Innovative finding of 266-nm laser regulating CD90 levels in SDSCs

Abstract We used light to irradiate skin-derived stem cells and tried to find any cellular protein alterations 24 h after illumination. A 266-nm laser with four intensities was used, and of the nine cell markers that were surveyed in our trials, only CD90 was downregulated at an intensity of 20 μJ f...

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Main Authors: Ray-Ling Hsiao, Yen-Chung Chen, Mei-Yue Huang, Chiang-Yun Chen, Yu-Wei Lin, Chung-Yi Wu
Format: Article
Language:English
Published: Nature Portfolio 2021-07-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-93508-x
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author Ray-Ling Hsiao
Yen-Chung Chen
Mei-Yue Huang
Chiang-Yun Chen
Yu-Wei Lin
Chung-Yi Wu
author_facet Ray-Ling Hsiao
Yen-Chung Chen
Mei-Yue Huang
Chiang-Yun Chen
Yu-Wei Lin
Chung-Yi Wu
author_sort Ray-Ling Hsiao
collection DOAJ
description Abstract We used light to irradiate skin-derived stem cells and tried to find any cellular protein alterations 24 h after illumination. A 266-nm laser with four intensities was used, and of the nine cell markers that were surveyed in our trials, only CD90 was downregulated at an intensity of 20 μJ for 10 s. Repeated illuminations from the 266-nm laser at seven intensities revealed that CD90 expression was downregulated 14.6–28.8%, depending on light intensity. The maximal effect was noted at an intensity of 30 μJ for 2 s. This innovative finding reveals that a 266-nm laser can regulate protein expression in skin-derivative stem cells.
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spelling doaj.art-d43eb05cf88d49dd8a6615fdfa84a4622022-12-21T23:10:42ZengNature PortfolioScientific Reports2045-23222021-07-011111710.1038/s41598-021-93508-xInnovative finding of 266-nm laser regulating CD90 levels in SDSCsRay-Ling Hsiao0Yen-Chung Chen1Mei-Yue Huang2Chiang-Yun Chen3Yu-Wei Lin4Chung-Yi Wu5Ph.D. Program for Cancer Biology and Drug Discovery, China Medical University and Academia SinicaMaria Von Med-Biotechnology Co., LtdMaria Von Med-Biotechnology Co., LtdGenomics Research Center, Academia SinicaGenomics Research Center, Academia SinicaGenomics Research Center, Academia SinicaAbstract We used light to irradiate skin-derived stem cells and tried to find any cellular protein alterations 24 h after illumination. A 266-nm laser with four intensities was used, and of the nine cell markers that were surveyed in our trials, only CD90 was downregulated at an intensity of 20 μJ for 10 s. Repeated illuminations from the 266-nm laser at seven intensities revealed that CD90 expression was downregulated 14.6–28.8%, depending on light intensity. The maximal effect was noted at an intensity of 30 μJ for 2 s. This innovative finding reveals that a 266-nm laser can regulate protein expression in skin-derivative stem cells.https://doi.org/10.1038/s41598-021-93508-x
spellingShingle Ray-Ling Hsiao
Yen-Chung Chen
Mei-Yue Huang
Chiang-Yun Chen
Yu-Wei Lin
Chung-Yi Wu
Innovative finding of 266-nm laser regulating CD90 levels in SDSCs
Scientific Reports
title Innovative finding of 266-nm laser regulating CD90 levels in SDSCs
title_full Innovative finding of 266-nm laser regulating CD90 levels in SDSCs
title_fullStr Innovative finding of 266-nm laser regulating CD90 levels in SDSCs
title_full_unstemmed Innovative finding of 266-nm laser regulating CD90 levels in SDSCs
title_short Innovative finding of 266-nm laser regulating CD90 levels in SDSCs
title_sort innovative finding of 266 nm laser regulating cd90 levels in sdscs
url https://doi.org/10.1038/s41598-021-93508-x
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