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评估红细胞和血浆游离血红蛋白在用于肌肉骨骼再生医学治疗的自体生物制品中的病理生理效应的临床意义和前景。一篇综述。

Assessing clinical implications and perspectives of the pathophysiological effects of erythrocytes and plasma free hemoglobin in autologous biologics for use in musculoskeletal regenerative medicine therapies. A review.

作者信息

Everts Peter A, Malanga Gerard A, Paul Rowan V, Rothenberg Joshua B, Stephens Natalie, Mautner Kenneth R

机构信息

Gulf Coast Biologics, Scientific and Research Department, Fort Myers, FL, USA.

New Jersey Regenerative Institute LLC, Cedar Knolls, NJ, USA.

出版信息

Regen Ther. 2019 May 10;11:56-64. doi: 10.1016/j.reth.2019.03.009. eCollection 2019 Dec.

Abstract

Autologous biologics, defined as platelet-rich plasma (PRP) and bone marrow aspirate concentrate (BMC), are cell-based therapy treatment options in regenerative medicine practices, and have been increasingly used in orthopedics, sports medicine, and spinal disorders. These biological products are produced at point-of-care; thereby, avoiding expensive and cumbersome culturing and expansion techniques. Numerous commercial PRP and BMC systems are available but reports and knowledge of bio-cellular formulations produced by these systems are limited. This limited information hinders evaluating clinical and research outcomes and thus making conclusions about their biological effectiveness. Some of their important cellular and protein properties have not been characterized, which is critical for understanding the mechanisms of actions involved in tissue regenerative processes. The presence and role of red blood cells (RBCs) in any biologic has not been addressed extensively. Furthermore, some of the pathophysiological effects and phenomena related to RBCs have not been studied. A lack of a complete understanding of all of the biological components and their functional consequences hampers the development of clinical standards for any biological preparation. This paper aims to review the clinical implications and pathophysiological effects of RBCs in PRP and BMC; emphasizes hemolysis, eryptosis, and the release of macrophage inhibitory factor; and explains several effects on the microenvironment, such as inflammation, oxidative stress, vasoconstriction, and impaired cell metabolism.

摘要

自体生物制剂,定义为富血小板血浆(PRP)和骨髓抽吸浓缩物(BMC),是再生医学实践中基于细胞的治疗选择,并且已越来越多地用于骨科、运动医学和脊柱疾病。这些生物制品在医疗现场生产;因此,避免了昂贵且繁琐的培养和扩增技术。有许多商业PRP和BMC系统可供使用,但关于这些系统生产的生物细胞制剂的报告和知识有限。这种有限的信息阻碍了对临床和研究结果的评估,从而难以就其生物学有效性得出结论。它们的一些重要细胞和蛋白质特性尚未得到表征,这对于理解组织再生过程中涉及的作用机制至关重要。红细胞(RBC)在任何生物制剂中的存在和作用尚未得到广泛探讨。此外,一些与红细胞相关的病理生理效应和现象尚未得到研究。对所有生物成分及其功能后果缺乏全面了解,阻碍了任何生物制剂临床标准的制定。本文旨在综述红细胞在PRP和BMC中的临床意义和病理生理效应;强调溶血、红细胞凋亡和巨噬细胞抑制因子的释放;并解释对微环境的几种影响,如炎症、氧化应激、血管收缩和细胞代谢受损。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b822/6517793/22e37f2d07b5/gr1.jpg

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