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脓毒症发生过程中血清外泌体的多组学特征。

The multiomics landscape of serum exosomes during the development of sepsis.

机构信息

Department of Respiratory and Critical Care Medicine, Affiliated Dongguan Hospital, Southern Medical University, Guangdong, China; Shenzhen Hospital, Southern Medical University, Guangdong, China; Guangdong Provincial Key Laboratory of Proteomics, State Key Laboratory of Organ Failure Research, Department of Pathophysiology, School of Basic Medical Sciences, Southern Medical University, Guangdong, China.

The Third Affiliated Hospital of Southern Medical University, Guangdong, China.

出版信息

J Adv Res. 2022 Jul;39:203-223. doi: 10.1016/j.jare.2021.11.005. Epub 2021 Nov 17.

Abstract

INTRODUCTION

Sepsis is an infection-induced severe inflammatory disorder leading to multiple organ dysfunction. It remains a highly lethal condition for which early diagnosis and therapy achieve unsatisfactory results. Circulating exosomes containing biomarkers and mediators of sepsis have recently received attention, but the progress has been far from optimal.

OBJECTIVES

The present study focuses on the profiles of molecular dynamics in serum exosomes and explores the potential molecular mechanisms on serum exosomes during the process of sepsis.

METHODS

We used high-performance liquid chromatography-tandem mass spectrometry and RNA-seq to detect the dynamic profiles of exosome proteins and RNAs (including mRNAs, lncRNAs and miRNAs) in serum exosomes from 3 healthy individuals and 9 septic patients at the different stages. Then integrative multiomics analyses were performed and the results were validated by qRT-PCR, LiquiChip assay and metabolomics analysis on mice subjected to cecal ligation and puncture (CLP) modeling.

RESULTS

A total of 354 proteins, 195 mRNAs, 82 lncRNAs and 55 miRNAs were identified as differentially expressed molecules in serum exosomes from septic patients. Integrative multiomics analysis showed that exosome components were associated with cytokine storm, complement and clotting cascades, the endothelial barrier, 20S proteasome-dependent protein degradation and vitamin metabolism. Importantly, pretreatment with serum exosomes derived from mice subjected to CLP significantly restrained proinflammatory cytokine expression and alleviated tissue injury in septic mice. Further metabolomics analysis demonstrated that pretreatment with septic serum exosomes significantly affected the metabolites associated with vitamin digestion and absorption in CLP mice.

CONCLUSION

Our study for the first time describes the landscape of the molecular dynamics of serum exosomes during the development of sepsis and proposes some hypothetical molecular mechanisms by integrative multiomics analysis, which may provide helpful diagnostic and therapeutic insights for the ongoing battle against sepsis.

摘要

简介

脓毒症是一种感染引起的严重炎症性疾病,可导致多器官功能障碍。尽管目前已采用早期诊断和治疗策略,但脓毒症的死亡率仍然居高不下。最近,人们对含有脓毒症生物标志物和介质的循环外泌体引起了关注,但进展远非理想。

目的

本研究专注于血清外泌体分子动力学的特征,并探讨脓毒症过程中外泌体分子的潜在机制。

方法

我们使用高效液相色谱-串联质谱和 RNA-seq 检测了来自 3 名健康个体和 9 名不同阶段脓毒症患者的血清外泌体中外泌体蛋白和 RNA(包括信使 RNA、长链非编码 RNA 和 microRNA)的动态特征。然后进行了综合多组学分析,并通过 qRT-PCR、LiquiChip 检测和接受盲肠结扎和穿刺(CLP)建模的小鼠的代谢组学分析对结果进行了验证。

结果

共鉴定出 354 种蛋白质、195 种信使 RNA、82 种长链非编码 RNA 和 55 种 microRNA 为脓毒症患者血清外泌体中的差异表达分子。综合多组学分析表明,外泌体成分与细胞因子风暴、补体和凝血级联、内皮屏障、20S 蛋白酶体依赖的蛋白降解和维生素代谢有关。重要的是,预处理脓毒症小鼠来源的血清外泌体显著抑制促炎细胞因子的表达并减轻脓毒症小鼠的组织损伤。进一步的代谢组学分析表明,预处理脓毒症血清外泌体显著影响 CLP 小鼠中与维生素消化和吸收相关的代谢物。

结论

本研究首次描述了脓毒症发展过程中外泌体分子动力学的全貌,并通过综合多组学分析提出了一些假设性的分子机制,这可能为对抗脓毒症提供有帮助的诊断和治疗思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be1a/9263672/63fc368eb05a/ga1.jpg

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