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Discovery of a new class of integrin antibodies for fibrosis

Lung fibrosis, or the scarring of the lung, is a devastating disease with huge unmet medical need. There are limited treatment options and its prognosis is worse than most types of cancer. We previously discovered that MK-0429 is an equipotent pan-inhibitor of αv integrins that reduces proteinuria a...

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Autores principales: Zhang, Ji, Wang, Tao, Saigal, Ashmita, Johnson, Josephine, Morrisson, Jennifer, Tabrizifard, Sahba, Hollingsworth, Scott A., Eddins, Michael J., Mao, Wenxian, O’Neill, Kim, Garcia-Calvo, Margarita, Carballo-Jane, Ester, Liu, DingGang, Ham, Taewon, Zhou, Qiong, Dong, Weifeng, Meng, Hsien-Wei, Hicks, Jacqueline, Cai, Tian-Quan, Akiyama, Taro, Pinto, Shirly, Cheng, Alan C., Greshock, Thomas, Marquis, John C., Ren, Zhao, Talukdar, Saswata, Shaheen, Hussam Hisham, Handa, Masahisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7822819/
https://www.ncbi.nlm.nih.gov/pubmed/33483531
http://dx.doi.org/10.1038/s41598-021-81253-0
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author Zhang, Ji
Wang, Tao
Saigal, Ashmita
Johnson, Josephine
Morrisson, Jennifer
Tabrizifard, Sahba
Hollingsworth, Scott A.
Eddins, Michael J.
Mao, Wenxian
O’Neill, Kim
Garcia-Calvo, Margarita
Carballo-Jane, Ester
Liu, DingGang
Ham, Taewon
Zhou, Qiong
Dong, Weifeng
Meng, Hsien-Wei
Hicks, Jacqueline
Cai, Tian-Quan
Akiyama, Taro
Pinto, Shirly
Cheng, Alan C.
Greshock, Thomas
Marquis, John C.
Ren, Zhao
Talukdar, Saswata
Shaheen, Hussam Hisham
Handa, Masahisa
author_facet Zhang, Ji
Wang, Tao
Saigal, Ashmita
Johnson, Josephine
Morrisson, Jennifer
Tabrizifard, Sahba
Hollingsworth, Scott A.
Eddins, Michael J.
Mao, Wenxian
O’Neill, Kim
Garcia-Calvo, Margarita
Carballo-Jane, Ester
Liu, DingGang
Ham, Taewon
Zhou, Qiong
Dong, Weifeng
Meng, Hsien-Wei
Hicks, Jacqueline
Cai, Tian-Quan
Akiyama, Taro
Pinto, Shirly
Cheng, Alan C.
Greshock, Thomas
Marquis, John C.
Ren, Zhao
Talukdar, Saswata
Shaheen, Hussam Hisham
Handa, Masahisa
author_sort Zhang, Ji
collection PubMed
description Lung fibrosis, or the scarring of the lung, is a devastating disease with huge unmet medical need. There are limited treatment options and its prognosis is worse than most types of cancer. We previously discovered that MK-0429 is an equipotent pan-inhibitor of αv integrins that reduces proteinuria and kidney fibrosis in a preclinical model. In the present study, we further demonstrated that MK-0429 significantly inhibits fibrosis progression in a bleomycin-induced lung injury model. In search of newer integrin inhibitors for fibrosis, we characterized monoclonal antibodies discovered using Adimab’s yeast display platform. We identified several potent neutralizing integrin antibodies with unique human and mouse cross-reactivity. Among these, Ab-31 blocked the binding of multiple αv integrins to their ligands with IC50s comparable to those of MK-0429. Furthermore, both MK-0429 and Ab-31 suppressed integrin-mediated cell adhesion and latent TGFβ activation. In IPF patient lung fibroblasts, TGFβ treatment induced profound αSMA expression in phenotypic imaging assays and Ab-31 demonstrated potent in vitro activity at inhibiting αSMA expression, suggesting that the integrin antibody is able to modulate TGFβ action though mechanisms beyond the inhibition of latent TGFβ activation. Together, our results highlight the potential to develop newer integrin therapeutics for the treatment of fibrotic lung diseases.
