Wang Qin, Qin Xianyan, Fang Jiyu, Sun Xun
Key Laboratory of Advanced Technologies of Materials, Ministry of Education and School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu 610031, China.
Advanced Materials Processing and Analysis Center and Department of Materials Science and Engineering, University of Central Florida, Orlando, FL 32816, USA.
Acta Pharm Sin B. 2021 May;11(5):1158-1174. doi: 10.1016/j.apsb.2021.03.013. Epub 2021 Mar 12.
Increasing understanding of the pathogenesis of rheumatoid arthritis (RA) has remarkably promoted the development of effective therapeutic regimens of RA. Nevertheless, the inadequate response to current therapies in a proportion of patients, the systemic toxicity accompanied by long-term administration or distribution in non-targeted sites and the comprised efficacy caused by undesirable bioavailability, are still unsettled problems lying across the full remission of RA. So far, these existing limitations have inspired comprehensive academic researches on nanomedicines for RA treatment. A variety of versatile nanocarriers with controllable physicochemical properties, tailorable drug release pattern or active targeting ability were fabricated to enhance the drug delivery efficiency in RA treatment. This review aims to provide an up-to-date progress regarding to RA treatment using nanomedicines in the last 5 years and concisely discuss the potential application of several newly emerged therapeutic strategies such as inducing the antigen-specific tolerance, pro-resolving therapy or regulating the immunometabolism for RA treatments.
对类风湿关节炎(RA)发病机制的深入了解显著推动了RA有效治疗方案的发展。然而,一部分患者对当前疗法反应不足、长期给药伴随的全身毒性或在非靶向部位的分布以及不理想的生物利用度导致疗效受损,仍是阻碍RA完全缓解的未解决问题。迄今为止,这些现有局限性激发了关于用于RA治疗的纳米药物的全面学术研究。人们制备了各种具有可控物理化学性质、可定制药物释放模式或主动靶向能力的多功能纳米载体,以提高RA治疗中的药物递送效率。本综述旨在提供过去5年中使用纳米药物治疗RA的最新进展,并简要讨论几种新出现的治疗策略,如诱导抗原特异性耐受、促消退疗法或调节免疫代谢在RA治疗中的潜在应用。