Enhancement of optical skin clearing efficacy using a microneedle roller

Light scattering in biological tissues can be reduced by using optical clearing agents. Various physical methods in conjunction with agents have been studied to enhance the optical clearing efficacy of skin for diagnostic and therapeutic applications. In this study, we propose a new physical method...

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Veröffentlicht in:Journal of Biomedical Optics 2008-03, Vol.13 (2), p.021103-021105
Hauptverfasser: Yoon, Jinhee, Son, Taeyoon, Choi, Eung-ho, Choi, Bernard, Nelson, J. Stuart, Jung, Byungjo
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Sprache:eng
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Zusammenfassung:Light scattering in biological tissues can be reduced by using optical clearing agents. Various physical methods in conjunction with agents have been studied to enhance the optical clearing efficacy of skin for diagnostic and therapeutic applications. In this study, we propose a new physical method to enhance the optical clearing potential of topically applied glycerol. A microneedle roller is used to easily create numerous transdermal microchannels prior to glycerol application. The optical clearing efficacy of skin is quantitatively evaluated with the use of a modulation transfer function target placed underneath porcine skin samples. From cross-polarized images acquired at various time points after glycerol application, we find that samples treated with the microneedle roller resulted in an approximately two-fold increase in contrast compared to control samples after glycerol application. In conclusion, our data suggest that the microneedle roller can be a good physical method to enhance transdermal delivery of optical clearing agents, and hence their optical clearing potential over large regions of skin.
ISSN:1083-3668
1560-2281
DOI:10.1117/1.2907483