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      인진호 추출물의 건선 유발 각질세포에서 항염 효과 = Anti-inflammatory Effect of Artemisiae Capillaris Herba Extracts in Psoriasis-induced Keratinocytes

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      https://www.riss.kr/link?id=A108917562

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      다국어 초록 (Multilingual Abstract)

      In the current study, we examined the effects of Artemisiae Capillaris Herba extracts (ACH) on the anti- inflammatory efficacy in keratinocytes. HaCaT keratinocytes were stimulated with M5 (mixture of IL-17A, IL-22, IL-1α, oncostatin M, and TNF-α) for development of a psoriatic keratinocyte model in vitro. Stimulation with M5 resulted in significantly upregulated levels of TNF-α, IL-1β, CCL-20, and CXCL-8. However, upregulation of these inflammatory cytokines and chemokines was attenuated by treatment with ACH. In addition, phosphorylation of MAPKs, JAK1/2 and STAT1/3 was inhibited by ACH in psoriatic keratinocytes. These findings suggest the potential for future use of ACH as a natural cosmetic material.
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      In the current study, we examined the effects of Artemisiae Capillaris Herba extracts (ACH) on the anti- inflammatory efficacy in keratinocytes. HaCaT keratinocytes were stimulated with M5 (mixture of IL-17A, IL-22, IL-1α, oncostatin M, and TNF-α) f...

      In the current study, we examined the effects of Artemisiae Capillaris Herba extracts (ACH) on the anti- inflammatory efficacy in keratinocytes. HaCaT keratinocytes were stimulated with M5 (mixture of IL-17A, IL-22, IL-1α, oncostatin M, and TNF-α) for development of a psoriatic keratinocyte model in vitro. Stimulation with M5 resulted in significantly upregulated levels of TNF-α, IL-1β, CCL-20, and CXCL-8. However, upregulation of these inflammatory cytokines and chemokines was attenuated by treatment with ACH. In addition, phosphorylation of MAPKs, JAK1/2 and STAT1/3 was inhibited by ACH in psoriatic keratinocytes. These findings suggest the potential for future use of ACH as a natural cosmetic material.

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      참고문헌 (Reference)

      1 Mavropoulos A, "The role of p38 MAPK in the aetiopathogenesis of psoriasis and psoriatic arthritis" 2013 : 569751-, 2013

      2 Singh R, "The cytokine mediated molecular pathophysiology of psoriasis and its clinical implications" 22 : 12793-, 2021

      3 Shang L, "TYK2 in immune responses and treatment of psoriasis" 15 : 5373-5385, 2022

      4 Wcisło-Dziadecka D, "TNF-α in a molecularly targeted therapy of psoriasis and psoriatic arthritis" 92 : 172-178, 2016

      5 Rozieres A, "TNF alpha in the physiopathology of psoriasis" 133 : 174-180, 2006

      6 Xu F, "Salidroside inhibits MAPK, NF-κB, and STAT3 pathways in psoriasis-associated oxidative stress via SIRT1 activation" 24 : 70-74, 2019

      7 Ampawong S, "SRNC05053-6-2)crude extract on psoriasis using in vitro and in vivo models" 10 : 17618-, 2020

      8 Furue K, "Psoriasis and the TNF/IL23/IL17 axis" 154 : 418-424, 2019

      9 Boehncke WH, "Psoriasis" 386 : 983-994, 2015

      10 Miot HA, "JAK-STAT pathway inhibitors in dermatology" 98 : 656-677, 2023

      1 Mavropoulos A, "The role of p38 MAPK in the aetiopathogenesis of psoriasis and psoriatic arthritis" 2013 : 569751-, 2013

      2 Singh R, "The cytokine mediated molecular pathophysiology of psoriasis and its clinical implications" 22 : 12793-, 2021

      3 Shang L, "TYK2 in immune responses and treatment of psoriasis" 15 : 5373-5385, 2022

      4 Wcisło-Dziadecka D, "TNF-α in a molecularly targeted therapy of psoriasis and psoriatic arthritis" 92 : 172-178, 2016

      5 Rozieres A, "TNF alpha in the physiopathology of psoriasis" 133 : 174-180, 2006

      6 Xu F, "Salidroside inhibits MAPK, NF-κB, and STAT3 pathways in psoriasis-associated oxidative stress via SIRT1 activation" 24 : 70-74, 2019

      7 Ampawong S, "SRNC05053-6-2)crude extract on psoriasis using in vitro and in vivo models" 10 : 17618-, 2020

      8 Furue K, "Psoriasis and the TNF/IL23/IL17 axis" 154 : 418-424, 2019

      9 Boehncke WH, "Psoriasis" 386 : 983-994, 2015

      10 Miot HA, "JAK-STAT pathway inhibitors in dermatology" 98 : 656-677, 2023

      11 Furue M, "Interleukin-17A and keratinocytes in psoriasis" 21 : 1275-, 2020

      12 Geng J, "Herba Artemisiae capillaris extract prevents the development of streptozotocin-induced diabetic nephropathy of rat" 2018 : 5180165-, 2018

      13 Lee HS, "Hepatoprotective effects of Artemisiae capillaris herba and Picrorrhiza rhizoma combinations on carbon tetrachloride-induced subacute liver damage in rats" 28 : 270-277, 2008

      14 Gao J, "Daphnetin inhibits proliferation and inflammatory response in human HaCaT keratinocytes and ameliorates imiquimod-induced psoriasis-like skin lesion in mice" 53 : 48-, 2020

      15 Abe S, "Citrus sudachi peel extract suppresses cell proliferation and promotes the differentiation of keratinocytes through inhibition of the EGFR-ERK signaling pathway" 10 : 1468-, 2020

      16 Singh TP, "Chemokine receptors in psoriasis" 17 : 1405-1422, 2013

      17 Ma Y, "Centipeda minima extract inhibits inflammation and cell proliferation by regulating JAK/STAT signaling in macrophages and keratinocytes" 28 : 1723-, 2023

      18 Sheu SJ, "Capillary electrophoretic determination of the constituents of Artemisiae Capillaris Herba" 911 : 285-293, 2001

      19 Meitei HT, "CCR6-CCL20 axis as a therapeutic target for autoimmune diseases" 20 : 102846-, 2021

      20 Koycheva IK, "Biotechnologically produced Lavandula angustifolia Mill. extract rich in rosmarinic acid resolves psoriasis-related inflammation through janus kinase/signal transducer and activator of transcription signaling" 12 : 680168-, 2021

      21 Lee SY, "Antiproliferation of keratinocytes and alleviation of psoriasis by the ethanol extract of Artemisia capillaris" 32 : 923-932, 2018

      22 Takuathung MN, "Anti-psoriatic and anti-inflammatory effects of Kaempferia parviflora in keratinocytes and macrophage cells" 143 : 112229-, 2021

      23 Chuo WH, "Alantolactone suppresses proliferation and the inflammatory response in human HaCaT keratinocytes and ameliorates imiquimod-induced skin lesions in a psoriasis-like mouse model" 11 : 616-, 2021

      24 Cai Y, "A critical role of the IL-1β-IL-1R signaling pathway in skin inflammation and psoriasis pathogenesis" 139 : 146-156, 2019

      25 Kang JK, "4-hydroxy-7-methoxycoumarin inhibits inflammation in LPS-activated RAW264.7 macrophages by suppressing NF-κB and MAPK activation" 25 : 4424-, 2020

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