Suppr超能文献

利用细胞疗法修复/再生肌肉骨骼系统受损组织,创造最佳体内环境以提高治疗效果。

Creating an Optimal In Vivo Environment to Enhance Outcomes Using Cell Therapy to Repair/Regenerate Injured Tissues of the Musculoskeletal System.

作者信息

Hart David A, Nakamura Norimasa

机构信息

Department of Surgery, Faculty of Kinesiology, McCaig Institute for Bone & Joint Health, University of Calgary, Calgary, AB T2N 4N1, Canada.

Bone & Joint Health Strategic Clinical Network, Alberta Health Services, Edmonton, AB T5J 3E4, Canada.

出版信息

Biomedicines. 2022 Jul 1;10(7):1570. doi: 10.3390/biomedicines10071570.

Abstract

Following most injuries to a musculoskeletal tissue which function in unique mechanical environments, an inflammatory response occurs to facilitate endogenous repair. This is a process that usually yields functionally inferior scar tissue. In the case of such injuries occurring in adults, the injury environment no longer expresses the anabolic processes that contributed to growth and maturation. An injury can also contribute to the development of a degenerative process, such as osteoarthritis. Over the past several years, researchers have attempted to use cellular therapies to enhance the repair and regeneration of injured tissues, including Platelet-rich Plasma and mesenchymal stem/medicinal signaling cells (MSC) from a variety of tissue sources, either as free MSC or incorporated into tissue engineered constructs, to facilitate regeneration of such damaged tissues. The use of free MSC can sometimes affect pain symptoms associated with conditions such as OA, but regeneration of damaged tissues has been challenging, particularly as some of these tissues have very complex structures. Therefore, implanting MSC or engineered constructs into an inflammatory environment in an adult may compromise the potential of the cells to facilitate regeneration, and neutralizing the inflammatory environment and enhancing the anabolic environment may be required for MSC-based interventions to fulfill their potential. Thus, success may depend on first eliminating negative influences (e.g., inflammation) in an environment, and secondly, implanting optimally cultured MSC or tissue engineered constructs into an anabolic environment to achieve the best outcomes. Furthermore, such interventions should be considered early rather than later on in a disease process, at a time when sufficient endogenous cells remain to serve as a template for repair and regeneration. This review discusses how the interface between inflammation and cell-based regeneration of damaged tissues may be at odds, and outlines approaches to improve outcomes. In addition, other variables that could contribute to the success of cell therapies are discussed. Thus, there may be a need to adopt a Precision Medicine approach to optimize tissue repair and regeneration following injury to these important tissues.

摘要

在大多数发生于独特力学环境中起作用的肌肉骨骼组织的损伤后,会发生炎症反应以促进内源性修复。这是一个通常会产生功能较差的瘢痕组织的过程。在成年人发生此类损伤的情况下,损伤环境不再表达有助于生长和成熟的合成代谢过程。损伤还可能促成退行性过程的发展,如骨关节炎。在过去几年中,研究人员尝试使用细胞疗法来促进受损组织的修复和再生,包括来自多种组织来源的富血小板血浆和间充质干/药用信号细胞(MSC),它们既可以作为游离的MSC,也可以整合到组织工程构建体中,以促进此类受损组织的再生。使用游离的MSC有时会影响与骨关节炎等病症相关的疼痛症状,但受损组织的再生一直具有挑战性,尤其是因为其中一些组织具有非常复杂的结构。因此,在成年人中将MSC或工程构建体植入炎症环境中可能会损害细胞促进再生的潜力,基于MSC的干预措施要发挥其潜力可能需要中和炎症环境并增强合成代谢环境。因此,成功可能取决于首先消除环境中的负面影响(如炎症),其次,将最佳培养的MSC或组织工程构建体植入合成代谢环境中以实现最佳结果。此外,此类干预措施应在疾病过程的早期而非晚期考虑,此时仍有足够的内源性细胞作为修复和再生的模板。本综述讨论了炎症与受损组织的基于细胞的再生之间的界面可能如何不一致,并概述了改善结果的方法。此外,还讨论了可能有助于细胞疗法成功的其他变量。因此,可能需要采用精准医学方法来优化这些重要组织损伤后的组织修复和再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a21f/9313221/3b9ad615df4e/biomedicines-10-01570-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验