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使用二氧化钛微粒对血浆细胞外囊泡进行高度选择性纯化以描绘糖尿病视网膜病变的代谢特征

Highly Selective Purification of Plasma Extracellular Vesicles Using Titanium Dioxide Microparticles for Depicting the Metabolic Signatures of Diabetic Retinopathy.

作者信息

Pan Youjin, Chen Tucan, Zhang Qiwei, Cao Lina, Wang Siyao, Cai Jianqiu, Xu Jing, Shi Mengte, Ruan Luya, Zhu Qingfu, Hu Liang

机构信息

The Second Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University, Wenzhou 325027, Zhejiang, China.

Eye Hospital, School of Ophthalmology and Optometry, School of Biomedical Engineering, Wenzhou Medical University, Wenzhou 325027, Zhejiang, China.

出版信息

Anal Chem. 2022 Oct 18;94(41):14099-14108. doi: 10.1021/acs.analchem.1c05378. Epub 2022 Oct 5.

Abstract

Extracellular vesicle (EV) cargos with regular fluctuations hold the potential for providing chemical predictors toward clinical diagnosis and prognosis. A plasma sample is one of the most important sources of circulating EVs, yet the technical barrier and cost consumption in plasma-EV isolation still limit its application in disease diagnosis and biomarker discovery. Here, we introduced an easy-to-use strategy that allows selectively purifying small EVs (sEVs) from human plasma and detecting their metabolic alternations. FeO@TiO microbeads with a rough island-shaped surface have proven the capability of performing efficient and reversible sEV capture owing to the phospholipid affinity, enhanced binding sites, and size-exclusion-like effect of the rough TiO shell. The proposed system can also shorten the separation procedure from hours to 20 min when compared with the ultracentrifugation method and yield approximately 10 sEV particles from 100 μL of plasma. Metabolome variations of sEVs among progressive diabetic retinopathy subjects were finally studied, observing a cluster of metabolites with elevated levels and suggesting potential roles of these sEV chemicals in diabetic retinopathy onset and progression. Such a scalable and flexible EV capture system can be seen as an effective analytical tool for facilitating plasma-based liquid biopsies.

摘要

具有规律波动的细胞外囊泡(EV)货物有潜力为临床诊断和预后提供化学预测指标。血浆样本是循环EV的最重要来源之一,但血浆-EV分离中的技术障碍和成本消耗仍然限制了其在疾病诊断和生物标志物发现中的应用。在此,我们介绍了一种易于使用的策略,该策略允许从人血浆中选择性纯化小EV(sEV)并检测其代谢变化。具有粗糙岛状表面的FeO@TiO微珠已被证明具有执行高效且可逆的sEV捕获的能力,这归因于磷脂亲和力、增强的结合位点以及粗糙TiO壳的类似尺寸排阻的效应。与超速离心法相比,所提出的系统还可以将分离过程从数小时缩短至20分钟,并且从100μL血浆中产生约10个sEV颗粒。最终研究了进展性糖尿病视网膜病变受试者中sEV的代谢组变化,观察到一组水平升高的代谢物,并暗示了这些sEV化学物质在糖尿病视网膜病变发生和进展中的潜在作用。这种可扩展且灵活的EV捕获系统可被视为促进基于血浆的液体活检的有效分析工具。

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