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颈动脉体和细胞治疗。

Carotid Body and Cell Therapy.

机构信息

Department of Anatomy and Histology, Faculty of Medicine, Medical University of Sofia, Sofia, Bulgaria.

Institute of Neurobiology, Bulgarian Academy of Sciences, Sofia, Bulgaria.

出版信息

Adv Anat Embryol Cell Biol. 2023;237:155-159. doi: 10.1007/978-3-031-44757-0_10.

Abstract

During the past decade, the carotid body (CB) has been considered an innovative therapeutic target for the treatment of certain cardiorespiratory and metabolic diseases most of which are sympathetically mediated. It has recently been revealed that CB stem cells provide new target sites for the development of promising cell-based therapies. Specifically, generation of CB progenitors in vitro which can differentiate into functionally active glomus cells may be a useful procedure to produce the cell mass required for replacement cell therapy. Due to their dopaminergic nature, adult glomus cells can be used for an intrastriatal grafting in neurodegenerative brain disorders including Parkinson's disease. The beneficial effect of throphic factors such as glial cell-derived neurotrophic factor synergistically released by the transplanted cells then enables the transplant to survive. Likewise, intracerebral administration of CB cell aggregates or dispersed cells has been tested for the treatment of an experimental model of stroke. The systematic clinical applicability of CB autotransplants following glomectomy in humans is under investigation. In such autotransplantation studies, cell aggregates from unilaterally resected CB might be used as autografts. In addition, stem cells could offer an opportunity for tissue expansion and might settle the issue of small number of glomus cells available for transplantation.

摘要

在过去的十年中,颈动脉体(CB)已被认为是治疗大多数交感神经介导的心肺和代谢疾病的创新治疗靶标。最近发现,CB 干细胞为有前途的基于细胞的治疗方法的发展提供了新的靶标部位。具体而言,体外生成可分化为功能活跃的球细胞的 CB 祖细胞可能是产生替代细胞治疗所需细胞质量的有用程序。由于其多巴胺能性质,成年球细胞可用于包括帕金森病在内的神经退行性脑疾病的纹状体移植。移植细胞协同释放的神经营养因子(如胶质细胞衍生的神经营养因子)的有益作用使移植能够存活。同样,已经测试了 CB 细胞聚集体或分散细胞的脑内给药在实验性中风模型中的治疗效果。人类行颈动脉体切除术的 CB 自体移植的系统临床适用性正在研究中。在这种自体移植研究中,可将从单侧切除的 CB 获得的细胞聚集体用作自体移植物。此外,干细胞为组织扩张提供了机会,并可能解决可用于移植的球细胞数量少的问题。

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