ArticleMolecular medicine reports2024
MicroRNA‑17‑5p alleviates sepsis‑related acute kidney injury in mice by modulating inflammation and apoptosis.
Article in Molecular medicine reports, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Adipose-derived mesenchymal stem cell-derived extracellular vesicles reduce glycolysis and polarize macrophages toward M2 phenotype in sepsis-associated acute kidney injury via the miR-574-5p/GLUT1 axis.Clinical and experimental medicine · 2026Article
- Downexpression of miR- 17 - 5p and miR- 125a- 5p is Potentially Associated with the Renal Impairment Through STAT- 3 and CD69 in Multiple Myeloma Adult Patients.Biochemical genetics · 2026Article
- RPS3 Aggravates Sepsis-Induced Acute Kidney Injury Through Activating NF-kappaB Mediated Renal Inflammatory Responses.Physiological research · 2026Article
- Advances in miRNA research: Unraveling the complexities of gene regulation.Animal models and experimental medicine · 2025Review
- Differential Expressions of Immunoregulatory microRNAs in Breast Milk of Mothers of Preterm Versus Term Infants: A Preliminary Study.Medicina (Kaunas, Lithuania) · 2025Article
- miR-769-5p has diagnostic value in acute kidney injury in intensive care unit patients and mediates disease development by targeting SIRT6.BMC nephrology · 2025Article
- Ebselen Alleviates Sepsis-Induced Acute Kidney Injury by Regulating Endoplasmic Reticulum Stress, Apoptosis, and Oxidative Stress.Veterinary medicine and science · 2025Article
- Post-translational modifications in sepsis-induced acute kidney injury: mechanisms and perspectives.Frontiers in pharmacology · 2025Review
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Authors and funding
8 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Septic acute kidney injury (AKI) is considered as a severe and frequent complication that occurs during sepsis. Mounting evidence has confirmed the pivotal pathogenetic roles of microRNA (miRNA or miR) in sepsis‑induced AKI; however, the role of miRNAs and their underlying mechanisms in sepsis‑induced AKI have not been entirely understood. The present study aimed to elucidate the functions of special miRNAs during sepsis‑induced AKI and its underlying mechanism. First, a number of differently expressed miRNAs was identified based on the microarray dataset GSE172044. Subsequently, lipopolysaccharide (LPS) was used to induce AKI in mice, and the role of miR‑17‑5p on AKI was clarified. Finally, the related molecular mechanisms were further examined by western blotting and immunohistochemical analysis. MiR‑17‑5p was found to be continuously decreased and reached the bottom at h 24 after AKI in mice. Functionally, injection of agomiR‑17‑5p could observably improve renal injury and survival rate, as well as inhibit inflammatory cytokine production and renal cell apoptosis in mice after AKI. On the contrary, injection of antagomiR‑17‑5p aggravated LPS‑induced renal injury, inflammation and apoptosis in mice after AKI. Moreover, transforming growth factor β receptor 2 (TGFβR2) was identified as a direct target of miR‑17‑5p, and its downstream phosphorylated Smad3 was also suppressed by miR‑17‑5p upregulation. Taken together, these results demonstrated that miR‑17‑5p overexpression may exhibit a beneficial effect by attenuating LPS‑induced inflammation and apoptosis via regulating the TGFβR2/TGF‑β/Smad3 signaling pathway, indicating that miR‑17‑5p could act as a potential target for sepsis treatment.
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