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微晶诱导关节炎中的新兴纳米疗法。

Emergent nanotherapies in microcrystal-induced arthritis.

机构信息

Laboratorio de Líquido Sinovial, Instituto Nacional de Rehabilitación "Luis Guillermo Ibarra-Ibarra (INR-LGII), Calz. México-Xochimilco No. 289, Col. Arenal de Guadalupe, Delegación Tlalpan, C.P. 14389 Ciudad de México, Mexico.

Laboratorio de Líquido Sinovial, Instituto Nacional de Rehabilitación "Luis Guillermo Ibarra-Ibarra (INR-LGII), Calz. México-Xochimilco No. 289, Col. Arenal de Guadalupe, Delegación Tlalpan, C.P. 14389 Ciudad de México, Mexico.

出版信息

Int Immunopharmacol. 2018 Aug;61:197-203. doi: 10.1016/j.intimp.2018.06.007. Epub 2018 Jun 8.

Abstract

The anti-inflammatory and immunomodulatory effects of nanoparticles in several chronic diseases have been extensively researched. The aim of this review is to examine how nanoparticles modulate the inflammatory pathways that characterize the most prevalent forms of microcrystal-induced arthritis, including gout, pseudogout, and BCP-induced arthritis. The nanoparticles of chitosan-coated calcium phosphate, uricase, aceclofenac, and gold have been investigated in crystal-inducedarthritis. The most important results of the studies outlined in this review show that nanoparticles can inhibit the expression and the release of some pro-inflammatory mediators and proteolytic enzymes, and the activity of different transcriptional factors in vitro, as well as decrease the uric acid levels in several studies of in vitro and in vivo models of gout, which show interesting results in terms of decreasing the amount of crystals and tissue damage, respectively. In view of their multiple beneficial effects, nanoparticles can be considered a valuable therapy that contributes to the pharmacological treatment in crystalinduced arthritis.

摘要

纳米粒子在几种慢性疾病中的抗炎和免疫调节作用已经得到了广泛的研究。本综述的目的是研究纳米粒子如何调节炎症途径,这些炎症途径是最常见的微晶诱导关节炎的特征,包括痛风、假性痛风和 BCP 诱导的关节炎。壳聚糖包覆的磷酸钙、尿酸酶、醋氯芬酸和金纳米粒子已被用于研究晶体诱导的关节炎。本综述中概述的研究的最重要结果表明,纳米粒子可以抑制一些促炎介质和蛋白水解酶的表达和释放,以及不同转录因子的活性,在体外,以及降低尿酸水平在几项痛风的体外和体内模型研究中,分别显示出减少晶体和组织损伤的有趣结果。鉴于其多种有益作用,纳米粒子可以被认为是一种有价值的治疗方法,有助于微晶诱导关节炎的药物治疗。

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