Transdermal Delivery of siRNA through Microneedle Array

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作者
Yan Deng
Jiao Chen
Yi Zhao
Xiaohui Yan
Li Zhang
Kwongwai Choy
Jun Hu
Himanshu J. Sant
Bruce K. Gale
Tao Tang
机构
[1] Faculty of Medicine,Department of Obstetrics & Gynaecology
[2] The Chinese University of Hong Kong,Department of Mechanical and Automation Engineering
[3] Shenzhen Research Institute,Departments of Bioengineering and Mechanical Engineering
[4] The Chinese University of Hong Kong,undefined
[5] The Chinese University of Hong Kong,undefined
[6] Peking University Shenzhen Hospital,undefined
[7] State of Utah Centre of Excellence for Biomedical Microfluidics,undefined
[8] University of Utah,undefined
[9] Chow Yuk Ho Technology Centre for Innovative Medicine,undefined
[10] The Chinese University of Hong Kong,undefined
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摘要
Successful development of siRNA therapies has significant potential for the treatment of skin conditions (alopecia, allergic skin diseases, hyperpigmentation, psoriasis, skin cancer, pachyonychia congenital) caused by aberrant gene expression. Although hypodermic needles can be used to effectively deliver siRNA through the stratum corneum, the major challenge is that this approach is painful and the effects are restricted to the injection site. Microneedle arrays may represent a better way to deliver siRNAs across the stratum corneum. In this study, we evaluated for the first time the ability of the solid silicon microneedle array for punching holes to deliver cholesterol-modified housekeeping gene (Gapdh) siRNA to the mouse ear skin. Treating the ear with microneedles showed permeation of siRNA in the skin and could reduce Gapdh gene expression up to 66% in the skin without accumulation in the major organs. The results showed that microneedle arrays could effectively deliver siRNA to relevant regions of the skin noninvasively.
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