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用于检测 GRP78 表达癌细胞的新型纳米抗体的分离与鉴定。

Isolation and characterization of a novel nanobody for detection of GRP78 expressing cancer cells.

机构信息

Chemical Injuries Research Center, Systems biology and Poisonings Institute, Baqiyatallah University of Medical Sciences, Tehran, Iran.

Department of Medical Biotechnology, Faculty of Medical Sciences, Tarbiat Modares University, Tehran, Iran.

出版信息

Biotechnol Appl Biochem. 2021 Apr;68(2):239-246. doi: 10.1002/bab.1916. Epub 2020 May 19.

Abstract

Glucose-regulated protein 78 (GRP78) is an endoplasmic reticulum (ER) chaperone that has been shown that is overexpressed in cancer cells. Overexpression of GRP78 on cancer cells makes this molecule a suitable candidate for cancer detection and targeted therapy. VHH is the binding fragment of camelid heavy-chain antibodies also known as "nanobody." The aim of this study is to isolate and produce a new recombinant nanobody using phage display technique to detect cancer cells. Using the c-terminal domain of GRP78 (CGRP) as an antigen, four rounds of biopanning were performed, and high-affinity binders were selected by ELISA. Their affinity and functionality were characterized by surface plasmon resonance (SPR) cell ELISA and immunocytochemistry. A unique nanobody named V80 was purified. ELISA and SPR showed that this antibody had high specificity and affinity to the GRP78. Immunofluorescence analysis showed that V80 could specifically bind to the HepG2 and A549 cancer cell lines. This novel recombinant nanobody could bind to the cell surface of different cancer cells. After further evaluation, this nanobody can be used as a new tool for cancer detection and tumor therapy.

摘要

葡萄糖调节蛋白 78(GRP78)是内质网(ER)伴侣蛋白,已被证明在癌细胞中过度表达。癌细胞中 GRP78 的过表达使该分子成为癌症检测和靶向治疗的合适候选物。VHH 是骆驼重链抗体的结合片段,也称为“纳米抗体”。本研究旨在使用噬菌体展示技术分离和生产一种新的重组纳米抗体,用于检测癌细胞。使用 GRP78 的 C 末端结构域(CGRP)作为抗原,进行了四轮生物淘选,通过 ELISA 选择高亲和力结合物。通过表面等离子体共振(SPR)细胞 ELISA 和免疫细胞化学来表征其亲和力和功能。纯化了一种名为 V80 的独特纳米抗体。ELISA 和 SPR 表明,该抗体对 GRP78 具有高特异性和亲和力。免疫荧光分析表明,V80 可以特异性结合 HepG2 和 A549 癌细胞系。这种新型重组纳米抗体可以与不同癌细胞的细胞表面结合。进一步评估后,这种纳米抗体可作为癌症检测和肿瘤治疗的新工具。

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