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多光子断层扫描和荧光寿命成像显微镜对缺血性坏死的离体皮肤细胞内 NAD(P)H 成像分析其代谢恶化。

Analysis of the metabolic deterioration of ex vivo skin from ischemic necrosis through the imaging of intracellular NAD(P)H by multiphoton tomography and fluorescence lifetime imaging microscopy.

机构信息

University of Queensland, Princess Alexandra Hospital, Therapeutics Research Centre, Brisbane, Queensland, Australia.

出版信息

J Biomed Opt. 2010 Jul-Aug;15(4):046008. doi: 10.1117/1.3466580.

Abstract

Ex vivo human skin has been used extensively for cosmeceutical and drug delivery studies, transplantable skin allografts, or skin flaps. However, it has a half-life of a few days due to ischemic necrosis. Traditional methods of assessing viability can be time-consuming and provide limited metabolic information. Using multiphoton tomography and fluorescence lifetime imaging (MPT-FLIM) we assess ischemic necrosis of ex vivo skin by NAD(P)H autofluorescence intensity and fluorescence lifetime. Ex vivo skin is stored in the presence and absence of nutrient media (Dulbecco Modified Eagle Medium) at -20, 4, and 37 degrees C and room temperature over a 7-day time course to establish different rates of metabolic deterioration. At higher temperatures we observe a decrease in NAD(P)H autofluorescence, higher image noise, and a significant increase in the average fluorescence lifetime (tau(m)) from approximately 1000 to 2000 ps. Additionally, significant distortions in NAD(P)H fluorescence lifetime histograms correspond to the reduction in autofluorescence. Skin kept at 4 degrees C, with or without media, showed the least change. Our findings suggest that MPT-FLIM enables useful noninvasive optical biopsies to monitor the metabolic state and deterioration of human skin for research and clinical purposes.

摘要

离体人类皮肤已广泛用于化妆品和药物输送研究、可移植的皮肤同种异体移植物或皮瓣。然而,由于缺血性坏死,其半衰期只有几天。传统的评估方法可能既耗时又提供有限的代谢信息。我们使用多光子断层扫描和荧光寿命成像(MPT-FLIM)通过 NAD(P)H 自发荧光强度和荧光寿命来评估离体皮肤的缺血性坏死。离体皮肤在存在和不存在营养介质(Dulbecco 改良 Eagle 培养基)的情况下在-20、4 和 37°C 和室温下储存 7 天,以建立不同的代谢恶化速率。在较高温度下,我们观察到 NAD(P)H 自发荧光减少、图像噪声增加以及平均荧光寿命(tau(m))从大约 1000 到 2000 ps 显著增加。此外,NAD(P)H 荧光寿命直方图的显著扭曲对应于自发荧光的减少。在 4°C 下保存的皮肤,无论是否有培养基,变化最小。我们的发现表明,MPT-FLIM 可用于对人类皮肤的代谢状态和恶化进行有用的非侵入性光学活检,以用于研究和临床目的。

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