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Evaluation of assay interference and interpretation of CXCR4 receptor occupancy results in a preclinical study with MEDI3185, a fully human antibody to CXCR4

BACKGROUND: Receptor occupancy (RO) assays provide a means to measure the direct interaction of therapeutics with their cell surface targets. Free receptor assays quantify cell‐surface receptors not bound by a therapeutic while total receptor assays quantify the amount of target on the cell surface....

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Autores principales: Schwickart, Martin, Chavez, Carlos, Henderson, Simon, Vainshtein, Inna, Standifer, Nathan, DelNagro, Christopher, Mehrzai, Freshta, Schneider, Amy, Roskos, Lorin, Liang, Meina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5064743/
https://www.ncbi.nlm.nih.gov/pubmed/26384735
http://dx.doi.org/10.1002/cyto.b.21327
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author Schwickart, Martin
Chavez, Carlos
Henderson, Simon
Vainshtein, Inna
Standifer, Nathan
DelNagro, Christopher
Mehrzai, Freshta
Schneider, Amy
Roskos, Lorin
Liang, Meina
author_facet Schwickart, Martin
Chavez, Carlos
Henderson, Simon
Vainshtein, Inna
Standifer, Nathan
DelNagro, Christopher
Mehrzai, Freshta
Schneider, Amy
Roskos, Lorin
Liang, Meina
author_sort Schwickart, Martin
collection PubMed
description BACKGROUND: Receptor occupancy (RO) assays provide a means to measure the direct interaction of therapeutics with their cell surface targets. Free receptor assays quantify cell‐surface receptors not bound by a therapeutic while total receptor assays quantify the amount of target on the cell surface. METHODS: We developed both a flow cytometry‐based free RO assay to detect free surface CXCR4, and a total surface CXCR4 assay. In an effort to evaluate potential displacement interference, we performed in vitro experiments to compare on‐cell affinity with the IC(50) values from in vitro and in vivo from the free CXCR4 assay. We determined free and total surface CXCR4 on circulating blood cells in cynomolgus monkeys dosed with MEDI3185, a fully human monoclonal antibody to CXCR4. RESULTS: We devised an approach to evaluate displacement interference during assay development and showed that our free assay demonstrated little to no displacement interference. After dosing cynomolgus monkeys with MEDI3185, we observed dose‐dependence in the magnitude and duration of receptor occupancy and found CXCR4 to increase on lymphocytes, monocytes, and granulocytes. In a multiple dose study, we observed time points where surface CXCR4 appeared fully occupied but MEDI3185 was not detectable in serum. These paradoxical results represented a type of assay interference, and by comparing pharmacokinetic, ADA and total CXCR4 results, the most likely reason for the free CXCR4 results was the emergence of neutralizing anti‐drug antibodies (ADA). The total CXCR4 assay was unaffected by ADA and provided a reliable marker of target modulation in both in vivo studies. © 2015 The Authors Cytometry Part B: Clinical Cytometry Published byWiley Periodicals, Inc.
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spelling pubmed-50647432016-10-19 Evaluation of assay interference and interpretation of CXCR4 receptor occupancy results in a preclinical study with MEDI3185, a fully human antibody to CXCR4 Schwickart, Martin Chavez, Carlos Henderson, Simon Vainshtein, Inna Standifer, Nathan DelNagro, Christopher Mehrzai, Freshta Schneider, Amy Roskos, Lorin Liang, Meina Cytometry B Clin Cytom Original Articles BACKGROUND: Receptor occupancy (RO) assays provide a means to measure the direct interaction of therapeutics with their cell surface targets. Free receptor assays quantify cell‐surface receptors not bound by a therapeutic while total receptor assays quantify the amount of target on the cell surface. METHODS: We developed both a flow cytometry‐based free RO assay to detect free surface CXCR4, and a total surface CXCR4 assay. In an effort to evaluate potential displacement interference, we performed in vitro experiments to compare on‐cell affinity with the IC(50) values from in vitro and in vivo from the free CXCR4 assay. We determined free and total surface CXCR4 on circulating blood cells in cynomolgus monkeys dosed with MEDI3185, a fully human monoclonal antibody to CXCR4. RESULTS: We devised an approach to evaluate displacement interference during assay development and showed that our free assay demonstrated little to no displacement interference. After dosing cynomolgus monkeys with MEDI3185, we observed dose‐dependence in the magnitude and duration of receptor occupancy and found CXCR4 to increase on lymphocytes, monocytes, and granulocytes. In a multiple dose study, we observed time points where surface CXCR4 appeared fully occupied but MEDI3185 was not detectable in serum. These paradoxical results represented a type of assay interference, and by comparing pharmacokinetic, ADA and total CXCR4 results, the most likely reason for the free CXCR4 results was the emergence of neutralizing anti‐drug antibodies (ADA). The total CXCR4 assay was unaffected by ADA and provided a reliable marker of target modulation in both in vivo studies. © 2015 The Authors Cytometry Part B: Clinical Cytometry Published byWiley Periodicals, Inc. John Wiley and Sons Inc. 2015-12-15 2016-03 /pmc/articles/PMC5064743/ /pubmed/26384735 http://dx.doi.org/10.1002/cyto.b.21327 Text en © 2015 The Authors Cytometry Part B: Clinical Cytometry Published byWiley Periodicals, Inc. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial (http://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Articles
Schwickart, Martin
Chavez, Carlos
Henderson, Simon
Vainshtein, Inna
Standifer, Nathan
DelNagro, Christopher
Mehrzai, Freshta
Schneider, Amy
Roskos, Lorin
Liang, Meina
Evaluation of assay interference and interpretation of CXCR4 receptor occupancy results in a preclinical study with MEDI3185, a fully human antibody to CXCR4
title Evaluation of assay interference and interpretation of CXCR4 receptor occupancy results in a preclinical study with MEDI3185, a fully human antibody to CXCR4
title_full Evaluation of assay interference and interpretation of CXCR4 receptor occupancy results in a preclinical study with MEDI3185, a fully human antibody to CXCR4
title_fullStr Evaluation of assay interference and interpretation of CXCR4 receptor occupancy results in a preclinical study with MEDI3185, a fully human antibody to CXCR4
title_full_unstemmed Evaluation of assay interference and interpretation of CXCR4 receptor occupancy results in a preclinical study with MEDI3185, a fully human antibody to CXCR4
title_short Evaluation of assay interference and interpretation of CXCR4 receptor occupancy results in a preclinical study with MEDI3185, a fully human antibody to CXCR4
title_sort evaluation of assay interference and interpretation of cxcr4 receptor occupancy results in a preclinical study with medi3185, a fully human antibody to cxcr4
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5064743/
https://www.ncbi.nlm.nih.gov/pubmed/26384735
http://dx.doi.org/10.1002/cyto.b.21327
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