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Characterization of Pharmacologic and Pharmacokinetic Properties of CCX168, a Potent and Selective Orally Administered Complement 5a Receptor Inhibitor, Based on Preclinical Evaluation and Randomized Phase 1 Clinical Study

The complement 5a receptor has been an attractive therapeutic target for many autoimmune and inflammatory disorders. However, development of a selective and potent C5aR antagonist has been challenging. Here we describe the characterization of CCX168 (avacopan), an orally administered selective and p...

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Autores principales: Bekker, Pirow, Dairaghi, Daniel, Seitz, Lisa, Leleti, Manmohan, Wang, Yu, Ertl, Linda, Baumgart, Trageen, Shugarts, Sarah, Lohr, Lisa, Dang, Ton, Miao, Shichang, Zeng, Yibin, Fan, Pingchen, Zhang, Penglie, Johnson, Daniel, Powers, Jay, Jaen, Juan, Charo, Israel, Schall, Thomas J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5074546/
https://www.ncbi.nlm.nih.gov/pubmed/27768695
http://dx.doi.org/10.1371/journal.pone.0164646
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author Bekker, Pirow
Dairaghi, Daniel
Seitz, Lisa
Leleti, Manmohan
Wang, Yu
Ertl, Linda
Baumgart, Trageen
Shugarts, Sarah
Lohr, Lisa
Dang, Ton
Miao, Shichang
Zeng, Yibin
Fan, Pingchen
Zhang, Penglie
Johnson, Daniel
Powers, Jay
Jaen, Juan
Charo, Israel
Schall, Thomas J.
author_facet Bekker, Pirow
Dairaghi, Daniel
Seitz, Lisa
Leleti, Manmohan
Wang, Yu
Ertl, Linda
Baumgart, Trageen
Shugarts, Sarah
Lohr, Lisa
Dang, Ton
Miao, Shichang
Zeng, Yibin
Fan, Pingchen
Zhang, Penglie
Johnson, Daniel
Powers, Jay
Jaen, Juan
Charo, Israel
Schall, Thomas J.
author_sort Bekker, Pirow
collection PubMed
description The complement 5a receptor has been an attractive therapeutic target for many autoimmune and inflammatory disorders. However, development of a selective and potent C5aR antagonist has been challenging. Here we describe the characterization of CCX168 (avacopan), an orally administered selective and potent C5aR inhibitor. CCX168 blocked the C5a binding, C5a-mediated migration, calcium mobilization, and CD11b upregulation in U937 cells as well as in freshly isolated human neutrophils. CCX168 retains high potency when present in human blood. A transgenic human C5aR knock-in mouse model allowed comparison of the in vitro and in vivo efficacy of the molecule. CCX168 effectively blocked migration in in vitro and ex vivo chemotaxis assays, and it blocked the C5a-mediated neutrophil vascular endothelial margination. CCX168 was effective in migration and neutrophil margination assays in cynomolgus monkeys. This thorough in vitro and preclinical characterization enabled progression of CCX168 into the clinic and testing of its safety, tolerability, pharmacokinetic, and pharmacodynamic profiles in a Phase 1 clinical trial in 48 healthy volunteers. CCX168 was shown to be well tolerated across a broad dose range (1 to 100 mg) and it showed dose-dependent pharmacokinetics. An oral dose of 30 mg CCX168 given twice daily blocked the C5a-induced upregulation of CD11b in circulating neutrophils by 94% or greater throughout the entire day, demonstrating essentially complete target coverage. This dose regimen is being tested in clinical trials in patients with anti-neutrophil cytoplasmic antibody-associated vasculitis. Trial Registration ISRCTN registry with trial ID ISRCTN13564773.
