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2. Reports from Wuhan University of Science and Technology Add New Study Findings to Research in Diabetic Nephropathy (Astragalin improved mitochondrial function through AMPK/PGC-1a pathway and alleviated renal injury in diabetic nephropathy)

3. Reports Outline Diabetic Nephropathy Study Findings from Department of Medical Biology (Ektacytometric examination of red blood cells' morphodynamical features in diabetic nephropathy patients)

5. Researchers at Affiliated Hospital of Hebei University Publish New Study Findings on Diabetic Nephropathy (MSU crystallization promotes fibroblast proliferation and renal fibrosis in diabetic nephropathy via the ROS/SHP2/TGFb pathway)

6. Researchers at Shanghai University of Sport Publish New Study Findings on Diabetic Nephropathy (Natural compounds improve diabetic nephropathy by regulating the TLR4 signaling pathway)

8. Reports Outline Diabetes Research Study Results from Second Xiangya Hospital (Polygala Fallax Hemsl Ameliorates Renal Dysfunction and Podocyte Mitochondrial Oxidative Damage In Diabetic Rats By Activating the Ampk/sirt1/pgc-1 A Signaling)

9. Findings from Southern University of Science and Technology (SUSTech) Broaden Understanding of Diabetic Nephropathy (Single-cell transcriptomics reveals the ameliorative effect of rosmarinic acid on diabetic nephropathy-induced kidney injury by ...)

10. Findings in the Area of Diabetic Nephropathy Reported from Chinese Academy of Medical Sciences (In Silico Prediction and Experimental Validation To Reveal the Protective Mechanism of Puerarin Against Excessive Extracellular Matrix Accumulation ...)

11. Researchers from Northwest A&F University Provide Details of New Studies and Findings in the Area of Diabetic Nephropathy (Diosgenin Targets CaMKK2 to Alleviate Type II Diabetic Nephropathy through Improving Autophagy, Mitophagy and ...)

12. New Macular Edema Study Findings Have Been Published by a Researcher at Japan Community Health Care Organization (Relationship between Diabetic Nephropathy and Development of Diabetic Macular Edema in Addition to Diabetic Retinopathy)

13. Reports from Department of Endocrinology Highlight Recent Findings in Bioinformatics (A bioinformatics and network pharmacology approach to the mechanisms of action of Shenxiao decoction for the treatment of diabetic nephropathy)

14. Reports from Shaanxi Provincial People's Hospital Describe Recent Advances in Phytotherapy (Ampelopsin inhibits high glucose-induced extracellular matrix accumulation and oxidative stress in mesangial cells through activating the Nrf2/HO-1 ...)

15. Findings from Harbin Medical University in the Area of Cell Biology Reported (Dopamine 1 receptor activation protects mouse diabetic podocytes injury via regulating the PKA/NOX-5/p38 MAPK axis)

16. New Study Findings from China Medical University Illuminate Research in Molecular Therapeutics (Upregulation of miR-101a Suppresses Chronic Renal Fibrosis by Regulating KDM3A via Blockade of the YAP-TGF-b-Smad Signaling Pathway)

17. Researchers from Shanghai University of Traditional Chinese Medicine Report Recent Findings in Diabetic Nephropathy (Puerarin Attenuates Diabetic Nephropathy by Promoting Autophagy in Podocytes)

18. Research from National University of Medical Sciences (NUMS) in the Area of Type 2 Diabetes Published (Frequency of Hyperuricemia in Type-2 Diabetes Mellites and its Relation with Diabetic Nephropathy)

19. Data on Diabetic Nephropathy Described by Researchers at Affiliated Hospital of Yanbian University (Protective effect of salidroside on streptozotocin-induced diabetic nephropathy by inhibiting oxidative stress and inflammation in rats via the ...)

21. Study Findings from Hebei Medical University Broaden Understanding of Diabetic Nephropathy (TXNIP deficiency mitigates podocyte apoptosis via restraining the activation of mTOR or p38 MAPK signaling in diabetic nephropathy)

22. Studies from Shanghai University of Traditional Chinese Medicine Provide New Data on Diabetic Nephropathy (ErHuang Formula Improves Renal Fibrosis in Diabetic Nephropathy Rats by Inhibiting CXCL6/JAK/STAT3 Signaling Pathway)

23. Researchers from Harbin Medical University Report on Findings in Cell Biology (Dopamine 1 receptor activation protects mouse diabetic podocytes injury via regulating the PKA/NOX-5/p38 MAPK axis)

24. New Findings in Chemical and Biological Interactions Described from Mansoura University (Renoprotective effect of calycosin in high fat diet-fed/STZ injected rats: Effect on IL-33/ST2 signaling, oxidative stress and fibrosis suppression)

25. Researchers at Chang Gung Memorial Hospital Detail Findings in Cell Biology (De-Glycyrrhizinated Licorice Extract Attenuates High Glucose-Stimulated Renal Tubular Epithelial-Mesenchymal Transition via Suppressing the Notch2 Signaling Pathway)

26. New Diabetic Nephropathy Findings from Guangzhou University of Chinese Medicine Discussed [Gentiopicroside activates the bile acid receptor Gpbar1 (TGR5) to repress NF-kappaB pathway and ameliorate diabetic nephropathy]

27. Gannan Medical University Describes Findings in Pharmaceutical Research [GdCl3 attenuates the glomerular sclerosis of streptozotocin (STZ) induced diabetic rats via inhibiting TGF-b/Smads signal pathway]

