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富血小板血浆在骨关节炎治疗中的生物学治疗。

A biological therapy to osteoarthritis treatment using platelet-rich plasma.

机构信息

Foundation Eduardo Anitua Biotechnology Institute, Jacinto Quincoces, 39, 01007 Vitoria (Álava), Spain.

出版信息

Expert Opin Biol Ther. 2013 Aug;13(8):1161-72. doi: 10.1517/14712598.2013.801450. Epub 2013 Jun 12.

Abstract

INTRODUCTION

Osteoarthritis (OA) is a degenerative disease affecting the synovial joint. It is caused by cells exposure to non-physiological stimuli, either mechanical or biochemical, and the loss of bone-cartilage homeostasis. Some of these changes, however, may be reversed by the use of single or combined growth factors, suggesting that the treatment of OA could be addressed using a pool of growth factors.

AREAS COVERED

This review addresses current molecular and biological knowledge and implicates the recapitulation of some developmental processes during endochondral ossification in OA aetiology and pathogenesis. Platelets act as carriers of endogenous morphogens that may modulate cell fate and therefore affect joint tissues structure and function. We shed light on the platelet-rich plasma effects on biological level that might drive the osteoarthritic joint's improvement both in structure and function.

EXPERT OPINION

We present the therapeutic potential of plasma rich in growth factors (PRGF-Endoret), an endogenous biological therapy that might modulate the gene expression of cells such as chondrocytes, synoviocytes, macrophages, and mesenchymal stem cells, and thereby influence an anabolic microenvironment of synovial joint which is conducive to maintaining the homeostatic state of the joint's tissues, and hence reduce pain and improve the joint motion.

摘要

简介

骨关节炎(OA)是一种影响滑膜关节的退行性疾病。它是由细胞暴露于生理刺激以外的机械或生化因素引起的,导致骨-软骨稳态失衡。然而,其中一些变化可能通过单一或联合生长因子的使用而逆转,这表明 OA 的治疗可以使用生长因子池来解决。

涵盖领域

本综述涉及当前的分子和生物学知识,并暗示在软骨内骨化过程中重演一些发育过程在 OA 的发病机制和发病机制中。血小板作为内源性形态发生素的载体,可能调节细胞命运,从而影响关节组织的结构和功能。我们阐明了富含血小板的血浆对生物学水平的影响,这可能会驱动骨关节炎关节在结构和功能两方面的改善。

专家意见

我们提出富含生长因子的血浆(PRGF-Endoret)的治疗潜力,这是一种内源性生物疗法,可能调节软骨细胞、滑膜细胞、巨噬细胞和间充质干细胞等细胞的基因表达,从而影响有利于维持关节组织稳态的滑膜关节的合成代谢微环境,从而减轻疼痛并改善关节运动。

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