A Novel Antigen Design Strategy to Isolate Single‐Domain Antibodies that Target Human Nav1.7 and Reduce Pain in Animal Models

Author:

Martina Marzia1ORCID,Banderali Umberto1ORCID,Yogi Alvaro1,Arbabi Ghahroudi Mehdi2ORCID,Liu Hong1,Sulea Traian3ORCID,Durocher Yves3ORCID,Hussack Greg2ORCID,van Faassen Henk2ORCID,Chakravarty Balu1,Liu Qing Yan1,Iqbal Umar1ORCID,Ling Binbing1ORCID,Lessard Etienne3ORCID,Sheff Joey2ORCID,Robotham Anna2ORCID,Callaghan Debbie2,Moreno Maria1,Comas Tanya1ORCID,Ly Dao1,Stanimirovic Danica1ORCID

Affiliation:

1. Human Health Therapeutics Research Center National Research Council Canada 1200 Montreal Road, Building M54 Ottawa ON K1A 0R6 Canada

2. Human Health Therapeutics Research Centre National Research Council Canada 100 Sussex Drive Ottawa ON K1N 5A2 Canada

3. Human Health Therapeutics Research Centre National Research Council Canada 6100 Royalmount Avenue Montréal Quebec H4P 2R2 Canada

Abstract

AbstractGenetic studies have identified the voltage‐gated sodium channel 1.7 (Nav1.7) as pain target. Due to the ineffectiveness of small molecules and monoclonal antibodies as therapeutics for pain, single‐domain antibodies (VHHs) are developed against the human Nav1.7 (hNav1.7) using a novel antigen presentation strategy. A 70 amino‐acid peptide from the hNav1.7 protein is identified as a target antigen. A recombinant version of this peptide is grafted into the complementarity determining region 3 (CDR3) loop of an inert VHH in order to maintain the native 3D conformation of the peptide. This antigen is used to isolate one VHH able to i) bind hNav1.7, ii) slow the deactivation of hNav1.7, iii) reduce the ability of eliciting action potentials in nociceptors, and iv) reverse hyperalgesia in in vivo rat and mouse models. This VHH exhibits the potential to be developed as a therapeutic capable of suppressing pain. This novel antigen presentation strategy can be applied to develop biologics against other difficult targets such as ion channels, transporters and GPCRs.

Publisher

Wiley

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