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393 results on '"Orr, Galya"'

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1. Regulation of β-cell death by ADP-ribosylhydrolase ARH3 via lipid signaling in insulitis

2. Novel metabolic interactions and environmental conditions mediate the boreal peatmoss-cyanobacteria mutualism

3. Genetic and metabolic links between the murine microbiome and memory

5. Tumor Retention of Enzyme-Responsive Pt(II) Drug-Loaded Nanoparticles Imaged by Nanoscale Secondary Ion Mass Spectrometry and Fluorescence Microscopy

6. Dichomitus squalens partially tailors its molecular responses to the composition of solid wood

11. Dynamic nitrogen fixation in an aerobic endophyte of Populus

12. Cellular Delivery of Nanoparticles Revealed with Combined Optical and Isotopic Nanoscopy

13. Rosette core fungal resistance in Arabidopsis thaliana

17. Cell‐type‐specific transcriptomics uncovers spatial regulatory networks in bioenergy sorghum stems.

18. Lipid Corona Formation from Nanoparticle Interactions with Bilayers

19. Enzyme-Directed Assembly of Nanoparticles in Tumors Monitored by in Vivo Whole Animal Imaging and ex Vivo Super-Resolution Fluorescence Imaging

20. Interlaboratory Evaluation of in Vitro Cytotoxicity and Inflammatory Responses to Engineered Nanomaterials: The NIEHS Nano GO Consortium

21. Regulation of β-cell death by ADP-ribosylhydrolase ARH3 via lipid signaling in insulitis

27. Novel metabolic interactions and environmental conditions mediate the boreal peatmoss-cyanobacteria mutualism

31. Near Infrared Emitting Semiconductor Polymer Dots for Bioimaging and Sensing

37. Hydroporphyrin-Doped Near-Infrared-Emitting Polymer Dots for Cellular Fluorescence Imaging

41. Novel metabolic interactions and environmental conditions mediate the boreal peatmoss-cyanobacteria mutualism

44. Re-routing of Sugar Catabolism Provides a Better Insight Into Fungal Flexibility in Using Plant Biomass-Derived Monomers as Substrates

45. Re-routing of Sugar Catabolism Provides a Better Insight Into Fungal Flexibility in Using Plant Biomass-Derived Monomers as Substrates

46. Colonies of the fungus Aspergillus niger are highly differentiated to adapt to local carbon source variation

47. Colonies of the fungus Aspergillus niger are highly differentiated to adapt to local carbon source variation

49. Multicolor polymeric carbon dots: synthesis, separation and polyamide-supported molecular fluorescence

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