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

delete2023-11-01
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OA
AI
L
Liangjiang Huang
S
Song Zhang
J
Jun Wu
B
Baojie Guo
T
Tingting Gao
S
Sayed Zulfiqar Ali Shah
B
Bo Huang
Y
Yajie Li
Z
Zhu Bo
J
Jiaqi Fan
L
Liu Wang
Y
Yani Xiao
W
Wenjing Liu
Z
Zhengyu Fang
Y
Yingying Lv
L
Lingfeng Xie
S
Sheng Yao
G
Gaotan Ke
X
Xiaolin Huang
Y
Ying Huang
Y
Yujuan Li
Y
Yi Jia
Z
Zhongwen Li
G
Guihai Feng
Y
Yan Huo
W
Wei Li
Q
Qi Zhou
J
Jie Hao *
B
Baoyang Hu *
H
Hong Chen *
DOI:10.1038/s41392-023-01670-7delete
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Abstract

Abstract

En 中文
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 × 107 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.
Keywords:
Stem-cell research
Translational research
Medicine/Public Health
general
Internal Medicine
Cancer Research
Cell Biology
Pathology
Oncology
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Journal

Signal Transduction and Targeted Therapy cover
Signal Transduction and Targeted Therapy
IF:
52.7
Papers:
1.2K
Citations:
5.1W

Organization

N
National Institutes for Food and Drug Control
Scholars:
490
Papers: 168
Citations: 1
B
Beijing Zephyrm Biotechnologies Co., Ltd.
Scholars:
2
Papers: 1
Citations: 0
C
Chinese Academy of Sciences
Scholars:
3.9W
Papers: 1.5W
Citations: 58.4W
H
huazhong university of science and technology
Scholars:
2.3W
Papers: 7.2K
Citations: 5
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