Tsai Tsung-Hua, Jee Shiou-Hwa, Dong Chen-Yuan, Lin Sung-Jan
Department of Dermatology, Far Eastern Memorial Hospital and General Education Center, Oriental Institute of Technology, Taipei, Taiwan.
J Dermatol Sci. 2009 Oct;56(1):1-8. doi: 10.1016/j.jdermsci.2009.06.008. Epub 2009 Aug 21.
A minimally invasive imaging modality that provides both cellular and extracellular structural information with subcellular resolution is helpful for clinical diagnosis as well as basic laboratory research in dermatology. Multiphoton microscopy (MPM), using femtosecond laser as the light source, is efficient in non-linear excitation of endogenous fluorophores and induction of second harmonic generation signals from non-centrosymmetric biomolecules such as collagen. This imaging modality is minimally invasive in the sense that much of the traditional histological procedures can be bypassed en route to obtain morphological and structural information of high scattering skin tissues. This unique feature has allowed clinical dermatological diagnosis, both ex vivo and in vivo. In addition to discussing the basic principles of multiphoton microscopy, this review is aimed at emphasizing its specific applications to dermatological imaging, including characterizing stratum corneum structures, visualizing and quantifying transcutaneous drug delivery, detecting skin cancers, exploring collagen structural transitions, and monitoring laser-skin interactions.
一种能够以亚细胞分辨率提供细胞和细胞外结构信息的微创成像方式,有助于皮肤病学的临床诊断以及基础实验室研究。多光子显微镜(MPM)以飞秒激光作为光源,在内源性荧光团的非线性激发以及从诸如胶原蛋白等非中心对称生物分子诱导二次谐波产生信号方面效率很高。这种成像方式具有微创性,因为在获取高散射皮肤组织的形态和结构信息的过程中,可以绕过许多传统的组织学程序。这一独特特性已使得其能够用于离体和活体的临床皮肤病诊断。除了讨论多光子显微镜的基本原理外,本综述旨在强调其在皮肤病学成像中的具体应用,包括表征角质层结构、可视化和量化经皮给药、检测皮肤癌、探索胶原蛋白结构转变以及监测激光与皮肤的相互作用。