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一种基于近连接杂交引发结构切换的信号放大策略,用于灵敏准确地检测外泌体。

A proximity ligation hybridization triggered structure-switching based signal amplification strategy for sensitive and accurate exosome detection.

机构信息

Chongqing Key Laboratory of Translational Research for Cancer Metastasis and Individualized Treatment, Chongqing University Cancer Hospital, Chongqing, 400030, China.

出版信息

Anal Methods. 2024 Jul 4;16(26):4262-4267. doi: 10.1039/d4ay00829d.

Abstract

Exosomes have significant functions in intercellular communication, as well as in tumor migration and invasion. Nevertheless, the precise identification of exosomes poses a significant obstacle due to their low abundance in biofluids and potential disruption caused by free protein molecules, such as CD63 protein. In this study, we have developed a signal amplification method for precise detection of exosomes using a proximity ligation hybridization triggered structure-switching approach. The method involves the dual-recognition of exosomes by two probes: an aptamer probe that recognizes the exosomal surface protein CD63 (L1 probe), and a cholesterol probe that targets the biolipid layer of the exosomes (L2 probe). Based on the dual-recognition of exosomes, we have successfully developed an accurate and sensitive approach that integrates the proximity ligation hybridization technique with a structure-switching based signal cycle. This approach allows for the simultaneous analysis of two biomarkers, enabling both quantification and tracing of exosomes without the need for enzymes. Eventually, the proposed method exhibits a wide detection range of 5 orders of magnitude and a low limit of detection of 36 particles per μL, making it suitable for a wide range of applications in the fields of biological science, biomedical engineering, and personalized medicine.

摘要

外泌体在细胞间通讯中具有重要功能,同时也在肿瘤迁移和侵袭中发挥作用。然而,由于其在生物流体中的丰度较低,并且可能会被游离蛋白质分子(如 CD63 蛋白)破坏,因此对外泌体的精确识别存在很大的障碍。在本研究中,我们开发了一种使用邻近连接杂交引发结构切换方法的信号放大方法,用于对外泌体进行精确检测。该方法涉及通过两种探针双重识别外泌体:一种识别外泌体表面蛋白 CD63 的适体探针(L1 探针),以及一种靶向外泌体生物脂质层的胆固醇探针(L2 探针)。基于对外泌体的双重识别,我们成功开发了一种准确灵敏的方法,该方法将邻近连接杂交技术与基于结构切换的信号循环相结合。这种方法允许同时分析两种生物标志物,实现对外泌体的定量和追踪,而无需使用酶。最终,所提出的方法表现出 5 个数量级的宽检测范围和 36 个颗粒/μL 的低检测限,使其适用于生物科学、生物医学工程和个性化医学等领域的广泛应用。

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