Non-invasive Oil-Based Method to Increase Topical Delivery of Nucleic Acids to Skin

Vij, Manika ; Alam, Shamshad ; Gupta, Nidhi ; Gotherwal, Vishvabandhu ; Gautam, Hemlata ; Ansari, Kausar M. ; Santhiya, Deenan ; Natarajan, Vivek T. ; Ganguli, Munia (2017) Non-invasive Oil-Based Method to Increase Topical Delivery of Nucleic Acids to Skin Molecular Therapy, 25 (6). pp. 1342-1352. ISSN 1525-0016

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Official URL: http://doi.org/10.1016/j.ymthe.2017.03.009

Related URL: http://dx.doi.org/10.1016/j.ymthe.2017.03.009

Abstract

Topical delivery of nucleic acids to skin has huge prospects in developing therapeutic interventions for cutaneous disorders. In spite of initial success, clinical translation is vastly impeded by the constraints of bioavailability as well as stability in metabolically active environment of skin. Various physical and chemical methods used to overcome these limitations involve invasive procedures or compounds that compromise skin integrity. Hence, there is an increasing demand for developing safe skin penetration enhancers for efficient nucleic acid delivery to skin. Here, we demonstrate that pretreatment of skin with silicone oil can increase the transfection efficiency of non-covalently associated peptide-plasmid DNA nanocomplexes in skin ex vivo and in vivo. The method does not compromise skin integrity, as indicated by microscopic evaluation of cellular differentiation, tissue architecture, enzyme activity assessment, dye penetration tests using Franz assay, and cytotoxicity and immunogenicity analyses. Stability of nanocomplexes is not hampered on pretreatment, thereby avoiding nuclease-mediated degradation. The mechanistic insights through Fourier transform infrared (FTIR) spectroscopy reveal some alterations in the skin hydration status owing to possible occlusion effects of the enhancer. Overall, we describe a topical, non-invasive, efficient, and safe method that can be used to increase the penetration and delivery of plasmid DNA to skin for possible therapeutic applications.

Item Type:Article
Source:Copyright of this article belongs to Nature Publishing Group.
ID Code:136626
Deposited On:24 Jun 2025 12:35
Last Modified:24 Jun 2025 12:35

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