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高糖刺激下 HK-2 细胞和外泌体的差异脂质组学研究。

Differential lipidomics of HK-2 cells and exosomes under high glucose stimulation.

机构信息

Department of Nephrology, The First Affiliated Hospital of China Medical University, 155 North Nanjing Street, Shenyang, Liaoning, P.R. China, 110001.

出版信息

Int J Med Sci. 2022 Jan 24;19(2):393-401. doi: 10.7150/ijms.67326. eCollection 2022.

Abstract

Abnormal cellular lipid metabolism has a very important role in the occurrence and progression of diabetic kidney disease (DKD). However, the lipid composition and differential expression by high glucose stimulation of renal tubular cells and their exosomes, which is a vital part of the development of DKD, are largely unknown. In this study, based on targeted lipid analysis by isotope labeling and tandem mass spectrometry, a total of 421 and 218 lipid species were quantified in HK-2 cells and exosomes, respectively. More importantly, results showed that GM3 d18:1/22:0, GM3 d18:1/16:0, GM3 d18:0/16:0, GM3 d18:1/22:1 were significantly increased, while LPE18:1, LPE, CL66:4 (16:1), BMP36:3, CL70:7 (16:1), CL74:8 (16:1) were significantly decreased in high glucose-stimulated HK-2 cells. Also, PG36:1, FFA22:5, PC38:3, SM d18:1/16:1, CE-16:1, CE-18:3, CE-20:5, and CE-22:6 were significantly increased, while GM3 d18:1/24:1, GM3 were significantly decreased in exosomes secreted by high glucose-stimulated HK-2 cells. Furthermore, TAG, PC, CL were decreased significantly in the exosomes comparing with the HK-2 cells, and LPA18:2, LPI22:5, PG32:2, FFA16:1, GM3 d18:1/18:1, GM3 d18:1/20:1, GM3 d18:0/20:0, PC40:6p, TAG52:1(18:1), TAG52:0(18:0), CE-20:5, CE-20:4, CE-22:6 were only found in exosomes. In addition, the expression of PI4P in HK-2 cells decreased under a high glucose state. These data may be useful to provide new targets for exploring the mechanisms of DKD.

摘要

异常的细胞脂质代谢在糖尿病肾病 (DKD) 的发生和进展中起着非常重要的作用。然而,高糖刺激肾小管细胞及其外泌体的脂质组成和差异表达,这是 DKD 发展的重要组成部分,在很大程度上是未知的。在这项研究中,基于同位素标记和串联质谱的靶向脂质分析,共定量了 HK-2 细胞和外泌体中的 421 种和 218 种脂质。更重要的是,结果表明,GM3 d18:1/22:0、GM3 d18:1/16:0、GM3 d18:0/16:0、GM3 d18:1/22:1 显著增加,而 LPE18:1、LPE、CL66:4 (16:1)、BMP36:3、CL70:7 (16:1)、CL74:8 (16:1) 则显著减少。此外,PG36:1、FFA22:5、PC38:3、SM d18:1/16:1、CE-16:1、CE-18:3、CE-20:5 和 CE-22:6 显著增加,而 GM3 d18:1/24:1、GM3 则显著减少。高糖刺激的 HK-2 细胞分泌的外泌体。此外,与 HK-2 细胞相比,外泌体中的 TAG、PC、CL 显著减少,而 LPA18:2、LPI22:5、PG32:2、FFA16:1、GM3 d18:1/18:1、GM3 d18:1/20:1、GM3 d18:0/20:0、PC40:6p、TAG52:1(18:1)、TAG52:0(18:0)、CE-20:5、CE-20:4、CE-22:6 仅在外泌体中发现。此外,PI4P 在高糖状态下在 HK-2 细胞中的表达减少。这些数据可能有助于为探索 DKD 的机制提供新的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c57b/8795806/534e92d38ca7/ijmsv19p0393g001.jpg

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