改良的人间充质基质/干细胞可恢复大鼠局灶性缺血性中风后的皮质兴奋性。

IF 12.1 1区 医学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Molecular Therapy Pub Date : 2025-01-08 Epub Date: 2024-12-11 DOI:10.1016/j.ymthe.2024.12.006
Barbara Klein, Agnieszka Ciesielska, Patricia Morán Losada, Anna Sato, Sajita Shah-Morales, Jeremy B Ford, Bryan Higashikubo, Dale Tager, Alexander Urry, Juliane Bombosch, Wei-Cheng Chang, Yaisa Andrews-Zwilling, Bijan Nejadnik, Zuha Warraich, Jeanne T Paz
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引用次数: 0

摘要

同种异体修饰的骨髓间充质基质/干细胞(hMSC-SB623细胞)正在临床开发中,用于治疗创伤性脑损伤和缺血性脑卒中后的慢性运动缺陷。然而,它们的确切作用机制尚不清楚。在此,我们研究了这种细胞疗法对大鼠模型缺血性卒中后慢性期皮质网络兴奋性、脑组织和外周血的影响。局灶性皮质缺血性脑卒中1个月后,将hMSC-SB623细胞或载体液注入脑卒中周围皮层。治疗后一周开始,在体外评估皮质兴奋性。hMSC-SB623细胞移植可降低脑卒中引起的皮质兴奋性,使皮质兴奋性恢复到控制水平。脑组织组织学显示与神经再生、突触和细胞可塑性相关的因子增加。全血RNA测序和血清蛋白分析显示,皮质内hMSC-SB623细胞移植逆转了卒中对已知参与卒中病理生理的外周血因子的影响。我们的研究结果表明,皮层内移植的hMSC-SB623细胞即使在慢性阶段也能纠正中风引起的神经回路中断,这表明它在治疗神经网络高兴奋性疾病方面具有广泛的实用性。此外,移植细胞具有深远的免疫调节作用,其治疗效果仍有待探索。
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Modified human mesenchymal stromal/stem cells restore cortical excitability after focal ischemic stroke in rats.

Allogeneic modified bone marrow-derived human mesenchymal stromal/stem cells (hMSC-SB623 cells) are in clinical development for the treatment of chronic motor deficits after traumatic brain injury and cerebral ischemic stroke. However, their exact mechanisms of action remain unclear. Here, we investigated the effects of this cell therapy on cortical network excitability, brain tissue, and peripheral blood at a chronic stage after ischemic stroke in a rat model. One month after focal cortical ischemic stroke, hMSC-SB623 cells or the vehicle solution were injected into the peri-stroke cortex. Starting one week after treatment, cortical excitability was assessed ex vivo. hMSC-SB623 cell transplants reduced stroke-induced cortical hyperexcitability, restoring cortical excitability to control levels. The histology of brain tissue revealed an increase of factors relevant to neuroregeneration, and synaptic and cellular plasticity. Whole-blood RNA sequencing and serum protein analyses showed that intra-cortical hMSC-SB623 cell transplantation reversed effects of stroke on peripheral blood factors known to be involved in stroke pathophysiology. Our findings demonstrate that intra-cortical transplants of hMSC-SB623 cells correct stroke-induced circuit disruptions even at the chronic stage, suggesting broad usefulness as a therapeutic for neurological conditions with network hyperexcitability. Additionally, the transplanted cells exert far-reaching immunomodulatory effects whose therapeutic impact remains to be explored.

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来源期刊
Molecular Therapy
Molecular Therapy 医学-生物工程与应用微生物
CiteScore
19.20
自引率
3.20%
发文量
357
审稿时长
3 months
期刊介绍: Molecular Therapy is the leading journal for research in gene transfer, vector development, stem cell manipulation, and therapeutic interventions. It covers a broad spectrum of topics including genetic and acquired disease correction, vaccine development, pre-clinical validation, safety/efficacy studies, and clinical trials. With a focus on advancing genetics, medicine, and biotechnology, Molecular Therapy publishes peer-reviewed research, reviews, and commentaries to showcase the latest advancements in the field. With an impressive impact factor of 12.4 in 2022, it continues to attract top-tier contributions.
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