4.3 Article

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

Journal

BIOTECHNOLOGY AND APPLIED BIOCHEMISTRY
Volume 68, Issue 2, Pages 239-246

Publisher

WILEY
DOI: 10.1002/bab.1916

Keywords

glucose-regulated protein 78; Camelidae antibody; cancer detection; nanobody; unfold protein response

Funding

  1. Iran national science foundation (INSF) [93022027]

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A novel recombinant nanobody named V80 was isolated and produced using phage display technique, showing high specificity and affinity to cancer cells, making it a potential new tool for cancer detection and therapy.
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.

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