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Isolation of Potent CGRP Neutralizing Antibodies Using Four Simple Assays. | LitMetric

AI Article Synopsis

  • Calcitonin gene-related peptide (CGRP) is linked to chronic pain and migraines, and inhibiting its function with specific antibodies could provide a new treatment option.
  • Researchers have isolated and characterized highly potent antibodies against CGRP using various binding assays, confirming their effectiveness and cross-reactivity with different species.
  • The study highlights the potential of simple assay formats to rapidly identify antibodies for CGRP and suggests these methods could be adapted for discovering antibodies targeting other therapeutic proteins.

Article Abstract

Calcitonin gene-related peptide (CGRP) is a small neuropeptide and a potent vasodilator that is widely associated with chronic pain and migraine. An antibody that inhibits CGRP function would be a potential therapeutic for treatment of these disorders. Here we describe the isolation of highly potent antibodies to CGRP from phage and ribosome display libraries and characterization of their epitope, species cross-reactivity, kinetics, and functional activity. Homogenous time-resolved fluorescence (HTRF) binding assays identified antibodies with the desired species cross-reactivity from naïve libraries, and HTRF epitope competition assays were used to characterize and group scFv by epitope. The functional inhibition of CGRP and species cross-reactivity of purified scFv and antibodies were subsequently confirmed using cAMP assays. We show that epitope competition assays could be used as a surrogate for functional cell-based assays during affinity maturation, in combination with scFv off-rate ranking by biolayer interferometry (BLI). This is the first time it has been shown that off-rate ranking can be predictive of functional activity for anti-CGRP antibodies. Here we demonstrate how, by using just four simple assays, diverse panels of antibodies to CGRP can be identified. These assay formats have potential utility in the identification of antibodies to other therapeutic targets.

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Source
http://dx.doi.org/10.1177/1087057115610070DOI Listing

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