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使用尖端可膨胀微针阵列贴片高效负载和持续递送甲氨蝶呤用于银屑病治疗。

Efficient Loading and Sustained Delivery of Methotrexate Using a Tip-Swellable Microneedle Array Patch for Psoriasis Treatment.

作者信息

Zhao Puxuan, Li Zhiming, Ling Zhixin, Zheng Yanting, Chang Hao

机构信息

College of Materials Science and Engineering, Zhejiang University of Technology, Zhejiang, Hangzhou 310014, China.

Hangzhou Institute of Medicine, Chinese Academy of Sciences, Zhejiang, Hangzhou 310022, China.

出版信息

ACS Biomater Sci Eng. 2024 Feb 12;10(2):921-931. doi: 10.1021/acsbiomaterials.3c01810. Epub 2024 Jan 30.

Abstract

Methotrexate (MTX), a primary treatment for moderate to severe psoriasis, is limited in clinical use due to suboptimal results and severe side effects from subcutaneous (SC) injection and oral administration. Microneedles offer a promising alternative for direct MTX delivery to targeted skin lesions, but issues such as drug wastage, dosage inaccuracy, and limited drug residence time in the lesions remain. This study introduces a tip-swellable microneedle array patch (TSMAP) using photo-cross-linked methacrylated hyaluronic acid (MeHA) and biocompatible resin for effective MTX loading and sustained delivery. A two-cast micromolding with vacuum drying is employed to concentrate cross-linked MeHA in about 30% of the needle's height at the tip, thereby ensuring that only the TSMAP tip swells. Efficient MTX loading into TSMAP tips is achieved through a 30 s drug solution immersion and 10 min drying, potentially minimizing drug waste from incomplete skin insertion due to skin elasticity. The MTX-loaded TSMAP effectively penetrates both porcine and psoriasis-like mouse skin with its tips detaching from the resin substrate and embedding deeply into the skin tissue, thereby functioning as a drug release reservoir. TSMAP significantly prolongs drug retention in skin compared with SC injection and dissolvable microneedles. The in vivo study demonstrates that TSMAP-mediated MTX delivery substantially enhances therapeutic outcomes in alleviating psoriasis symptoms and downregulating psoriasis-associated cytokines, outperforming oral administration, SC injection, and dissolvable microneedles. Thus, TSMAP could offer an efficient and user-friendly alternative for drug administration in the treatment of various skin diseases.

摘要

甲氨蝶呤(MTX)是治疗中度至重度银屑病的主要药物,但由于皮下注射和口服给药效果欠佳且副作用严重,其临床应用受到限制。微针为将MTX直接递送至靶向皮肤病变提供了一种有前景的替代方法,但仍存在药物浪费、剂量不准确以及药物在病变部位停留时间有限等问题。本研究介绍了一种尖端可膨胀微针阵列贴片(TSMAP),它使用光交联甲基丙烯酸化透明质酸(MeHA)和生物相容性树脂来有效负载MTX并实现持续递送。采用两步浇铸微成型结合真空干燥的方法,使交联的MeHA在针尖约30%的针高位置浓缩,从而确保只有TSMAP的尖端会膨胀。通过将药物溶液浸泡30秒并干燥10分钟,可实现MTX高效负载到TSMAP尖端,这可能会将因皮肤弹性导致皮肤插入不完全而产生的药物浪费降至最低。负载MTX的TSMAP能够有效穿透猪皮和银屑病样小鼠皮肤,其尖端从树脂基底分离并深深嵌入皮肤组织,从而起到药物释放储库的作用。与皮下注射和可溶解微针相比,TSMAP显著延长了药物在皮肤中的保留时间。体内研究表明,TSMAP介导的MTX递送在减轻银屑病症状和下调银屑病相关细胞因子方面显著增强了治疗效果,优于口服给药、皮下注射和可溶解微针。因此,TSMAP可为治疗各种皮肤疾病的药物给药提供一种高效且用户友好的替代方法。

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