Combining Microbubble Contrast Agent with Pulsed-Laser Irradiation for Transdermal Drug Delivery
Autor: | Wen Chuan Kuo, Hong Wei Gao, Bo Ya Chang, Chien Ping Chiang, Chih-Hung Wang, Ho-Chiao Chuang, Ai-Ho Liao |
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Rok vydání: | 2018 |
Předmět: |
0301 basic medicine
Pulsed laser animal structures Materials science lcsh:RS1-441 Pharmaceutical Science 02 engineering and technology Skin permeability Article law.invention lcsh:Pharmacy and materia medica 03 medical and health sciences cavitation law In vivo arbutin Transdermal business.industry ultrasound contrast agents Ultrasound Pulsed laser irradiation 021001 nanoscience & nanotechnology Laser laser 030104 developmental biology Skin penetration transdermal 0210 nano-technology business Biomedical engineering |
Zdroj: | Pharmaceutics Volume 10 Issue 4 Pharmaceutics, Vol 10, Iss 4, p 175 (2018) |
ISSN: | 1999-4923 |
DOI: | 10.3390/pharmaceutics10040175 |
Popis: | The optodynamic process of laser-induced microbubble (MB) cavitation in liquids is utilized in various medical applications. However, how incident laser radiation interacts with MBs as an ultrasound contrast agent is rarely estimated when the liquid already contains stable MBs. The present study investigated the efficacy of the laser-mediated cavitation of albumin-shelled MBs in enhancing transdermal drug delivery. Different types and conditions of laser-mediated inertial cavitation of MBs were first evaluated. A CO2 fractional pulsed laser was selected for combining with MBs in the in vitro and in vivo experiments. The in vitro skin penetration by &beta arbutin after 2 h was 2 times greater in the group combining a laser with MBs than in the control group. In small-animal experiments, the whitening effect on the skin of C57BL/6J mice in the group combining a laser with MBs on the skin plus penetrating &beta arbutin increased (significantly) by 48.0% at day 11 and 50.0% at day 14, and then tended to stabilize for the remainder of the 20-day experimental period. The present results indicate that combining a CO2 laser with albumin-shelled MBs can increase skin permeability so as to enhance the delivery of &beta arbutin to inhibit melanogenesis in mice without damaging the skin. |
Databáze: | OpenAIRE |
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