Ju Zhengzheng, Cui Fan, Mao Zheng, Li Zhen, Yi Xiayu, Zhou Jingjing, Cao Jinjin, Li Xiaoqin, Qian Zengkun
Department of Clinical Laboratory, Wuhu Hospital Affiliated to Anhui University of Science and Technology (The First People's Hospital of Wuhu), Wuhu, Anhui, China.
Open Med (Wars). 2024 Feb 29;19(1):20240912. doi: 10.1515/med-2024-0912. eCollection 2024.
Previous studies have found that miR-335 is highly expressed in type II diabetes mellitus (T2DM) models and is related to insulin secretion, but there are few studies on the regulatory effects of miR-335-3p on insulin resistance and macrophage polarization in T2DM patients. This study aims to explore the effects of miR-335-3p on insulin resistance and macrophage polarization in T2DM patients. Blood glucose (insulin tolerance tests, glucose tolerance tests) and body weight of the T2DM model were measured; macrophages from adipose tissue were isolated and cultured, and the number of macrophages was detected by F4/80 immunofluorescence assay; the Real-time quantitative polymerase chain reaction (qPCR) assay and Western blot assay were used to detect the miR-335-3p expression levels, insulin-like growth factor 1 (IGF-1), M1-polarizing genes (inducible nitric oxide synthase [iNOS] and TNF-α) as well as M2-polarizing genes (IL-10 and ARG-1). The targeting link between miR-335-3p and IGF-1 was confirmed using bioinformatics and dual luciferase assay. The results showed that miR-335-3p expression level in adipose tissue of the T2DM model was significantly decreased, and the mice's body weight and blood glucose levels dropped considerably, miR-335-3p inhibited the number of macrophages, inhibiting the iNOS and TNF-α relative mRNA expression levels, and up-regulated the IL-10 and ARG-1 relative mRNA expression levels, miR-335-3p negatively regulated target gene IGF-1, IGF-1 significantly increased the iNOS and TNF-α mRNA and protein expression levels, decreasing the IL-10 and ARG-1 mRNA and protein expression levels, indicating that miR-335-3p could affect the T2DM process by regulating macrophage polarization via IGF-1.
先前的研究发现,miR-335在II型糖尿病(T2DM)模型中高表达,且与胰岛素分泌有关,但关于miR-335-3p对T2DM患者胰岛素抵抗和巨噬细胞极化的调节作用的研究较少。本研究旨在探讨miR-335-3p对T2DM患者胰岛素抵抗和巨噬细胞极化的影响。测量T2DM模型的血糖(胰岛素耐量试验、葡萄糖耐量试验)和体重;分离并培养来自脂肪组织的巨噬细胞,通过F4/80免疫荧光测定法检测巨噬细胞数量;采用实时定量聚合酶链反应(qPCR)测定法和蛋白质免疫印迹法检测miR-335-3p表达水平、胰岛素样生长因子1(IGF-1)、M1极化基因(诱导型一氧化氮合酶[iNOS]和肿瘤坏死因子-α)以及M2极化基因(白细胞介素-10和精氨酸酶-1)。使用生物信息学和双荧光素酶测定法证实miR-335-3p与IGF-1之间的靶向联系。结果显示,T2DM模型脂肪组织中miR-335-3p表达水平显著降低,小鼠体重和血糖水平大幅下降,miR-335-3p抑制巨噬细胞数量,抑制iNOS和TNF-α相对mRNA表达水平,并上调IL-10和ARG-1相对mRNA表达水平,miR-335-3p对靶基因IGF-1进行负调控,IGF-1显著增加iNOS和TNF-α mRNA及蛋白表达水平,降低IL-10和ARG-1 mRNA及蛋白表达水平,表明miR-335-3p可通过IGF-1调节巨噬细胞极化来影响T2DM进程。