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Immunity-and-matrix-regulatory cells enhance cartilage regeneration for meniscus injuries: a phase I dose-escalation trial

Immunity-and-matrix-regulatory cells (IMRCs) derived from human embryonic stem cells have unique abilities in modulating immunity and regulating the extracellular matrix, which could be mass-produced with stable biological properties. Despite resemblance to mesenchymal stem cells (MSCs) in terms of...

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Autores principales: Huang, Liangjiang, Zhang, Song, Wu, Jun, Guo, Baojie, Gao, Tingting, Shah, Sayed Zulfiqar Ali, Huang, Bo, Li, Yajie, Zhu, Bo, Fan, Jiaqi, Wang, Liu, Xiao, Yani, Liu, Wenjing, Tian, Yao, Fang, Zhengyu, Lv, Yingying, Xie, Lingfeng, Yao, Sheng, Ke, Gaotan, Huang, Xiaolin, Huang, Ying, Li, Yujuan, Jia, Yi, Li, Zhongwen, Feng, Guihai, Huo, Yan, Li, Wei, Zhou, Qi, Hao, Jie, Hu, Baoyang, Chen, Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10618459/
https://www.ncbi.nlm.nih.gov/pubmed/37907503
http://dx.doi.org/10.1038/s41392-023-01670-7
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author Huang, Liangjiang
Zhang, Song
Wu, Jun
Guo, Baojie
Gao, Tingting
Shah, Sayed Zulfiqar Ali
Huang, Bo
Li, Yajie
Zhu, Bo
Fan, Jiaqi
Wang, Liu
Xiao, Yani
Liu, Wenjing
Tian, Yao
Fang, Zhengyu
Lv, Yingying
Xie, Lingfeng
Yao, Sheng
Ke, Gaotan
Huang, Xiaolin
Huang, Ying
Li, Yujuan
Jia, Yi
Li, Zhongwen
Feng, Guihai
Huo, Yan
Li, Wei
Zhou, Qi
Hao, Jie
Hu, Baoyang
Chen, Hong
author_facet Huang, Liangjiang
Zhang, Song
Wu, Jun
Guo, Baojie
Gao, Tingting
Shah, Sayed Zulfiqar Ali
Huang, Bo
Li, Yajie
Zhu, Bo
Fan, Jiaqi
Wang, Liu
Xiao, Yani
Liu, Wenjing
Tian, Yao
Fang, Zhengyu
Lv, Yingying
Xie, Lingfeng
Yao, Sheng
Ke, Gaotan
Huang, Xiaolin
Huang, Ying
Li, Yujuan
Jia, Yi
Li, Zhongwen
Feng, Guihai
Huo, Yan
Li, Wei
Zhou, Qi
Hao, Jie
Hu, Baoyang
Chen, Hong
author_sort Huang, Liangjiang
collection PubMed
description Immunity-and-matrix-regulatory cells (IMRCs) derived from human embryonic stem cells have unique abilities in modulating immunity and regulating the extracellular matrix, which could be mass-produced with stable biological properties. Despite resemblance to mesenchymal stem cells (MSCs) in terms of self-renew and tri-lineage differentiation, the ability of IMRCs to repair the meniscus and the underlying mechanism remains undetermined. Here, we showed that IMRCs demonstrated stronger immunomodulatory and pro-regenerative potential than umbilical cord MSCs when stimulated by synovial fluid from patients with meniscus injury. Following injection into the knees of rabbits with meniscal injury, IMRCs enhanced endogenous fibrocartilage regeneration. In the dose-escalating phase I clinical trial (NCT03839238) with eighteen patients recruited, we found that intra-articular IMRCs injection in patients was safe over 12 months post-grafting. Furthermore, the effective results of magnetic resonance imaging (MRI) of meniscus repair and knee functional scores suggested that 5 × 10(7) cells are optimal for meniscus injury treatment. In summary, we present the first report of a phase I clinical trial using IMRCs to treat meniscus injury. Our results demonstrated that intra-articular injection of IMRCs is a safe and effective therapy by providing a permissive niche for cartilage regeneration.
