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红外线辐射加剧紫外线引起的皮肤损伤

Intensification of ultraviolet-induced dermal damage by infrared radiation.

作者信息

Kligman L H

出版信息

Arch Dermatol Res. 1982;272(3-4):229-38. doi: 10.1007/BF00509050.

Abstract

Abnormal dermal deposition of elastic fibers is the earliest and most striking effect of prolonged sun exposure (solar elastosis). The hyperplastic fibers are usually ascribed to ultraviolet (UV) rays. Nonetheless, other portions of the solar spectrum may play contributing roles. Heat, for example, enhances experimental UV tumorigenesis. Heat induces erythema ab igne in which the structural alterations resemble those of actinically damaged skin, including the development of premaligant and malignant lesions. In regions of high insulation, infrared radiation (IR) is a constant companion of UV. To assess the role of IR in actinic damage to the dermis, albino guinea pigs were irradiated for 45 weeks with UV-B and UV-A, with and without IR. Control animals received IR only or no irradiation at all. Unirradiated dermis contains small amounts of elastic fibers in the upper dermis with greater depositions around follicles and sebaceous glands. After irradiation with UV, the fibers became more numerous, thicker, and more twisted; IR alone produced many fine, feathery fibers. The addition of IR to UV resulted in dense matlike elastic fiber depositions that exceeded what was observed with either irradiation alone. In combination or alone UV and IR radiation produced a large increase in ground substance, a finding also seen in actinically damaged human skin. Infrared radiation, in the physiologic range, though pleasant is not innocuous.

摘要

弹性纤维在真皮中的异常沉积是长期日晒(日光性弹力纤维变性)最早且最显著的影响。增生的纤维通常归因于紫外线(UV)。然而,太阳光谱的其他部分可能也起了作用。例如,热会增强实验性紫外线致癌作用。热会诱发火激红斑,其结构改变类似于光化性损伤皮肤的改变,包括癌前病变和恶性病变的发展。在高度隔热的区域,红外线辐射(IR)是紫外线的常伴因素。为了评估红外线辐射在光化性真皮损伤中的作用,对白化豚鼠进行了45周的紫外线B和紫外线A照射,分别有或没有红外线辐射。对照动物仅接受红外线辐射或根本不接受照射。未受照射的真皮在上层真皮中含有少量弹性纤维,在毛囊和皮脂腺周围沉积较多。紫外线照射后,纤维变得更多、更粗且更扭曲;单独的红外线辐射产生许多细小、羽毛状的纤维。紫外线与红外线辐射共同作用导致密集的毡状弹性纤维沉积,超过了单独任何一种辐射所观察到的情况。紫外线和红外线辐射单独或共同作用都会使基质大量增加,这一发现也见于光化性损伤的人类皮肤。在生理范围内,红外线辐射虽然宜人,但并非无害。

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