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可编程聚合物微针用于类风湿性关节炎的联合化疗和抗氧化治疗。

Programmable Polymeric Microneedles for Combined Chemotherapy and Antioxidative Treatment of Rheumatoid Arthritis.

机构信息

Marshall Laboratory of Biomedical Engineering Research Center for Biosensor and Nanotheranostic, School of Biomedical Engineering, Health Science Center, Shenzhen University, Guangdong 518060, P.R.China.

出版信息

ACS Appl Mater Interfaces. 2021 Nov 24;13(46):55559-55568. doi: 10.1021/acsami.1c17375. Epub 2021 Nov 16.

Abstract

Rheumatoid arthritis (RA) is a chronic inflammatory joint disease. Antioxidative treatment combined with chemotherapy holds great promise for RA treatment, and the ability to efficiently deliver drugs and antioxidants to the RA synovial joint is highly desired. Herein, we developed a programmable polymeric microneedle (MN) platform for transdermal delivery of methotrexate (MTX) and reactive oxygen species (ROS) scavengers for RA treatment. The biodegradable MNs made of polyvinylpyrrolidone (PVP) were incorporated with polydopamine/manganese dioxide (termed PDA@MnO) and MTX. After insertion into skin tissue, the MNs degraded, thus enabling release of loaded MTX and PDA@MnO. The PDA@MnO could be utilized as an MRI contrast agent in the RA synovial microenvironment. It also acted as a robust antioxidant to remove ROS and decrease RA inflammation, which when combined with the MTX-mediated chemotherapy led to an ideal outcome for RA treatments in a murine model. This work not only represents a valuable MN-assisted RA therapeutic agent transdermal delivery approach but also opens a new avenue for chemotherapy and antioxidative synergistic treatment of RA.

摘要

类风湿关节炎(RA)是一种慢性炎症性关节疾病。抗氧化治疗与化疗相结合,为 RA 的治疗带来了巨大的希望,而将药物和抗氧化剂有效递送至 RA 滑膜关节是非常需要的。在此,我们开发了一种可编程聚合物微针(MN)平台,用于经皮递送至 RA 治疗的甲氨蝶呤(MTX)和活性氧(ROS)清除剂。由聚乙烯吡咯烷酮(PVP)制成的可生物降解 MN 与聚多巴胺/二氧化锰(称为 PDA@MnO)和 MTX 结合。插入皮肤组织后,MN 降解,从而使负载的 MTX 和 PDA@MnO 释放。PDA@MnO 可在 RA 滑膜微环境中用作 MRI 造影剂。它还可以作为一种强大的抗氧化剂来清除 ROS 并降低 RA 炎症,当与 MTX 介导的化疗联合使用时,可为 RA 治疗的小鼠模型带来理想的效果。这项工作不仅代表了一种有价值的 MN 辅助 RA 治疗剂经皮递药方法,还为 RA 的化疗和抗氧化协同治疗开辟了新途径。

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