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spelling pubmed-50745462016-11-04 Characterization of Pharmacologic and Pharmacokinetic Properties of CCX168, a Potent and Selective Orally Administered Complement 5a Receptor Inhibitor, Based on Preclinical Evaluation and Randomized Phase 1 Clinical Study Bekker, Pirow Dairaghi, Daniel Seitz, Lisa Leleti, Manmohan Wang, Yu Ertl, Linda Baumgart, Trageen Shugarts, Sarah Lohr, Lisa Dang, Ton Miao, Shichang Zeng, Yibin Fan, Pingchen Zhang, Penglie Johnson, Daniel Powers, Jay Jaen, Juan Charo, Israel Schall, Thomas J. PLoS One Research Article The complement 5a receptor has been an attractive therapeutic target for many autoimmune and inflammatory disorders. However, development of a selective and potent C5aR antagonist has been challenging. Here we describe the characterization of CCX168 (avacopan), an orally administered selective and potent C5aR inhibitor. CCX168 blocked the C5a binding, C5a-mediated migration, calcium mobilization, and CD11b upregulation in U937 cells as well as in freshly isolated human neutrophils. CCX168 retains high potency when present in human blood. A transgenic human C5aR knock-in mouse model allowed comparison of the in vitro and in vivo efficacy of the molecule. CCX168 effectively blocked migration in in vitro and ex vivo chemotaxis assays, and it blocked the C5a-mediated neutrophil vascular endothelial margination. CCX168 was effective in migration and neutrophil margination assays in cynomolgus monkeys. This thorough in vitro and preclinical characterization enabled progression of CCX168 into the clinic and testing of its safety, tolerability, pharmacokinetic, and pharmacodynamic profiles in a Phase 1 clinical trial in 48 healthy volunteers. CCX168 was shown to be well tolerated across a broad dose range (1 to 100 mg) and it showed dose-dependent pharmacokinetics. An oral dose of 30 mg CCX168 given twice daily blocked the C5a-induced upregulation of CD11b in circulating neutrophils by 94% or greater throughout the entire day, demonstrating essentially complete target coverage. This dose regimen is being tested in clinical trials in patients with anti-neutrophil cytoplasmic antibody-associated vasculitis. Trial Registration ISRCTN registry with trial ID ISRCTN13564773. Public Library of Science 2016-10-21 /pmc/articles/PMC5074546/ /pubmed/27768695 http://dx.doi.org/10.1371/journal.pone.0164646 Text en © 2016 Bekker et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Bekker, Pirow
Dairaghi, Daniel
Seitz, Lisa
Leleti, Manmohan
Wang, Yu
Ertl, Linda
Baumgart, Trageen
Shugarts, Sarah
Lohr, Lisa
Dang, Ton
Miao, Shichang
Zeng, Yibin
Fan, Pingchen
Zhang, Penglie
Johnson, Daniel
Powers, Jay
Jaen, Juan
Charo, Israel
Schall, Thomas J.
Characterization of Pharmacologic and Pharmacokinetic Properties of CCX168, a Potent and Selective Orally Administered Complement 5a Receptor Inhibitor, Based on Preclinical Evaluation and Randomized Phase 1 Clinical Study
title Characterization of Pharmacologic and Pharmacokinetic Properties of CCX168, a Potent and Selective Orally Administered Complement 5a Receptor Inhibitor, Based on Preclinical Evaluation and Randomized Phase 1 Clinical Study
title_full Characterization of Pharmacologic and Pharmacokinetic Properties of CCX168, a Potent and Selective Orally Administered Complement 5a Receptor Inhibitor, Based on Preclinical Evaluation and Randomized Phase 1 Clinical Study
title_fullStr Characterization of Pharmacologic and Pharmacokinetic Properties of CCX168, a Potent and Selective Orally Administered Complement 5a Receptor Inhibitor, Based on Preclinical Evaluation and Randomized Phase 1 Clinical Study
title_full_unstemmed Characterization of Pharmacologic and Pharmacokinetic Properties of CCX168, a Potent and Selective Orally Administered Complement 5a Receptor Inhibitor, Based on Preclinical Evaluation and Randomized Phase 1 Clinical Study
title_short Characterization of Pharmacologic and Pharmacokinetic Properties of CCX168, a Potent and Selective Orally Administered Complement 5a Receptor Inhibitor, Based on Preclinical Evaluation and Randomized Phase 1 Clinical Study
title_sort characterization of pharmacologic and pharmacokinetic properties of ccx168, a potent and selective orally administered complement 5a receptor inhibitor, based on preclinical evaluation and randomized phase 1 clinical study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5074546/
https://www.ncbi.nlm.nih.gov/pubmed/27768695
http://dx.doi.org/10.1371/journal.pone.0164646
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