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Human Mesenchymal Stem Cell‐Derived Miniature Joint System for Disease Modeling and Drug Testing

Diseases of the knee joint such as osteoarthritis (OA) affect all joint elements. An in vitro human cell‐derived microphysiological system capable of simulating intraarticular tissue crosstalk is desirable for studying etiologies/pathogenesis of joint diseases and testing potential therapeutics. Her...

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Autores principales: Li, Zhong, Lin, Zixuan, Liu, Silvia, Yagi, Haruyo, Zhang, Xiurui, Yocum, Lauren, Romero‐Lopez, Monica, Rhee, Claire, Makarcyzk, Meagan J., Yu, Ilhan, Li, Eileen N., Fritch, Madalyn R., Gao, Qi, Goh, Kek Boon, O'Donnell, Benjamen, Hao, Tingjun, Alexander, Peter G., Mahadik, Bhushan, Fisher, John P., Goodman, Stuart B., Bunnell, Bruce A., Tuan, Rocky S., Lin, Hang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9313499/
https://www.ncbi.nlm.nih.gov/pubmed/35436042
http://dx.doi.org/10.1002/advs.202105909
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author Li, Zhong
Lin, Zixuan
Liu, Silvia
Yagi, Haruyo
Zhang, Xiurui
Yocum, Lauren
Romero‐Lopez, Monica
Rhee, Claire
Makarcyzk, Meagan J.
Yu, Ilhan
Li, Eileen N.
Fritch, Madalyn R.
Gao, Qi
Goh, Kek Boon
O'Donnell, Benjamen
Hao, Tingjun
Alexander, Peter G.
Mahadik, Bhushan
Fisher, John P.
Goodman, Stuart B.
Bunnell, Bruce A.
Tuan, Rocky S.
Lin, Hang
author_facet Li, Zhong
Lin, Zixuan
Liu, Silvia
Yagi, Haruyo
Zhang, Xiurui
Yocum, Lauren
Romero‐Lopez, Monica
Rhee, Claire
Makarcyzk, Meagan J.
Yu, Ilhan
Li, Eileen N.
Fritch, Madalyn R.
Gao, Qi
Goh, Kek Boon
O'Donnell, Benjamen
Hao, Tingjun
Alexander, Peter G.
Mahadik, Bhushan
Fisher, John P.
Goodman, Stuart B.
Bunnell, Bruce A.
Tuan, Rocky S.
Lin, Hang
author_sort Li, Zhong
collection PubMed
description Diseases of the knee joint such as osteoarthritis (OA) affect all joint elements. An in vitro human cell‐derived microphysiological system capable of simulating intraarticular tissue crosstalk is desirable for studying etiologies/pathogenesis of joint diseases and testing potential therapeutics. Herein, a human mesenchymal stem cell‐derived miniature joint system (miniJoint) is generated, in which engineered osteochondral complex, synovial‐like fibrous tissue, and adipose tissue are integrated into a microfluidics‐enabled bioreactor. This novel design facilitates different tissues communicating while still maintaining their respective phenotypes. The miniJoint exhibits physiologically relevant changes when exposed to interleukin‐1β mediated inflammation, which are similar to observations in joint diseases in humans. The potential of the miniJoint in predicting in vivo efficacy of drug treatment is confirmed by testing the “therapeutic effect” of the nonsteroidal anti‐inflammatory drug, naproxen, as well as four other potential disease‐modifying OA drugs. The data demonstrate that the miniJoint recapitulates complex tissue interactions, thus providing a robust organ chip model for the study of joint pathology and the development of novel therapeutic interventions.
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spelling pubmed-93134992022-07-27 Human Mesenchymal Stem Cell‐Derived Miniature Joint System for Disease Modeling and Drug Testing Li, Zhong Lin, Zixuan Liu, Silvia Yagi, Haruyo Zhang, Xiurui Yocum, Lauren Romero‐Lopez, Monica Rhee, Claire Makarcyzk, Meagan J. Yu, Ilhan Li, Eileen N. Fritch, Madalyn R. Gao, Qi Goh, Kek Boon O'Donnell, Benjamen Hao, Tingjun Alexander, Peter G. Mahadik, Bhushan Fisher, John P. Goodman, Stuart B. Bunnell, Bruce A. Tuan, Rocky S. Lin, Hang Adv Sci (Weinh) Research Articles Diseases of the knee joint such as osteoarthritis (OA) affect all joint elements. An in vitro human cell‐derived microphysiological system capable of simulating intraarticular tissue crosstalk is desirable for studying etiologies/pathogenesis of joint diseases and testing potential therapeutics. Herein, a human mesenchymal stem cell‐derived miniature joint system (miniJoint) is generated, in which engineered osteochondral complex, synovial‐like fibrous tissue, and adipose tissue are integrated into a microfluidics‐enabled bioreactor. This novel design facilitates different tissues communicating while still maintaining their respective phenotypes. The miniJoint exhibits physiologically relevant changes when exposed to interleukin‐1β mediated inflammation, which are similar to observations in joint diseases in humans. The potential of the miniJoint in predicting in vivo efficacy of drug treatment is confirmed by testing the “therapeutic effect” of the nonsteroidal anti‐inflammatory drug, naproxen, as well as four other potential disease‐modifying OA drugs. The data demonstrate that the miniJoint recapitulates complex tissue interactions, thus providing a robust organ chip model for the study of joint pathology and the development of novel therapeutic interventions. John Wiley and Sons Inc. 2022-04-18 /pmc/articles/PMC9313499/ /pubmed/35436042 http://dx.doi.org/10.1002/advs.202105909 Text en © 2022 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Li, Zhong
Lin, Zixuan
Liu, Silvia
Yagi, Haruyo
Zhang, Xiurui
Yocum, Lauren
Romero‐Lopez, Monica
Rhee, Claire
Makarcyzk, Meagan J.
Yu, Ilhan
Li, Eileen N.
Fritch, Madalyn R.
Gao, Qi
Goh, Kek Boon
O'Donnell, Benjamen
Hao, Tingjun
Alexander, Peter G.
Mahadik, Bhushan
Fisher, John P.
Goodman, Stuart B.
Bunnell, Bruce A.
Tuan, Rocky S.
Lin, Hang
Human Mesenchymal Stem Cell‐Derived Miniature Joint System for Disease Modeling and Drug Testing
title Human Mesenchymal Stem Cell‐Derived Miniature Joint System for Disease Modeling and Drug Testing
title_full Human Mesenchymal Stem Cell‐Derived Miniature Joint System for Disease Modeling and Drug Testing
title_fullStr Human Mesenchymal Stem Cell‐Derived Miniature Joint System for Disease Modeling and Drug Testing
title_full_unstemmed Human Mesenchymal Stem Cell‐Derived Miniature Joint System for Disease Modeling and Drug Testing
title_short Human Mesenchymal Stem Cell‐Derived Miniature Joint System for Disease Modeling and Drug Testing
title_sort human mesenchymal stem cell‐derived miniature joint system for disease modeling and drug testing
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9313499/
https://www.ncbi.nlm.nih.gov/pubmed/35436042
http://dx.doi.org/10.1002/advs.202105909
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