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spelling pubmed-78228192021-01-26 Discovery of a new class of integrin antibodies for fibrosis Zhang, Ji Wang, Tao Saigal, Ashmita Johnson, Josephine Morrisson, Jennifer Tabrizifard, Sahba Hollingsworth, Scott A. Eddins, Michael J. Mao, Wenxian O’Neill, Kim Garcia-Calvo, Margarita Carballo-Jane, Ester Liu, DingGang Ham, Taewon Zhou, Qiong Dong, Weifeng Meng, Hsien-Wei Hicks, Jacqueline Cai, Tian-Quan Akiyama, Taro Pinto, Shirly Cheng, Alan C. Greshock, Thomas Marquis, John C. Ren, Zhao Talukdar, Saswata Shaheen, Hussam Hisham Handa, Masahisa Sci Rep Article Lung fibrosis, or the scarring of the lung, is a devastating disease with huge unmet medical need. There are limited treatment options and its prognosis is worse than most types of cancer. We previously discovered that MK-0429 is an equipotent pan-inhibitor of αv integrins that reduces proteinuria and kidney fibrosis in a preclinical model. In the present study, we further demonstrated that MK-0429 significantly inhibits fibrosis progression in a bleomycin-induced lung injury model. In search of newer integrin inhibitors for fibrosis, we characterized monoclonal antibodies discovered using Adimab’s yeast display platform. We identified several potent neutralizing integrin antibodies with unique human and mouse cross-reactivity. Among these, Ab-31 blocked the binding of multiple αv integrins to their ligands with IC50s comparable to those of MK-0429. Furthermore, both MK-0429 and Ab-31 suppressed integrin-mediated cell adhesion and latent TGFβ activation. In IPF patient lung fibroblasts, TGFβ treatment induced profound αSMA expression in phenotypic imaging assays and Ab-31 demonstrated potent in vitro activity at inhibiting αSMA expression, suggesting that the integrin antibody is able to modulate TGFβ action though mechanisms beyond the inhibition of latent TGFβ activation. Together, our results highlight the potential to develop newer integrin therapeutics for the treatment of fibrotic lung diseases. Nature Publishing Group UK 2021-01-22 /pmc/articles/PMC7822819/ /pubmed/33483531 http://dx.doi.org/10.1038/s41598-021-81253-0 Text en © The Author(s) 2021 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Zhang, Ji
Wang, Tao
Saigal, Ashmita
Johnson, Josephine
Morrisson, Jennifer
Tabrizifard, Sahba
Hollingsworth, Scott A.
Eddins, Michael J.
Mao, Wenxian
O’Neill, Kim
Garcia-Calvo, Margarita
Carballo-Jane, Ester
Liu, DingGang
Ham, Taewon
Zhou, Qiong
Dong, Weifeng
Meng, Hsien-Wei
Hicks, Jacqueline
Cai, Tian-Quan
Akiyama, Taro
Pinto, Shirly
Cheng, Alan C.
Greshock, Thomas
Marquis, John C.
Ren, Zhao
Talukdar, Saswata
Shaheen, Hussam Hisham
Handa, Masahisa
Discovery of a new class of integrin antibodies for fibrosis
title Discovery of a new class of integrin antibodies for fibrosis
title_full Discovery of a new class of integrin antibodies for fibrosis
title_fullStr Discovery of a new class of integrin antibodies for fibrosis
title_full_unstemmed Discovery of a new class of integrin antibodies for fibrosis
title_short Discovery of a new class of integrin antibodies for fibrosis
title_sort discovery of a new class of integrin antibodies for fibrosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7822819/
https://www.ncbi.nlm.nih.gov/pubmed/33483531
http://dx.doi.org/10.1038/s41598-021-81253-0
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