28. Recent Reports from Guangzhou University of Chinese Medicine Highlight Findings in Diabetic Nephropathy [Gentiopicroside activates the bile acid receptor Gpbar1 (TGR5) to repress NF-kappaB pathway and ameliorate diabetic nephropathy]

29. Researchers at Guangzhou University of Chinese Medicine Report Findings in Diabetic Nephropathy [Gentiopicroside activates the bile acid receptor Gpbar1 (TGR5) to repress NF-kappaB pathway and ameliorate diabetic nephropathy]

30. Findings from Guangzhou University of Chinese Medicine Provides New Data on Diabetic Nephropathy [Gentiopicroside activates the bile acid receptor Gpbar1 (TGR5) to repress NF-kappaB pathway and ameliorate diabetic nephropathy]

31. Report Summarizes Diabetic Nephropathy Study Findings from Sichuan University (Intervention for early diabetic nephropathy by mesenchymal stem cells in a preclinical nonhuman primate model)

32. New Transforming Growth Factors Findings from Third Affiliated Hospital of Wenzhou Medical University Described (Fibroblast Growth Factor 21 Attenuates Diabetes-Induced Renal Fibrosis by Negatively Regulating TGF-b-p53-Smad2/3-Mediated ...)

33. Researchers from Southern University of Chile Report New Studies and Findings in the Area of Cardiac Stressing Agents (Blockade of the Adenosine A3 Receptor Attenuates Caspase 1 Activation in Renal Tubule Epithelial Cells and Decreases ...)

34. Findings from Second Military Medical University Provides New Data about Diabetic Nephropathy (Long noncoding RNA NONHSAG053901 promotes diabetic nephropathy via stimulating Egr-1/TGF-b-mediated renal inflammation)

35. Studies from Second Military Medical University Have Provided New Data on Diabetic Nephropathy (Metabolomic study of the protective effect of Gandi capsule for diabetic nephropathy)

36. Reports from Affiliated Hospital of Nanjing University of Chinese Medicine Advance Knowledge in Diabetic Nephropathy (MicroRNA-379-5p suppresses renal fibrosis by regulating the LIN28/let-7 axis in diabetic nephropathy)

37. Findings from Xi'an Jiao Tong University Provide New Insights into Diabetic Nephropathy (Sulfiredoxin-1 Alleviates High Glucose-induced Podocyte Injury Though Promoting Nrf2/are Signaling Via Inactivation of Gsk-3 Beta)

38. New Mesangial Cells Findings from Department of Nephrology Discussed (PC-1 NF suppresses high glucose-stimulated inflammation and extracellular matrix accumulation in glomerular mesangial cells via the Wnt/b-catenin signaling)

39. Researchers from Department of Nephrology Report on Findings in Health and Medicine (Effect of miR-29c on renal fibrosis in diabetic rats via the AMPK/mTOR signaling pathway)

40. Investigators from Chung Shan Medical University Zero in on Diabetic Nephropathy (Nelumbo Nucifera Leaves Extract Attenuate the Pathological Progression of Diabetic Nephropathy In High-fat Diet-fed and Streptozotocin-induced Diabetic Rats)

41. Findings from Second Affiliated Hospital of Guangzhou University of Chinese Medicine in Diabetic Nephropathy Reported (Cordyceps militaris polysaccharides exerted protective effects on diabetic nephropathy in mice via regulation of autophagy)

42. Studies from Central South University Have Provided New Information about Diabetic Nephropathy (lncRNA ZEB1-AS1 Was Suppressed by p53 for Renal Fibrosis in Diabetic Nephropathy)

43. Findings from Hospital of the Ludwig Maximilians University of Munich Provides New Data about Chronic Kidney Disease (The diabetes pandemic suggests unmet needs for 'CKD with diabetes' in addition to 'diabetic nephropathy'-implications for ...)

44. New Findings from Department of Biochemistry and Molecular Biology in the Area of CCN Intercellular Signaling Proteins Reported (Dendrobium candidum protects against diabetic kidney lesions through regulating vascular endothelial growth factor, ...)

45. Findings on Nephropathy Detailed by Researchers at Section of Nephrology (Drp1S600 phosphorylation regulates mitochondrial fission and progression of nephropathy in diabetic mice)

46. Recent Findings in Diabetic Nephropathy Described by Researchers from Department of Biotechnology (Mir29b Regulates Aberrant Methylation In In-vitro Diabetic Nephropathy Model of Renal Proximal Tubular Cells)

47. Researchers from Kaohsiung Medical University Describe Findings in Diabetes Mellitus (Angpt2 Induces Mesangial Cell Apoptosis Through the Microrna-33-5p-socs5 Loop In Diabetic Nephropathy)

48. Researchers from Jilin University Report Details of New Studies and Findings in the Area of Apoptosis [Carbohydrate Response Element Binding Protein (Chrebp) Modulates the Inflammatory Response of Mesangial Cells In Response To Glucose]

49. Recent Studies from University of Shandong Add New Data to Diabetic Nephropathy (Tim-3 Aggravates Podocyte Injury In Diabetic Nephropathy By Promoting Macrophage Activation Via the Nf-kappa B/tnf-alpha Pathway)

50. New Findings from First Affiliated Hospital in the Area of Diabetic Nephropathy Described (Paeoniflorin Ameliorates Macrophage Infiltration and Activation By Inhibiting the Tlr4 Signaling Pathway In Diabetic Nephropathy)

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