Transplantation of Exosomes Derived From Human Wharton's Jelly Mesenchymal Stromal Cells Enhances Functional Improvement in Stroke Rats.

IF 3.2 4区 医学 Q3 CELL & TISSUE ENGINEERING Cell Transplantation Pub Date : 2024-01-01 DOI:10.1177/09636897241296366
Yu-Sung Chiu, Kuo-Jen Wu, Seong-Jin Yu, Kun-Lieh Wu, Chang-Yi Hsieh, Yu-Sheng Chou, Kuan-Yu Chen, Yu-Syuan Wang, Eun-Kyung Bae, Tsai-Wei Hung, Shih-Hsun Lin, Chih-Hsueh Lin, Shu-Ching Hsu, Yun Wang, Yun-Hsiang Chen
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Abstract

Cerebral ischemic stroke is a major cerebrovascular disease and the leading cause of adult disability. We and others previously demonstrated that transplantation of human Wharton's jelly mesenchymal stromal cells (WJ-MSCs) attenuated neuronal damage and promoted functional improvement in stroke animals. This study aimed to investigate the protective effects of human WJ-MSC exosome (Exo) transplant in cellular and rat models of cerebral stroke. Administration of Exo significantly antagonized glutamate-mediated neuronal loss and terminal deoxynucleotidyl transferase (TdT)-mediated dUTP-X nick end labeling (TUNEL) in rat primary cortical neuronal cultures. Adult male rats underwent a 60-min middle cerebral artery occlusion (MCAo); Exo or vehicle was injected through the tail vein 5-10 min after the MCAo. Two days later, the rats underwent a series of behavioral tests. Stroke rats receiving Exo developed a significant improvement in locomotor function and forelimb strength while reductions in body asymmetry and Bederson's neurological score. After the behavioral test, brain tissues were harvested for histological and quantitative real-time reverse transcription polymerase chain reaction (qRT-PCR) analyses. Animals receiving Exo had less infarction volume, measured by 2,3,5-triphenyl tetrazolium chloride (TTC) staining. Transplantation of Exo increased the expression of protective neurotrophic factors (BMP7, GDNF) and anti-apoptotic factors (Bcl2, Bcl-xL) in the ischemic brain. These findings suggest that early post-treatment with WJ-MSC Exo, given non-invasively through the vein, improved functional recovery and reduced brain damage in the stroke brain.

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人类华顿水母间充质间质细胞外泌体移植促进中风大鼠功能改善。
缺血性脑卒中是一种主要的脑血管疾病,是导致成人残疾的主要原因。我们和其他人之前已经证明,移植人类华顿氏水母间充质间质细胞(WJ-MSCs)可以减轻中风动物的神经元损伤并促进功能改善。本研究旨在探讨人WJ-MSC外泌体(Exo)移植对脑卒中细胞和大鼠模型的保护作用。Exo可显著拮抗谷氨酸介导的神经元丢失和末端脱氧核苷酸转移酶(TdT)介导的dUTP-X缺口末端标记(TUNEL)。成年雄性大鼠进行了60分钟的大脑中动脉闭塞(MCAo);MCAo后5 ~ 10 min经尾静脉注射Exo或vehicle。两天后,这些老鼠接受了一系列的行为测试。接受Exo治疗的中风大鼠运动功能和前肢力量显著改善,身体不对称性和Bederson神经学评分显著降低。行为测试结束后,采集脑组织进行组织学和定量实时反转录聚合酶链反应(qRT-PCR)分析。用2,3,5-三苯基四氯化氮(TTC)染色测定,接受Exo治疗的动物梗死体积较小。Exo的移植增加了缺血脑组织中保护性神经营养因子(BMP7、GDNF)和抗凋亡因子(Bcl2、Bcl-xL)的表达。这些发现表明,通过静脉无创给予WJ-MSC Exo治疗后早期,可改善中风脑的功能恢复并减少脑损伤。
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来源期刊
Cell Transplantation
Cell Transplantation 生物-细胞与组织工程
CiteScore
6.00
自引率
3.00%
发文量
97
审稿时长
6 months
期刊介绍: Cell Transplantation, The Regenerative Medicine Journal is an open access, peer reviewed journal that is published 12 times annually. Cell Transplantation is a multi-disciplinary forum for publication of articles on cell transplantation and its applications to human diseases. Articles focus on a myriad of topics including the physiological, medical, pre-clinical, tissue engineering, stem cell, and device-oriented aspects of the nervous, endocrine, cardiovascular, and endothelial systems, as well as genetically engineered cells. Cell Transplantation also reports on relevant technological advances, clinical studies, and regulatory considerations related to the implantation of cells into the body in order to provide complete coverage of the field.
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