1. TGF‐β1–p53 cooperativity regulates a profibrotic genomic program in the kidney: molecular mechanisms and clinical implications
    Craig E. Higgins et al, 2019, The FASEB Journal CrossRef
  2. Roles of microRNA-192 in diabetic nephropathy: the clinical applications and mechanisms of action
    Xiaoqing Wan et al, 2023, Frontiers in Endocrinology CrossRef
  3. Investigation of Urinary Exosome Metabolic Patterns in Membranous Nephropathy by Titania‐Assisted Intact Exosome Mass Spectrometry
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  4. The Functional Role of microRNAs and mRNAs in Diabetic Kidney Disease: A Review
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  5. Integrative Bioinformatics Analysis Provides Insight into the Molecular Mechanisms of Chronic Kidney Disease
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  6. RETRACTED ARTICLE: NR4A1 aggravates the cardiac microvascular ischemia reperfusion injury through suppressing FUNDC1-mediated mitophagy and promoting Mff-required mitochondrial fission by CK2α
    Hao Zhou et al, 2018, Basic Research in Cardiology CrossRef
  7. Transcription profiling of artemisinin-treated diabetic nephropathy rats using high-throughput sequencing
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  8. Egr1 Knockdown Combined with an ACE Inhibitor Ameliorates Diabetic Kidney Disease in Mice: Blockade of Compensatory Renin Increase


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  9. A Network Pharmacology Approach to Uncover the Mechanisms of Shen-Qi-Di-Huang Decoction against Diabetic Nephropathy
    Sha Di et al, 2018, Evidence-Based Complementary and Alternative Medicine CrossRef
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  11. The Potential Roles of Artemisinin and Its Derivatives in the Treatment of Type 2 Diabetes Mellitus
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  12. FOXM1-activated SIRT4 inhibits NF-κB signaling and NLRP3 inflammasome to alleviate kidney injury and podocyte pyroptosis in diabetic nephropathy
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  13. The Genomic Response to TGF-β1 Dictates Failed Repair and Progression of Fibrotic Disease in the Obstructed Kidney
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