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CIRCTMCO3 ALLEVIATES SEPSIS-INDUCED ACUTE KIDNEY INJURY VIA REGULATING MIR-218-5P/ZEB2 AXIS
Yingfeng Gong1, Na Wei1, Peipei Shi2
1Graduate School of Bengbu Medical College, Bengbu City, Anhui Province, China.
Abstract:
Background: Growing evidence has found the critical role of circular RNAs (circRNAs) in sepsis-induced acute kidney injury (S-AKI). CircTMCO3 has been found to be involved in tumor microenvironment changes of ovarian cancer. This study aimed to explore whether circTMCO3 functions in S-AKI, and if so, to elucidate the molecular mechanism. Methods: CircTMCO3 expression was analyzed in lipopolysaccharide (LPS)-induced HK-2 cells and in the kidney tissues of mice treated with cecal ligation and puncture (CLP), respectively. Furthermore, the effects of circTMCO3 on S-AKI and the related mechanisms were evaluated in both models through gain- and/or loss-of-function strategies. Results: CircTMCO3 expression was suppressed in both S-AKI models. Upregulation of circTMCO3 mitigated LPS-induced apoptosis, oxidative stress, and inflammation in HK-2 cells. In contrast, circTMCO3 downregulation exacerbated LPS-induced injuries in HK-2 cells. Intravenous injection of circTMCO3 lentivirus to increase circTMCO3 expression improved renal function and attenuated kidney injury in S-AKI mice, as evidenced by the decrease in serum creatinine and blood urea nitrogen concentrations, amelioration of tubular pathological injury, reduction of renal cell apoptosis, and mitigation of oxidative stress and proinflammatory cytokines (TNF-α, IL-1β, and IL-6). Moreover, circTMCO3 directly targeted miR-218-5p, and the mimic of which abolished the protective effect of circTMCO3 in cell models. ZEB2 was identified to be a target of miR-218-5p; its downregulation not only reversed the impacts of miR-218-5p inhibitor on S-AKI, but also mitigated the effects mediated by circTMCO3 upregulation in vitro . Conclusions: CircTMCO3 protects against S-AKI by regulating miR-218-5p/ZEB2 axis, thereby mediating antiapoptotic, antioxidant, and anti-inflammatory activities. This indicates that increasing circTMCO3 expression might be a future therapeutic method for S-AKI.
Insights
Circular RNA TMCO3 (circTMCO3) protects against sepsis-induced acute kidney injury (S-AKI) by reducing cell death and inflammation. Upregulating circTMCO3 shows therapeutic potential for S-AKI treatment.
Area of Science:
- Molecular Biology
- Renal Physiology
- Biochemistry
Background:
- Circular RNAs (circRNAs) play a crucial role in sepsis-induced acute kidney injury (S-AKI).
- CircTMCO3 has been implicated in ovarian cancer's tumor microenvironment.
- The function and mechanism of circTMCO3 in S-AKI remain largely unexplored.
Purpose of the Study:
- To investigate the role of circTMCO3 in S-AKI.
- To elucidate the underlying molecular mechanisms of circTMCO3 in S-AKI.
Main Methods:
- Analysis of circTMCO3 expression in lipopolysaccharide (LPS)-induced HK-2 cells and cecal ligation and puncture (CLP)-induced S-AKI mouse models.
- Gain- and loss-of-function studies to assess circTMCO3's effects on S-AKI.
- Investigation of the circTMCO3/miR-218-5p/ZEB2 axis.
Main Results:
- CircTMCO3 expression was downregulated in S-AKI models.
- Overexpression of circTMCO3 attenuated LPS-induced apoptosis, oxidative stress, and inflammation in HK-2 cells and improved renal function in S-AKI mice.
- CircTMCO3 directly targets miR-218-5p, which targets ZEB2, forming the circTMCO3/miR-218-5p/ZEB2 regulatory axis.
Conclusions:
- CircTMCO3 exerts protective effects against S-AKI.
- The protective mechanism involves the regulation of the miR-218-5p/ZEB2 axis, mediating anti-apoptotic, antioxidant, and anti-inflammatory activities.
- Increasing circTMCO3 expression represents a potential therapeutic strategy for S-AKI.
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Acute Kidney Injury I: Introduction
Acute Kidney Injury II: Pathophysiology
Acute Kidney Injury III: Clinical Manifestations
Acute Kidney Injury IV: Diagnostic Studies and Prevention
Acute Kidney Injury VI: Nursing Management

