dependent gene expression in Xenopus laevis by INhibitor of Growth (ING) proteins.

36. Spatio-temporal expression profile of stem cell-associated gene LGR5 in the intestine during thyroid hormone-dependent metamorphosis in Xenopus laevis.

37. Dichlorido[N-(2-pyridylmethylidene)benzene-1,4-diamine]zinc(II)

38. Identification and developmental expression of Xenopus laevis SUMO proteases.

40. Comparative Analysis of Transcriptome Profiles Reveals Distinct and Organ-Dependent Genomic and Nongenomic Actions of Thyroid Hormone in Xenopus tropicalis Tadpoles

42. Organ‐specific effects on target binding due to knockout of thyroid hormone receptor α during Xenopus metamorphosis

43. Upregulation of miR-520c-3p via hepatitis B virus drives hepatocellular migration and invasion by the PTEN/AKT/NF-κB axis

44. Amino acid transporter SLC7A5 regulates Paneth cell function to affect the intestinal inflammatory response

47. Sperm associated antigen 7 is activated by T3 during Xenopus tropicalis metamorphosis via a thyroid hormone response element within the first intron

48. Multiview confocal super-resolution microscopy

49. A Role of Endogenous Histone Acetyltransferase Steroid Hormone Receptor Coactivator 3 in Thyroid Hormone Signaling DuringXenopusIntestinal Metamorphosis

50. Thyroid hormone receptor beta is critical for intestinal remodeling during Xenopus tropicalis metamorphosis

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