Intense Pulsed Light Attenuates UV-Induced Hyperimmune Response and Pigmentation in Human Skin Cells

The skin of an organism is affected by various environmental factors and fights against aging stress via mechanical and biochemical responses. Photoaging induced by ultraviolet B (UVB) irradiation is common and is the most vital factor in the senescence phenotype of skin, and so, suppression of UVB...

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Main Authors: Juewon Kim, Jeongin Lee, Hyunjung Choi
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:https://www.mdpi.com/1422-0067/22/6/3173
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spelling doaj-f27eeb3f723142a4b96cd7601d4a10122021-03-21T00:01:43ZengMDPI AGInternational Journal of Molecular Sciences1661-65961422-00672021-03-01223173317310.3390/ijms22063173Intense Pulsed Light Attenuates UV-Induced Hyperimmune Response and Pigmentation in Human Skin CellsJuewon Kim0Jeongin Lee1Hyunjung Choi2R&D Unit, Amorepacific Corporation, Yongin 17074, KoreaR&D Unit, Amorepacific Corporation, Yongin 17074, KoreaR&D Unit, Amorepacific Corporation, Yongin 17074, KoreaThe skin of an organism is affected by various environmental factors and fights against aging stress via mechanical and biochemical responses. Photoaging induced by ultraviolet B (UVB) irradiation is common and is the most vital factor in the senescence phenotype of skin, and so, suppression of UVB stress-induced damage is critical. To lessen the UVB-induced hyperimmune response and hyperpigmentation, we investigated the ameliorative effects of intense pulsed light (IPL) treatment on the photoaged phenotype of skin cells. Normal human epidermal keratinocytes and human epidermal melanocytes were exposed to 20 mJ/cm<sup>2</sup> of UVB. After UVB irradiation, the cells were treated with green (525–530 nm) and yellow (585–592 nm) IPL at various time points prior to the harvest step. Subsequently, various signs of excessive immune response, including expression of proinflammatory and melanogenic genes and proteins, cellular oxidative stress level, and antioxidative enzyme activity, were examined. We found that IPL treatment reduced excessive cutaneous immune reactions by suppressing UVB-induced proinflammatory cytokine expression. IPL treatment prevented hyperpigmentation, and combined treatment with green and yellow IPL synergistically attenuated both processes. IPL treatment may exert protective effects against UVB injury in skin cells by attenuating inflammatory cytokine and melanogenic gene overexpression, possibly by reducing intracellular oxidative stress. IPL treatment also preserves antioxidative enzyme activity under UVB irradiation. This study suggests that IPL treatment is a useful strategy against photoaging, and provides evidence supporting clinical approaches with non-invasive light therapy.https://www.mdpi.com/1422-0067/22/6/3173intense pulsed lightinflammationmelanogenesisoxidative stressantioxidative enzyme activityphotoaging
collection DOAJ
language English
format Article
sources DOAJ
author Juewon Kim
Jeongin Lee
Hyunjung Choi
spellingShingle Juewon Kim
Jeongin Lee
Hyunjung Choi
Intense Pulsed Light Attenuates UV-Induced Hyperimmune Response and Pigmentation in Human Skin Cells
International Journal of Molecular Sciences
intense pulsed light
inflammation
melanogenesis
oxidative stress
antioxidative enzyme activity
photoaging
author_facet Juewon Kim
Jeongin Lee
Hyunjung Choi
author_sort Juewon Kim
title Intense Pulsed Light Attenuates UV-Induced Hyperimmune Response and Pigmentation in Human Skin Cells
title_short Intense Pulsed Light Attenuates UV-Induced Hyperimmune Response and Pigmentation in Human Skin Cells
title_full Intense Pulsed Light Attenuates UV-Induced Hyperimmune Response and Pigmentation in Human Skin Cells
title_fullStr Intense Pulsed Light Attenuates UV-Induced Hyperimmune Response and Pigmentation in Human Skin Cells
title_full_unstemmed Intense Pulsed Light Attenuates UV-Induced Hyperimmune Response and Pigmentation in Human Skin Cells
title_sort intense pulsed light attenuates uv-induced hyperimmune response and pigmentation in human skin cells
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1661-6596
1422-0067
publishDate 2021-03-01
description The skin of an organism is affected by various environmental factors and fights against aging stress via mechanical and biochemical responses. Photoaging induced by ultraviolet B (UVB) irradiation is common and is the most vital factor in the senescence phenotype of skin, and so, suppression of UVB stress-induced damage is critical. To lessen the UVB-induced hyperimmune response and hyperpigmentation, we investigated the ameliorative effects of intense pulsed light (IPL) treatment on the photoaged phenotype of skin cells. Normal human epidermal keratinocytes and human epidermal melanocytes were exposed to 20 mJ/cm<sup>2</sup> of UVB. After UVB irradiation, the cells were treated with green (525–530 nm) and yellow (585–592 nm) IPL at various time points prior to the harvest step. Subsequently, various signs of excessive immune response, including expression of proinflammatory and melanogenic genes and proteins, cellular oxidative stress level, and antioxidative enzyme activity, were examined. We found that IPL treatment reduced excessive cutaneous immune reactions by suppressing UVB-induced proinflammatory cytokine expression. IPL treatment prevented hyperpigmentation, and combined treatment with green and yellow IPL synergistically attenuated both processes. IPL treatment may exert protective effects against UVB injury in skin cells by attenuating inflammatory cytokine and melanogenic gene overexpression, possibly by reducing intracellular oxidative stress. IPL treatment also preserves antioxidative enzyme activity under UVB irradiation. This study suggests that IPL treatment is a useful strategy against photoaging, and provides evidence supporting clinical approaches with non-invasive light therapy.
topic intense pulsed light
inflammation
melanogenesis
oxidative stress
antioxidative enzyme activity
photoaging
url https://www.mdpi.com/1422-0067/22/6/3173
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AT jeonginlee intensepulsedlightattenuatesuvinducedhyperimmuneresponseandpigmentationinhumanskincells
AT hyunjungchoi intensepulsedlightattenuatesuvinducedhyperimmuneresponseandpigmentationinhumanskincells
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