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Needleless administration of advanced therapies into the skin via the appendages using a hypobaric patch

Authors :
Faiza Benaouda
Ricardo Inacio
Chui Hua Lim
Haeeun Park
Thomas Pitcher
Mohamed A. Alhnan
Mazen M. S. Aly
Khuloud T Al-Jamal
Ka-lung Chan
Rikhav P. Gala
Daniel Sebastia-Saez
Liang Cui
Tao Chen
Julie Keeble
Stuart A. Jones
Source :
Benaouda, F, Inacio, R, Lim, C H, Park, H, Pitcher, T, Alhnan, M A, Aly, M M S, Al-jamal, K T, Chan, K-L, Gala, R P, Sebastia-saez, D, Cui, L, Chen, T, Keeble, J & Jones, S A 2022, ' Needleless administration of advanced therapies into the skin via the appendages using a hypobaric patch ', Proceedings of the National Academy of Sciences of the United States of America, vol. 119, no. 18, e2120340119, pp. e2120340119 . https://doi.org/10.1073/pnas.2120340119
Publication Year :
2022
Publisher :
Proceedings of the National Academy of Sciences, 2022.

Abstract

Advanced therapies are commonly administered via injection even when they act within the skin tissue, and this increases the chances of off-target effects. Here we report the use of a skin patch containing a hypobaric chamber that induces skin dome formation to enable needleless delivery of advanced therapies directly into porcine, rat, and mouse skin. Finite element method modeling showed that the hypobaric chamber in the patch opened the skin appendages by 32%, thinned the skin, and compressed the appendage wall epithelia. These changes allowed direct delivery of an H1N1 vaccine antigen and a diclofenac nanotherapeutic into the skin. Fluorescence imaging and infrared mapping of the skin showed needleless delivery via the appendages. The in vivo utility of the patch was demonstrated by a superior immunoglobulin G response to the vaccine antigen in mice compared to intramuscular injection and a 70% reduction in rat paw swelling in vivo over 5 h with diclofenac without skin histology changes.

Details

ISSN :
10916490 and 00278424
Volume :
119
Database :
OpenAIRE
Journal :
Proceedings of the National Academy of Sciences
Accession number :
edsair.doi.dedup.....09bd6b09883111ab2b3260bb8cfd3304