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通过多光子显微镜在体内可视化激光与皮肤的相互作用。

Visualizing laser-skin interaction in vivo by multiphoton microscopy.

作者信息

Tsai Tsung-Hua, Jee Shiou-Hwa, Chan Jung-Yi, Lee Jin-Ning, Lee Woan-Ruoh, Dong Chen-Yuan, Lin Sung-Jan

机构信息

Far Eastern Memorial Hospital, Department of Dermatology, 21, Nan-Ya South Road, Section 2, Pan-Chiao, Taipei 220, Taiwan.

出版信息

J Biomed Opt. 2009 Mar-Apr;14(2):024034. doi: 10.1117/1.3116711.

Abstract

Recently, multiphoton microscopy has gained much popularity as a noninvasive imaging modality in biomedical research. We evaluate the potential of multiphoton microscopy for monitoring laser-skin reaction in vivo. Nude mouse skin is irradiated with an erbium:YAG laser at various fluences and immediately imaged by a multiphoton microscope. The alterations of cutaneous nonlinear optical properties including multiphoton autofluorescence and second-harmonic generation associated with laser irradiation are evaluated morphologically and quantitatively. Our results show that an erbium:YAG laser at a low fluence can selectively disrupt the stratum corneum, and this alteration may account for the penetration enhancing effect of laser-assisted transcutaneous drug delivery. At a higher fluence, the zone of tissue ablation as well as the disruption of the surrounding stratum corneum, keratinocytes, and dermal extracellular matrix can be better characterized by multiphoton microscopy as compared with conventional histology. Furthermore, the degree of collagen damage in the residual thermal zone can be quantified by second-harmonic generation signals, which have significant difference between control skin, skin irradiated with a 1.5-, 8-, and 16-J/cm2 erbium:YAG laser (P<0.05). We show that multiphoton microscopy can be a useful noninvasive imaging modality for monitoring laser-skin reaction in vivo.

摘要

近年来,多光子显微镜作为生物医学研究中的一种非侵入性成像方式而备受欢迎。我们评估了多光子显微镜在体内监测激光-皮肤反应的潜力。用不同能量密度的铒:钇铝石榴石激光照射裸鼠皮肤,并立即用多光子显微镜成像。从形态学和定量方面评估与激光照射相关的皮肤非线性光学特性的变化,包括多光子自发荧光和二次谐波产生。我们的结果表明,低能量密度的铒:钇铝石榴石激光可选择性地破坏角质层,这种变化可能解释了激光辅助经皮给药的渗透增强作用。与传统组织学相比,在较高能量密度下,多光子显微镜能更好地表征组织消融区域以及周围角质层、角质形成细胞和真皮细胞外基质的破坏情况。此外,残余热区中胶原蛋白的损伤程度可通过二次谐波产生信号进行量化,对照皮肤、用1.5、8和16 J/cm²铒:钇铝石榴石激光照射的皮肤之间存在显著差异(P<0.05)。我们表明,多光子显微镜可作为一种有用的非侵入性成像方式用于体内监测激光-皮肤反应。

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