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用于生物医学研究的辐照装置的开发和特性研究,该装置涵盖了太阳光谱,并具有单独调节的光谱带。

Development and characterisation of an irradiation device for biomedical studies covering the solar spectrum with individual regulated spectral bands.

机构信息

Cell Biology and Epigenetics, Department of Biology, Technical University of Darmstadt, Schnittspahnstr. 10, 64287, Darmstadt, Germany.

Department of Chemistry, University of Warmia and Mazury in Olsztyn, Olsztyn, Poland.

出版信息

Photochem Photobiol Sci. 2022 Sep;21(9):1701-1717. doi: 10.1007/s43630-022-00252-w. Epub 2022 Jun 24.

Abstract

To understand the importance of terrestrial solar exposure on human skin, not only individual spectral components need to be considered in biomedical studies, but also the relevance of the combined action profile of the complete solar spectrum (cSS) must be established. We therefore developed a novel irradiation device that combines the emission of four individual lamps (UVB, UVA, VIS and nIR) to achieve exposure from 280 to 1400 nm with individual controllable lamps. The integrated irradiance of each spectral band is similar to the solar spectrum. The lamps can be utilised individually or in any desired combination. Here we present the design, realisation, and validation of this irradiation device as well as biological results on cellular metabolism (MTT assay), cell cycle alterations, and clonogenic growth in HaCaT cells after exposures to the individual spectral bands as well as their simultaneous combinations. Thereby, we demonstrate that UVB combined with UVA is the main determinant for the metabolic activity within cSS. Also, UVB-dependent effects dominate cell cycle regulation in cSS, whilst UVA and nIR have little influence. Lastly, also clonogenic growth is dominated by the UVB action profile in cSS, despite nIR showing modulatory activity when applied in combination with UVB. Together, this highlights the regulatory influence of the different spectral bands on the three biological endpoints and demonstrates their modulation when being part of the complete solar spectrum.

摘要

为了理解陆地太阳照射对人体皮肤的重要性,在生物医学研究中不仅需要考虑单个光谱成分,还必须确定整个太阳光谱(cSS)联合作用谱的相关性。因此,我们开发了一种新型的辐照装置,它结合了四个单独的灯(UVB、UVA、VIS 和 nIR)的发射,以实现从 280nm 到 1400nm 的照射,每个光谱带的辐照度都可以单独控制。每个光谱带的辐照度类似于太阳光谱。这些灯可以单独使用或任意组合使用。在这里,我们介绍了这种辐照装置的设计、实现和验证,以及 HaCaT 细胞的细胞代谢(MTT 分析)、细胞周期改变和克隆生长的生物学结果,这些结果是在暴露于单个光谱带及其同时组合后的结果。由此,我们证明了 UVB 与 UVA 的组合是 cSS 内代谢活性的主要决定因素。此外,UVB 依赖性效应在 cSS 中主导细胞周期调控,而 UVA 和 nIR 的影响较小。最后,cSS 中的克隆生长也主要由 UVB 作用谱决定,尽管 nIR 与 UVB 联合应用时具有调节作用。总之,这突出了不同光谱带对三个生物学终点的调节影响,并证明了它们在整个太阳光谱中的调制作用。

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