miR-181a-5p Inhibits Pyroptosis in Sepsis-Induced Acute Kidney Injury through Downregulation of NEK7

Meng Zhang1, Deyuan Zhi1, Jin Lin1

  • 1Department of Critical Care Medicine, Beijing Friendship Hospital, Capital Medical University, No. 95 Yong'an Road, Xicheng District, Beijing 100050, China.

Insights

Sepsis-induced acute kidney injury (S-AKI) involves uncontrolled inflammation and pyroptosis. MicroRNA-181a-5p (miR-181a-5p) inhibits pyroptosis by downregulating NEK7, offering a potential therapeutic target for S-AKI.

Area of Science:

  • Biomedical Science
  • Molecular Biology
  • Pathophysiology

Background:

  • Sepsis-induced acute kidney injury (S-AKI) is a critical condition with high mortality.
  • The precise mechanisms of S-AKI, particularly the role of pyroptosis, remain incompletely understood.
  • Current therapies for S-AKI are often nonspecific due to limited mechanistic insights.

Purpose of the Study:

  • To investigate the role of pyroptosis in S-AKI pathogenesis.
  • To identify specific microRNAs (miRNAs) involved in S-AKI.
  • To explore miR-181a-5p as a potential therapeutic target for S-AKI.

Main Methods:

  • Established in vitro (LPS-induced HK-2 cells) and in vivo (CLP-induced mice) models of S-AKI.
  • Utilized qRT-PCR, Western blot, ELISA, and RNA pulldown for molecular analysis.
  • Employed H&E and IHC staining for histological assessment.

Main Results:

  • LPS stimulation and CLP surgery significantly increased pyroptosis markers (N-GSDMD, ASC, caspase-1) and inflammatory factors (IL-18, IL-1β, TNF-α).
  • S-AKI mice exhibited renal edema, elevated serum creatinine and BUN, and increased KIM-1 and NGAL expression.
  • miR-101-3p, miR-144-3p, miR-181a-5p, miR-4262, and miR-513b-5p were found to inhibit NEK7; miR-181a-5p specifically targets NEK7, suppressing pyroptosis.

Conclusions:

  • Pyroptosis is a key mechanism in S-AKI development.
  • miR-181a-5p effectively inhibits pyroptosis in S-AKI models by downregulating NEK7.
  • miR-181a-5p presents a promising novel therapeutic target for managing S-AKI.

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