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改善细胞疗法在恶劣的肌肉骨骼疾病环境中的存活和合成代谢。

Improving Cell Therapy Survival and Anabolism in Harsh Musculoskeletal Disease Environments.

机构信息

Department of Biomedical Engineering, University of Utah, Salt Lake City, Utah, USA.

DiscGenics, Salt Lake City, Utah, USA.

出版信息

Tissue Eng Part B Rev. 2020 Aug;26(4):348-366. doi: 10.1089/ten.TEB.2019.0324. Epub 2020 Jul 28.

Abstract

Cell therapies are an up and coming technology in orthopedic medicine that has the potential to provide regenerative treatments for musculoskeletal disease. Despite numerous cell therapies showing preclinical success for common musculoskeletal indications of disc degeneration and osteoarthritis, there have been mixed results when testing these therapies in humans during clinical trials. A theory behind the mixed success of these cell therapies is that the harsh microenvironments of the disc and knee they are entering inhibit their anabolism and survival. Therefore, there is much ongoing research looking into how to improve the survival and anabolism of cell therapies within these musculoskeletal disease environments. This includes research into improving cell function under specific microenvironmental conditions known to exist in the intervertebral disc (IVD) and knee environment such as hypoxia, low-nutrient conditions, hyperosmolarity, acidity, and inflammation. This research also includes improving differentiation of cells into desired native cell phenotypes to better enhance their survival and anabolism in the knee and IVD. This review highlights the effects of specific musculoskeletal microenvironmental challenges on cell therapies and what research is being done to overcome these challenges. Impact statement While there has been significant clinical interest in using cell therapies for musculoskeletal pathologies in the knee and intervertebral disc, cell therapy clinical trials have had mixed outcomes. The information presented in this review includes the environmental challenges (i.e., acidic pH, inflammation, hyperosmolarity, hypoxia, and low nutrition) that cell therapies experience in these pathological musculoskeletal environments. This review summarizes studies that describe various approaches to improving the therapeutic capability of cell therapies in these harsh environments. The result is an overview of what approaches can be targeted and/or combined to develop a more consistent cell therapy for musculoskeletal pathologies.

摘要

细胞疗法是骨科医学中一种新兴的技术,有可能为肌肉骨骼疾病提供再生治疗。尽管许多细胞疗法在椎间盘退变和骨关节炎等常见肌肉骨骼适应症的临床前研究中取得了成功,但在临床试验中对这些疗法进行测试时,结果却喜忧参半。这些细胞疗法成功与否的一个理论是,它们进入的椎间盘和膝关节恶劣的微环境抑制了它们的合成代谢和存活。因此,目前有大量研究致力于研究如何改善这些肌肉骨骼疾病环境中细胞疗法的存活和合成代谢。这包括研究如何在已知存在于椎间盘 (IVD) 和膝关节环境中的特定微环境条件下改善细胞功能,例如缺氧、低营养条件、高渗、酸度和炎症。这项研究还包括改善细胞向所需的天然细胞表型的分化,以更好地增强它们在膝关节和 IVD 中的存活和合成代谢。这篇综述强调了特定肌肉骨骼微环境挑战对细胞疗法的影响,以及正在进行哪些研究来克服这些挑战。

影响描述尽管临床上对使用细胞疗法治疗膝关节和椎间盘的肌肉骨骼病变有很大的兴趣,但细胞疗法的临床试验结果喜忧参半。本综述中介绍的信息包括细胞疗法在这些病理性肌肉骨骼环境中经历的环境挑战(即酸性 pH 值、炎症、高渗、缺氧和低营养)。该综述总结了描述各种方法来改善细胞疗法在这些恶劣环境中的治疗能力的研究。结果是对可以针对和/或结合哪些方法来开发更一致的用于治疗肌肉骨骼疾病的细胞疗法的概述。

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