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spelling pubmed-106184592023-11-02 Immunity-and-matrix-regulatory cells enhance cartilage regeneration for meniscus injuries: a phase I dose-escalation trial Huang, Liangjiang Zhang, Song Wu, Jun Guo, Baojie Gao, Tingting Shah, Sayed Zulfiqar Ali Huang, Bo Li, Yajie Zhu, Bo Fan, Jiaqi Wang, Liu Xiao, Yani Liu, Wenjing Tian, Yao Fang, Zhengyu Lv, Yingying Xie, Lingfeng Yao, Sheng Ke, Gaotan Huang, Xiaolin Huang, Ying Li, Yujuan Jia, Yi Li, Zhongwen Feng, Guihai Huo, Yan Li, Wei Zhou, Qi Hao, Jie Hu, Baoyang Chen, Hong Signal Transduct Target Ther Article Immunity-and-matrix-regulatory cells (IMRCs) derived from human embryonic stem cells have unique abilities in modulating immunity and regulating the extracellular matrix, which could be mass-produced with stable biological properties. Despite resemblance to mesenchymal stem cells (MSCs) in terms of self-renew and tri-lineage differentiation, the ability of IMRCs to repair the meniscus and the underlying mechanism remains undetermined. Here, we showed that IMRCs demonstrated stronger immunomodulatory and pro-regenerative potential than umbilical cord MSCs when stimulated by synovial fluid from patients with meniscus injury. Following injection into the knees of rabbits with meniscal injury, IMRCs enhanced endogenous fibrocartilage regeneration. In the dose-escalating phase I clinical trial (NCT03839238) with eighteen patients recruited, we found that intra-articular IMRCs injection in patients was safe over 12 months post-grafting. Furthermore, the effective results of magnetic resonance imaging (MRI) of meniscus repair and knee functional scores suggested that 5 × 10(7) cells are optimal for meniscus injury treatment. In summary, we present the first report of a phase I clinical trial using IMRCs to treat meniscus injury. Our results demonstrated that intra-articular injection of IMRCs is a safe and effective therapy by providing a permissive niche for cartilage regeneration. Nature Publishing Group UK 2023-11-01 /pmc/articles/PMC10618459/ /pubmed/37907503 http://dx.doi.org/10.1038/s41392-023-01670-7 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/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 license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license 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 license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Huang, Liangjiang
Zhang, Song
Wu, Jun
Guo, Baojie
Gao, Tingting
Shah, Sayed Zulfiqar Ali
Huang, Bo
Li, Yajie
Zhu, Bo
Fan, Jiaqi
Wang, Liu
Xiao, Yani
Liu, Wenjing
Tian, Yao
Fang, Zhengyu
Lv, Yingying
Xie, Lingfeng
Yao, Sheng
Ke, Gaotan
Huang, Xiaolin
Huang, Ying
Li, Yujuan
Jia, Yi
Li, Zhongwen
Feng, Guihai
Huo, Yan
Li, Wei
Zhou, Qi
Hao, Jie
Hu, Baoyang
Chen, Hong
Immunity-and-matrix-regulatory cells enhance cartilage regeneration for meniscus injuries: a phase I dose-escalation trial
title Immunity-and-matrix-regulatory cells enhance cartilage regeneration for meniscus injuries: a phase I dose-escalation trial
title_full Immunity-and-matrix-regulatory cells enhance cartilage regeneration for meniscus injuries: a phase I dose-escalation trial
title_fullStr Immunity-and-matrix-regulatory cells enhance cartilage regeneration for meniscus injuries: a phase I dose-escalation trial
title_full_unstemmed Immunity-and-matrix-regulatory cells enhance cartilage regeneration for meniscus injuries: a phase I dose-escalation trial
title_short Immunity-and-matrix-regulatory cells enhance cartilage regeneration for meniscus injuries: a phase I dose-escalation trial
title_sort immunity-and-matrix-regulatory cells enhance cartilage regeneration for meniscus injuries: a phase i dose-escalation trial
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10618459/
https://www.ncbi.nlm.nih.gov/pubmed/37907503
http://dx.doi.org/10.1038/s41392-023-01670-7
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