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HaloTag展示技术可实现对工程化细胞外囊泡的定量单颗粒表征和功能化。

HaloTag display enables quantitative single-particle characterization and functionalization of engineered extracellular vesicles.

作者信息

Mitrut Roxana E, Stranford Devin M, DiBiase Beth N, Chan Jonathan M, Bailey Matthew D, Luo Minrui, Harper Clare S, Meade Thomas J, Wang Muzhou, Leonard Joshua N

出版信息

bioRxiv. 2024 May 3:2023.09.25.559433. doi: 10.1101/2023.09.25.559433.

Abstract

Extracellular vesicles (EVs) play key roles in diverse biological processes, transport biomolecules between cells, and have been engineered for therapeutic applications. A useful EV bioengineering strategy is to express engineered proteins on the EV surface to confer targeting, bioactivity, and other properties. Measuring how incorporation varies across a population of EVs is important for characterizing such materials and understanding their function, yet it remains challenging to quantitatively characterize the absolute number of engineered proteins incorporated at single-EV resolution. To address these needs, we developed a HaloTag-based characterization platform in which dyes or other synthetic species can be covalently and stoichiometrically attached to engineered proteins on the EV surface. To evaluate this system, we employed several orthogonal quantification methods, including flow cytometry and fluorescence microscopy, and found that HaloTag-mediated quantification is generally robust across EV analysis methods. We compared HaloTag-labeling to antibody-labeling of EVs using single vesicle flow cytometry, enabling us to measure the substantial degree to which antibody labeling can underestimate proteins present on an EV. Finally, we demonstrate the use of HaloTag to compare between protein designs for EV bioengineering. Overall, the HaloTag system is a useful EV characterization tool which complements and expands existing methods.

摘要

细胞外囊泡(EVs)在多种生物学过程中发挥关键作用,在细胞间运输生物分子,并已被设计用于治疗应用。一种有用的EV生物工程策略是在EV表面表达工程蛋白,以赋予靶向性、生物活性和其他特性。测量工程蛋白在一群EV中的掺入情况如何变化,对于表征此类材料和理解其功能很重要,但要在单EV分辨率下定量表征掺入的工程蛋白的绝对数量仍然具有挑战性。为满足这些需求,我们开发了一种基于HaloTag的表征平台,其中染料或其他合成物质可以共价且化学计量地连接到EV表面的工程蛋白上。为评估该系统,我们采用了几种正交定量方法,包括流式细胞术和荧光显微镜,发现HaloTag介导的定量在EV分析方法中通常是可靠的。我们使用单囊泡流式细胞术将HaloTag标记与EV的抗体标记进行比较,使我们能够测量抗体标记低估EV上存在的蛋白的程度。最后,我们展示了使用HaloTag来比较用于EV生物工程的蛋白设计。总体而言,HaloTag系统是一种有用的EV表征工具,它补充并扩展了现有方法。

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