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尿细胞外囊泡蛋白质的纳米颗粒跟踪分析:实验室医学的新挑战

Nanoparticle Tracking Analysis of Urinary Extracellular Vesicle Proteins as a New Challenge in Laboratory Medicine.

机构信息

Department of Clinical Chemistry, Medical University of Gdansk, Debinki Street 7, 80-211 Gdansk, Poland.

Department of Nephrology, Transplantology and Internal Diseases, Medical University of Gdansk, Smoluchowskiego Street 17, 80-214 Gdansk, Poland.

出版信息

Int J Mol Sci. 2023 Jul 31;24(15):12228. doi: 10.3390/ijms241512228.

Abstract

Urinary extracellular vesicle (uEV) proteins may be used as specific markers of kidney damage in various pathophysiological conditions. The nanoparticle-tracking analysis (NTA) appears to be the most useful method for the analysis of uEVs due to its ability to analyze particles below 300 nm. The NTA method has been used to measure the size and concentration of uEVs and also allows for a deeper analysis of uEVs based on their protein composition using fluorescence measurements. However, despite much interest in the clinical application of uEVs, their analysis using the NTA method is poorly described and requires meticulous sample preparation, experimental adjustment of instrument settings, and above all, an understanding of the limitations of the method. In the present work, we demonstrate the usefulness of an NTA. We also present problems encountered during analysis with possible solutions: the choice of sample dilution, the method of the presentation and comparison of results, photobleaching, and the adjustment of instrument settings for a specific analysis. We show that the NTA method appears to be a promising method for the determination of uEVs. However, it is important to be aware of potential problems that may affect the results.

摘要

尿细胞外囊泡 (uEV) 蛋白可作为各种病理生理条件下肾损伤的特异性标志物。纳米颗粒跟踪分析 (NTA) 由于能够分析 300nm 以下的颗粒,因此似乎是分析 uEVs 的最有用方法。NTA 方法已用于测量 uEVs 的大小和浓度,并且还允许使用荧光测量根据其蛋白质组成对 uEVs 进行更深入的分析。然而,尽管人们对 uEVs 的临床应用非常感兴趣,但对其使用 NTA 方法的分析描述得很差,需要精心准备样品、实验调整仪器设置,最重要的是,要了解该方法的局限性。在本工作中,我们展示了 NTA 的有用性。我们还介绍了在分析中遇到的问题及其可能的解决方案:样品稀释的选择、结果的呈现和比较方法、光漂白以及针对特定分析调整仪器设置。我们表明,NTA 方法似乎是确定 uEVs 的有前途的方法。然而,重要的是要意识到可能影响结果的潜在问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b49/10419144/5fe6f0d61d32/ijms-24-12228-g001.jpg

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