Wang Hua, Fu Yangxue, Liu Pei, Qu Fei, Du Shuo, Li Yan, Du Hongyao, Zhang Lianbin, Tao Juan, Zhu Jintao
Key Laboratory of Material Chemistry for Energy Conversion and Storage (HUST), Ministry of Education, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology (HUST), Wuhan 430074, China.
Hubei Engineering Research Center of Skin Disease Theranostics and Health, Department of Dermatology, Union Hospital, Tongji Medical College, HUST, Wuhan 430022, China.
ACS Appl Mater Interfaces. 2023 Mar 29;15(12):15162-15171. doi: 10.1021/acsami.3c00058. Epub 2023 Mar 14.
Glucocorticoid-based creams are commonly used for treatments of psoriatic skin lesions while showing poor permeation because the thickened stratum corneum severely limits drug absorption. Although dissolving microneedle (DMN) patches have been employed in treating skin disease by virtue of their direct target to the lesion site, conventional DMN patches are generally fabricated from the water-soluble matrix, making them difficult to efficiently encapsulate hydrophobic glucocorticoids. Here, we develop a mechanically robust supramolecular DMN composed of hydroxypropyl β-cyclodextrin (HPCD) to effectively and uniformly load triamcinolone acetonide (TA). The TA-loaded HPCD DMN (TAMN) exhibits excellent mechanical performance that can easily pierce the thickened psoriasis lesions and deliver TA efficiently. Owing to the increased water solubility and bioavailability of TA after inclusion into HPCD, TAMN shows a superior in vitro inhibitory effect on immortalized human keratinocyte (HaCaT) cells. Importantly, the administration of TAMN twice a week effectively alleviates psoriatic signs and reduces the expression of Ki67, IL-23, and IL-17 in the ear lesions of imiquimod-induced psoriasis-like mice. This supramolecular DMN provides a promising strategy for the efficient treatment of psoriasis and other skin diseases, greatly broadens the applications of supramolecular materials in transdermal drug delivery, and widens the range of drugs in DMNs.
基于糖皮质激素的乳膏常用于治疗银屑病皮损,但由于角质层增厚严重限制药物吸收,其透皮性能较差。尽管溶蚀性微针(DMN)贴片因其直接作用于病变部位而被用于治疗皮肤病,但传统的DMN贴片通常由水溶性基质制成,难以有效包封疏水性糖皮质激素。在此,我们开发了一种由羟丙基-β-环糊精(HPCD)组成的机械坚固的超分子DMN,以有效且均匀地负载曲安奈德(TA)。负载TA的HPCD DMN(TAMN)表现出优异的机械性能,能够轻松穿透增厚的银屑病皮损并有效递送TA。由于TA包合入HPCD后水溶性和生物利用度增加,TAMN对永生化人角质形成细胞(HaCaT)显示出优异的体外抑制作用。重要的是,每周两次给予TAMN可有效减轻银屑病症状,并降低咪喹莫特诱导的银屑病样小鼠耳部皮损中Ki67、IL-23和IL-17的表达。这种超分子DMN为银屑病和其他皮肤病的有效治疗提供了一种有前景的策略,极大地拓宽了超分子材料在经皮给药中的应用,并扩大了DMN中药物的范围。