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.
Abstract:
Sepsis is a life-threatening organ dysfunction caused by the uncontrolled inflammation, easily affecting the kidney. Sepsis-induced acute kidney injury (S-AKI) has high morbidity and mortality, of which the pathophysiological mechanisms have not been completely illuminated, leading to nonspecific therapies. Specific microRNAs were related with the pathogenesis of AKI. However, only limited studies focused on the pyroptosis in the context of S-AKI. The in vitro LPS-induced HK-2 cell model and in vivo CLP-induced mouse model were established. qRT-PCR, Western blot, ELISA, and RNA pulldown were used for expression examination. Multiple biological databases were used for miRNA screening. H&E staining and IHC staining were performed. The LPS-induced HK-2 cells showed significantly increased (P < 0.01) fluorescence intensity of N-GSDMD and ASC compared with the HK-2 cells. The expression of NLRP3, NEK7, ASC, active caspase-1, and N-GSDMD was significantly enhanced (P < 0.05) and the inflammatory factors including IL-18, IL-1β, and THF-α were all increased in LPS-induced HK-2 cells and CLP-induced mice. Renal edema, serum Cr and BUN, and expression of KIM-1 and NGAL were significantly higher (P < 0.05) in CLP-induced S-AKI mice than the sham group. miR-101-3p, miR-144-3p, miR-181a-5p, miR-4262, and miR-513b-5p could inhibit NEK7. NEK7 is an interacting protein of miRNA-181a-5p. miR-181a-5p inhibits pyroptosis of the LPS-induced HK-2 cells through downregulation of NEK7. Pyroptosis of HK-2 cells promotes inflammation. miR-181a-5p inhibits pyroptosis through downregulation of NEK7 in LPS-induced HK-2 cells and CLP-induced mice. Our study indicated miR-181a-5p as a new potential therapeutic target for S-AKI therapy.
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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