振动光谱学用于良性、癌前和恶性皮肤肿瘤的分子表征和诊断。

Natalja Skrebova Eikje, Katsuo Aizawa, Yukihiro Ozaki
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引用次数: 73

摘要

了解皮肤癌变过程中发生的分子、细胞和组织变化是皮肤病学癌症研究的核心。该领域的转化方面——从实验室发现发展皮肤病学的临床应用——旨在改善皮肤癌的临床诊断、监测和治疗。振动光谱学,包括红外(IR)和拉曼光谱,将有助于实现这些目标,因为它已被证明在表征和区分肿瘤和发育不良组织与正常组织方面具有潜力。皮肤肿瘤的临床鉴别诊断通常是困难的,皮肤活检的组织病理学分析仍然是诊断确认的标准。我们回顾并更新了有关该主题的文献,证明皮肤组织的红外和拉曼光谱为许多皮肤肿瘤提供了有效和有用的诊断信息。我们还对皮肤病学中引入的红外和拉曼光谱取样方法进行了调查,并进一步描述了皮肤癌的显微、宏观和纤维诊断之间的差异。虽然还处于早期阶段,但我们仍然乐观地认为,振动光谱学有潜力被皮肤学界完全接受为一种具有足够灵敏度和特异性的快速筛选工具,用于非破坏性的体外、离体和体内分析。通过振动光谱进一步研究皮肤癌的分子特征将在皮肤病学中具有重要的研究和临床价值。
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Vibrational spectroscopy for molecular characterisation and diagnosis of benign, premalignant and malignant skin tumours.

Understanding the molecular, cellular and tissue changes that occur during skin carcinogenesis is central to cancer research in dermatology. The translational aspects of this field--the development of clinical applications in dermatology from the laboratory findings--aim at improving clinical diagnosis, monitoring and treatment of skin cancer. Vibrational spectroscopy, both infrared (IR) and Raman spectroscopy, would be helpful in achieving those goals, since it has been shown to have potential in characterising and discriminating tumour and dysplastic tissue from normal tissue. Clinically differential diagnosis of skin tumours is often difficult and a histopathologic analysis of skin biopsies remains the standard for diagnostic confirmation. We review and update the literature on the subject, demonstrating that the IR and Raman spectra of skin tissues provide valid and useful diagnostic information about a number of skin tumours. We also include a survey of introduced sampling methods for IR and Raman spectroscopy in dermatology, and additionally describe the differences between microscopic, macroscopic and fibreoptic diagnosis of skin cancer. Although in its early stages, we remain optimistic that vibrational spectroscopy has the potential to be fully accepted as a rapid screening tool with sufficient sensitivity and specificity for non-destructive in vitro, ex vivo and in vivo analyses by the dermatological community. Further progress toward molecular characterisation of skin cancer by vibrational spectroscopy would have important research and clinical benefits in dermatology.

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