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利用快速大面积多光子外照镜(FLAME)进行体内成像可捕获人体皮肤中黑色素分布的异质性。

In vivo imaging with a fast large-area multiphoton exoscope (FLAME) captures the melanin distribution heterogeneity in human skin.

机构信息

Beckman Laser Institute and Medical Clinic, University of California, Irvine, 1002 Health Sciences Rd., Irvine, CA, 92612, USA.

出版信息

Sci Rep. 2022 May 16;12(1):8106. doi: 10.1038/s41598-022-12317-y.

Abstract

Melanin plays a significant role in the regulation of epidermal homeostasis and photoprotection of human skin. The assessment of its epidermal distribution and overall content is of great interest due to its involvement in a wide range of physiological and pathological skin processes. Among several spectroscopic and optical imaging methods that have been reported for non-invasive quantification of melanin in human skin, the approach based on the detection of two-photon excited fluorescence lifetime distinguishes itself by enabling selective detection of melanin with sub-cellular resolution, thus facilitating its quantification while also resolving its depth-profile. A key limitation of prior studies on the melanin assessment based on this approach is their inability to account for the skin heterogeneity due to the reduced field of view of the images, which results in high dispersion of the measurement values. Pigmentation in both normal and pathological human skin is highly heterogeneous and its macroscopic quantification is critical for reliable measurements of the epidermal melanin distribution and for capturing melanin-related sensitive dynamic changes as a response to treatment. In this work, we employ a fast large-area multiphoton exoscope (FLAME), recently developed by our group for clinical skin imaging, that has the ability to evaluate the 3D distribution of epidermal melanin content in vivo macroscopically (millimeter scale) with microscopic resolution (sub-micron) and rapid acquisition rates (minutes). We demonstrate significant enhancement in the reliability of the melanin density and distribution measurements across Fitzpatrick skin types I to V by capturing the intra-subject pigmentation heterogeneity enabled by the large volumetric sampling. We also demonstrate the potential of this approach to provide consistent measurement results when imaging the same skin area at different times. These advances are critical for clinical and research applications related to monitoring pigment modulation as a response to therapies against pigmentary skin disorders, skin aging, as well as skin cancers.

摘要

黑色素在调节人类皮肤表皮稳态和光保护方面起着重要作用。由于其参与了广泛的生理和病理皮肤过程,因此评估其表皮分布和总体含量具有重要意义。在几种已报道的用于非侵入性量化人类皮肤中黑色素的光谱和光学成像方法中,基于双光子激发荧光寿命检测的方法通过实现对黑色素的亚细胞分辨率选择性检测而脱颖而出,从而能够对黑色素进行定量,同时解析其深度分布。基于这种方法的黑色素评估的先前研究的一个关键局限性是,由于图像的视场较小,无法考虑皮肤的异质性,这导致测量值的分散度很高。正常和病理性人类皮肤中的色素沉着高度不均匀,其宏观量化对于可靠测量表皮黑色素分布以及捕获黑色素相关的敏感动态变化(作为治疗的响应)至关重要。在这项工作中,我们使用了我们小组最近开发的用于临床皮肤成像的快速大面积多光子外显镜(FLAME),该外显镜具有以微观分辨率(亚微米)和快速采集速度(分钟级)宏观评估表皮黑色素含量 3D 分布的能力(毫米级)。我们通过捕获大体积采样所实现的个体内色素沉着异质性,证明了在 Fitzpatrick 皮肤类型 I 到 V 之间进行黑色素密度和分布测量的可靠性得到了显著提高。我们还展示了这种方法在不同时间对同一皮肤区域成像时提供一致测量结果的潜力。这些进展对于与监测治疗色素沉着障碍、皮肤衰老以及皮肤癌等疾病的治疗反应相关的临床和研究应用至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/820b/9110384/9dc9345f0c43/41598_2022_12317_Fig1_HTML.jpg

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