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一种基于cCPE的氙生物传感器,用于对表达紧密连接蛋白的细胞进行磁共振成像。

A cCPE-based xenon biosensor for magnetic resonance imaging of claudin-expressing cells.

作者信息

Piontek Anna, Witte Christopher, May Rose Honor, Eichner Miriam, Protze Jonas, Krause Gerd, Piontek Jörg, Schröder Leif

机构信息

Leibniz-Forschungsinstitut für Molekulare Pharmakologie (FMP), Structural Bioinformatics and Protein Design, Berlin, Germany.

Leibniz-Institut für Molekulare Pharmakologie (FMP), Molecular Imaging, Berlin, Germany.

出版信息

Ann N Y Acad Sci. 2017 Jun;1397(1):195-208. doi: 10.1111/nyas.13363.

Abstract

The majority of malignant tumors originate from epithelial cells, and many of them are characterized by an overexpression of claudins (Cldns) and their mislocalization out of tight junctions. We utilized the C-terminal claudin-binding domain of Clostridium perfringens enterotoxin (cCPE), with its high affinity to specific members of the claudin family, as the targeting unit for a claudin-sensitive cancer biosensor. To overcome the poor sensitivity of conventional relaxivity-based magnetic resonance imaging (MRI) contrast agents, we utilized the superior sensitivity of xenon Hyper-CEST biosensors. We labeled cCPE for both xenon MRI and fluorescence detection. As one readout module, we employed a cryptophane (CrA) monoacid and, as the second, a fluorescein molecule. Both were conjugated separately to a biotin molecule via a polyethyleneglycol chemical spacer and later via avidin linked to GST-cCPE. Nontransfected HEK293 cells and HEK293 cells stably expressing Cldn4-FLAG were incubated with the cCPE-based biosensor. Fluorescence-based flow cytometry and xenon MRI demonstrated binding of the biosensor specifically to Cldn4-expressing cells. This study provides proof of concept for the use of cCPE as a carrier for diagnostic contrast agents, a novel approach for potential detection of Cldn3/-4-overexpressing tumors for noninvasive early cancer detection.

摘要

大多数恶性肿瘤起源于上皮细胞,其中许多的特征是紧密连接蛋白(Cldns)过表达及其在紧密连接之外的错误定位。我们利用产气荚膜梭菌肠毒素(cCPE)的C端紧密连接蛋白结合结构域,其对紧密连接蛋白家族的特定成员具有高亲和力,作为紧密连接蛋白敏感型癌症生物传感器的靶向单元。为了克服传统基于弛豫率的磁共振成像(MRI)造影剂灵敏度低的问题,我们利用了氙气Hyper-CEST生物传感器的卓越灵敏度。我们对cCPE进行标记以用于氙气MRI和荧光检测。作为一个读出模块,我们使用了一种隐色体(CrA)单酸,作为第二个模块,使用了一种荧光素分子。两者都通过聚乙二醇化学间隔物分别与生物素分子偶联,随后通过与GST-cCPE连接的抗生物素蛋白偶联。将未转染的HEK293细胞和稳定表达Cldn4-FLAG的HEK293细胞与基于cCPE的生物传感器一起孵育。基于荧光的流式细胞术和氙气MRI表明该生物传感器特异性结合表达Cldn4的细胞。本研究为使用cCPE作为诊断造影剂的载体提供了概念验证,这是一种用于潜在检测Cldn3/-4过表达肿瘤以进行非侵入性早期癌症检测的新方法。

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