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Updated: Jan 22, 2026

Isolated Pancreatic Islet Treatment and Apoptosis Measurement
Published on: May 2, 2025
MicroRNA-18 promotes apoptosis of islet β-cells via targeting NAV1
Honghua Fei1, Mingyan Shi2, Lianhong Chen1
1Department of Endocrinology, People's Hospital of Rizhao, Rizhao, Shandong 276800, P.R. China.
Abstract:
The detailed pathogenesis of diabetes mellitus (DM) remains to be fully elucidated. The purpose of the present study was to explore the role of microRNA (miR)-18 in DM and its underlying mechanisms, providing novel ideas for the treatment of the disease. After inflammatory factor-mediated induction, miR-18 expression in the islet β-cell line MIN6 was detected by reverse transcription-quantitative polymerase chain reaction (RT-qPCR). miR-18 mimics and miR-18 inhibitor were then constructed and transfected into MIN6 cells. The mRNA levels of pro-insulin in MIN6 cells were also detected by RT-qPCR. Released insulin levels and insulin secretion function of MIN6 cells were accessed by ELISA and glucose-stimulated insulin secretion assay, respectively. Apoptosis of MIN6 cells was detected by a terminal deoxynucleotidyl transferase-mediated deoxyuridinetriphosphate nick end labeling assay and western blot analysis of apoptotic proteins. The binding interaction of miR-18 and neuron navigator 1(NAV1), a constituent of the phosphoinositide 3-kinase (PI3K)/AKT pathway, was assessed using a dual-luciferase reporter gene assay. Finally, the regulatory effect of miR-18 on the PI3K/AKT pathway was determined by western blot analysis. After induction of inflammatory factors in MIN6 cells, miR-18 expression was markedly upregulated. Transfection with miR-18 mimics inhibited pro-insulin levels, as well as insulin production and secretion capacity. miR-18 knockdown partially abrogated the inhibited insulin secretion capacity induced by interleukin-1β (IL-1β) treatment. In addition, apoptosis of MIN6 cells was increased by miR-18 mimics. The dual-luciferase reporter gene assay confirmed the direct binding of miR-18 to NAV1. Western blot analysis suggested that miR-18 markedly inhibited the PI3K/AKT pathway in MIN6 cells. In conclusion, miR-18 expression is upregulated by IL-1β induction in islet β-cells. It was demonstrated that miR-18 promotes apoptosis of islet β-cells at least partially by inhibiting NAV1 expression and insulin production via suppression of the PI3K/AKT pathway.
Insights
MicroRNA-18 (miR-18) is upregulated in diabetes mellitus, promoting islet beta-cell apoptosis and inhibiting insulin production by suppressing the PI3K/AKT pathway and NAV1 expression.
Area of Science:
- Endocrinology
- Molecular Biology
- Cell Biology
Background:
- Diabetes mellitus (DM) pathogenesis requires further elucidation.
- MicroRNAs (miRNAs) play critical roles in cellular functions and disease development.
- Understanding miRNA roles in islet beta-cells is crucial for DM treatment strategies.
Purpose of the Study:
- To investigate the role of microRNA-18 (miR-18) in diabetes mellitus.
- To elucidate the underlying mechanisms of miR-18 action in islet beta-cells.
- To provide novel insights for DM therapeutic interventions.
Main Methods:
- Inflammatory factor induction in MIN6 islet beta-cell line.
- Reverse transcription-quantitative polymerase chain reaction (RT-qPCR) for gene expression analysis.
- Transfection with miR-18 mimics and inhibitors.
- ELISA and glucose-stimulated insulin secretion assays for insulin function.
- Apoptosis assays (TUNEL, Western blot).
- Dual-luciferase reporter gene assay for miRNA-target interaction.
- Western blot for pathway analysis (PI3K/AKT).
Main Results:
- Inflammatory factors upregulated miR-18 expression in MIN6 cells.
- miR-18 mimics inhibited pro-insulin levels, insulin production, and secretion.
- miR-18 knockdown partially rescued IL-1β-induced inhibition of insulin secretion.
- miR-18 mimics increased MIN6 cell apoptosis.
- miR-18 directly binds to Neuron Navigator 1 (NAV1).
- miR-18 suppressed the phosphoinositide 3-kinase (PI3K)/AKT pathway.
Conclusions:
- miR-18 is upregulated by IL-1β induction in islet beta-cells.
- miR-18 promotes islet beta-cell apoptosis.
- miR-18 inhibits insulin production by suppressing NAV1 and the PI3K/AKT pathway.
- miR-18 represents a potential therapeutic target for diabetes mellitus.
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