This work describes the formulation and evaluation of dissolving microneedle patches (MNs) for intradermal delivery of heat-inactivated bacteria. Pseudomonas aeruginosa, strain PA01, was used as a model bacterium. Utilising a simple, cost effective fabrication process, P. aeruginosa was heat-inactivated and formulated into dissolving MNs, fabricated from aqueous blends of 20% w/w poly(methylvinylether/maleic acid). The resultant MNs were of sufficient mechanical strength to consistently penetrate a validated skin model Parafilm M®, inserting to a depth of between 254 and 381â¯Âµm. MNs were successfully inserted into murine skin and partially dissolved. Analysis of MN dissolution kinetics in murine ears via optical coherence tomography showed almost complete MN dissolution 5â¯min post-insertion. Mice were vaccinated using these optimised MNs by application of one MN to the dorsal surface of each ear (5â¯min). Mice were subsequently challenged intranasally (24â¯h) with a live culture of P. aeruginosa (2â¯Ãâ¯10(6) colony forming units). Bacterial load in the lungs of mice vaccinated with P. aeruginosa MNs was significantly (pâ¯=â¯0.0059) lower than those of their unvaccinated counterparts. This proof of concept work demonstrates the potential of dissolving MNs for intradermal vaccination with heat-inactivated bacteria. MNs may be a cost effective, potentially viable delivery system, which could easily be implemented in developing countries, allowing a rapid and simplified approach to vaccinating against a specific pathogen.
Design and characterisation of a dissolving microneedle patch for intradermal vaccination with heat-inactivated bacteria: A proof of concept study.
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作者:Rodgers Aoife M, McCrudden MaelÃosa T C, Vincente-Perez Eva M, Dubois Alice V, Ingram Rebecca J, Larrañeta Eneko, Kissenpfennig Adrien, Donnelly Ryan F
| 期刊: | International Journal of Pharmaceutics | 影响因子: | 5.200 |
| 时间: | 2018 | 起止号: | 2018 Oct 5; 549(1-2):87-95 |
| doi: | 10.1016/j.ijpharm.2018.07.049 | ||
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