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纳米颗粒跟踪分析:一种表征细胞外囊泡的有效工具。

Nanoparticle Tracking Analysis: An Effective Tool to Characterize Extracellular Vesicles.

机构信息

Chemical and Biological Engineering, The University of Alabama, Tuscaloosa, AL 35487, USA.

出版信息

Molecules. 2024 Oct 1;29(19):4672. doi: 10.3390/molecules29194672.

Abstract

Extracellular vesicles (EVs) are membrane-enclosed particles that have attracted much attention for their potential in disease diagnosis and therapy. However, the clinical translation is limited by the dosing consistency due to their heterogeneity. Among various characterization techniques, nanoparticle tracking analysis (NTA) offers distinct benefits for EV characterization. In this review, we will discuss the NTA technique with a focus on factors affecting the results; then, we will review the two modes of the NTA techniques along with suitable applications in specific areas of EV studies. EVs are typically characterized by their size, size distribution, concentration, protein markers, and RNA cargos. The light-scattering mode of NTA offers accurate size, size distribution, and concentration information in solution, which is useful for comparing EV isolation methods, storage conditions, and EV secretion conditions. In contrast, fluorescent mode of NTA allows differentiating EV subgroups based on specific markers. The success of fluorescence NTA heavily relies on fluorescent tags (e.g., types of dyes and labeling methods). When EVs are labeled with disease-specific markers, fluorescence NTA offers an effective tool for disease detection in biological fluids, such as saliva, blood, and serum. Finally, we will discuss the limitations and future directions of the NTA technique in EV characterization.

摘要

细胞外囊泡 (EVs) 是一种被膜包裹的颗粒,因其在疾病诊断和治疗方面的潜力而受到广泛关注。然而,由于其异质性,临床转化受到剂量一致性的限制。在各种表征技术中,纳米颗粒跟踪分析 (NTA) 为 EV 的表征提供了独特的优势。在这篇综述中,我们将讨论 NTA 技术,重点讨论影响结果的因素;然后,我们将回顾 NTA 技术的两种模式以及在 EV 研究特定领域的合适应用。EVs 通常通过其大小、大小分布、浓度、蛋白标志物和 RNA cargos 来表征。NTA 的光散射模式提供了溶液中准确的大小、大小分布和浓度信息,这对于比较 EV 分离方法、储存条件和 EV 分泌条件非常有用。相比之下,荧光 NTA 模式允许根据特定标记物区分 EV 亚群。荧光 NTA 的成功很大程度上依赖于荧光标记物(例如,染料类型和标记方法)。当 EV 被疾病特异性标记物标记时,荧光 NTA 为在生物流体(如唾液、血液和血清)中进行疾病检测提供了一种有效工具。最后,我们将讨论 NTA 技术在 EV 表征中的局限性和未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b022/11477862/372a3283de73/molecules-29-04672-g001.jpg

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