Zhang Xiao-Tian, Mao Zhen-Yang, Jin Xiang-Yun, Wang Yu-Gang, Dong Yu-Qi, Zhang Chao
Department of Orthopedics, Renji Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, People's Republic of China.
Diabetes Metab Syndr Obes. 2023 Jan 31;16:285-298. doi: 10.2147/DMSO.S379473. eCollection 2023.
Delayed skin healing in diabetic wounds is a major clinical problem. The tRNA-derived small RNAs (tsRNAs) were reported to be associated with diabetes. However, the role of tsRNAs in diabetic wound healing is unclear. Our study was designed to explore the tsRNA expression profile and mine key potential tsRNAs and their mechanism in diabetic wounds.
Skin tissues of patients with diabetic foot ulcers and healthy controls were subjected to small RNA sequencing. The role of candidate tsRNA was explored by loss- and gain-of-function experiments in HUVECs.
A total of 55 differentially expressed tsRNAs were identified, including 12 upregulated and 43 downregulated in the diabetes group compared with the control group. These tsRNAs were mainly concentrated in intercellular interactions and neural function regulation in GO terms and enriched in MAPK, insulin, FoxO, calcium, Ras, ErbB, Wnt, T cell receptor, and cGMP-PKG signaling pathways. tRF-Gly-CCC-039 expression was upregulated in vivo and in vitro in the diabetic model. High glucose disturbed endothelial function in HUVECs, and tRF-Gly-CCC-039 mimics further harmed HUVECs function, characterized by the suppression of proliferation, migration, tube formation, and the expression of Coll1a1, Coll4a2, and MMP9. Conversely, the tRF-Gly-CCC-039 inhibitor could attenuate high-glucose-induced endothelial injury to HUVECs.
We investigated the tsRNAs expression profile in diabetic foot ulcers and defined the impairment role of tRF-Gly-CCC-039 in endothelial function in HUVECs. This study may provide novel insights into accelerating diabetic skin wound healing.
糖尿病伤口皮肤愈合延迟是一个主要的临床问题。据报道,tRNA衍生的小RNA(tsRNAs)与糖尿病有关。然而,tsRNAs在糖尿病伤口愈合中的作用尚不清楚。我们的研究旨在探索tsRNAs的表达谱,挖掘糖尿病伤口中关键的潜在tsRNAs及其机制。
对糖尿病足溃疡患者和健康对照者的皮肤组织进行小RNA测序。通过在人脐静脉内皮细胞(HUVECs)中进行功能缺失和功能获得实验来探究候选tsRNA的作用。
共鉴定出55种差异表达的tsRNAs,与对照组相比,糖尿病组中有12种上调,43种下调。这些tsRNAs在基因本体(GO)术语中主要集中在细胞间相互作用和神经功能调节,并且在丝裂原活化蛋白激酶(MAPK)、胰岛素、叉头框O(FoxO)、钙、Ras、表皮生长因子受体(ErbB)、Wnt、T细胞受体和环磷酸鸟苷-蛋白激酶G(cGMP-PKG)信号通路中富集。在糖尿病模型的体内和体外,tRF-Gly-CCC-039的表达均上调。高糖干扰了HUVECs的内皮功能,而tRF-Gly-CCC-039模拟物进一步损害了HUVECs的功能,其特征为增殖、迁移、管腔形成以及Ⅰ型胶原蛋白α1(Coll1a1)、Ⅳ型胶原蛋白α2(Coll4a2)和基质金属蛋白酶9(MMP9)的表达受到抑制。相反,tRF-Gly-CCC-039抑制剂可减轻高糖诱导的对HUVECs的内皮损伤。
我们研究了糖尿病足溃疡中tsRNAs的表达谱,并确定了tRF-Gly-CCC-039对HUVECs内皮功能的损害作用。本研究可能为加速糖尿病皮肤伤口愈合提供新的见解。