Litcius/Paper detail

Isolation of Structurally Heterogeneous TCR‐CD3 Extracellular Vesicle Subpopulations Using Caliper Strategy

Wen Yin, Haitian Chen, Jianye Cai, Xing Huang, Lang Zhang, Yuzhi Xu, Jun Zheng, Si‐Yang Liu, Xiaoyong Zou, Zong Dai, Yang Yang

2023Angewandte Chemie International Edition13 citationsDOI

Abstract

Cells in different states can release diverse types of extracellular vesicles (EVs) that participate in intracellular communication or pathological processes. The identification and isolation of EV subpopulations are significant to explore their physiological functions and clinical value. In this study, structurally heterogeneous T-cell receptor (TCR)-CD3 EVs were proposed and verified for the first time using a caliper strategy. Two CD3-targeting aptamers were designed in the shape of a caliper with an optimized probe distance and were assembled on gold nanoparticles (Au-Caliper) to distinguish TCR-CD3 monomeric and dimeric EVs (m/dCD3 EVs) in skin-transplanted mouse plasma. Phenotyping and sequencing analysis revealed clear heterogeneity in the isolated m/dCD3 EVs, providing the potential for mCD3 EVs as a candidate biomarker of acute cellular rejection (ACR) and holding great prospects for distinguishing EV subpopulations based on protein oligomerization states.

Topics & Concepts

CalipersCD3T-cell receptorExtracellular vesiclesAptamerCell biologyVesicleMonomerComputational biologyBiologyExtracellular vesicleChemistryT cellmicroRNAMolecular biologyImmunologyCD8AntigenImmune systemBiochemistryGeneMicrovesiclesMembraneOrganic chemistryPolymerPhysicsOpticsExtracellular vesicles in diseaseAdvanced biosensing and bioanalysis techniquesRNA Interference and Gene Delivery