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      인간 연골암세포주 HTB-94에서 Sulforaphane에 의한 PI-3K/AKT 경로를 통한 세포분화 조절 연구 = Sulforaphane Regulates Differentiation Via PI-3K/AKT Pathway in Human Chondrosarcoma Cell Line, HTB-94 Cells

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      https://www.riss.kr/link?id=A103886956

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      다국어 초록 (Multilingual Abstract)

      Sulforaphane (SFN) is an isothiocyanate derived from cruciferous vegetables such as broccoli, cauliflower, cabbage and kale. In previously study demonstrated that SFN regulated differentiation via disruption of actin cytoskeleton architecture in human chondrosarcoma, HTB-94 cells. In this study, we observed the molecular mechanism of SFN treatment on differentiation in human chondrosarcoma, HTB-94. We found that SFN increased the expression of type II collagen, SOX-9 and phosphorylation of AKT as determined by Western blot analysis. Also, SFN induced sulfated proteoglycan as determined by Alcian blue staining. Inhibition of PI-3K with LY294002 and Wortmannin decreased type II collagen expression. Also, Inhibition of AKT with MK2206 decreased type II collagen expression. However, activation of PI-3K with 740Y-P induced differentiation as determined by Western blot analysis and Alcian blue staining. These findings indicate that SFN regulates differentiation via PI-3K/AKT pathway in human chondrosarcoma, HTB-94 cells.
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      Sulforaphane (SFN) is an isothiocyanate derived from cruciferous vegetables such as broccoli, cauliflower, cabbage and kale. In previously study demonstrated that SFN regulated differentiation via disruption of actin cytoskeleton architecture in human...

      Sulforaphane (SFN) is an isothiocyanate derived from cruciferous vegetables such as broccoli, cauliflower, cabbage and kale. In previously study demonstrated that SFN regulated differentiation via disruption of actin cytoskeleton architecture in human chondrosarcoma, HTB-94 cells. In this study, we observed the molecular mechanism of SFN treatment on differentiation in human chondrosarcoma, HTB-94. We found that SFN increased the expression of type II collagen, SOX-9 and phosphorylation of AKT as determined by Western blot analysis. Also, SFN induced sulfated proteoglycan as determined by Alcian blue staining. Inhibition of PI-3K with LY294002 and Wortmannin decreased type II collagen expression. Also, Inhibition of AKT with MK2206 decreased type II collagen expression. However, activation of PI-3K with 740Y-P induced differentiation as determined by Western blot analysis and Alcian blue staining. These findings indicate that SFN regulates differentiation via PI-3K/AKT pathway in human chondrosarcoma, HTB-94 cells.

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      참고문헌 (Reference)

      1 van Oosterwijk JG, "Three new chondrosarcoma cell lines: one grade III conventional central chondrosarcoma and two dedifferentiated chondrosarcomas of bone" 12 : 1-10, 2012

      2 Xu Q, "The insulin-like growth factor-phosphatidylinositol 3-kinase-Akt signaling pathway regulates myogenin expression in normal myogenic cells but not in rhabdomyosarcoma- derived RD cells" 275 : 36750-36757, 2000

      3 Singh SV, "Sulforaphane-induced G2/M phase cell cycle arrest involves checkpoint kinase 2-mediated phosphorylation of cell division cycle 25C" 279 : 25813-25822, 2004

      4 Gamet-Payrastre L, "Sulforaphane, a naturally occurring isothiocyanate, induces cell cycle arrest and apoptosis in HT29 human colon cancer cells" 60 : 1426-1433, 2000

      5 Herman-Antosiewicz A, "Sulforaphane causes autophagy to inhibit release of cytochrome C and apoptosis in human prostate cancer cells" 66 : 5828-5835, 2006

      6 Bi W, "Sox9 is required for cartilage formation" 22 : 85-89, 1999

      7 Bell DM, "SOX9 directly regulates the type-II collagen gene" 16 : 174-178, 1997

      8 Lawlor MA, "Rotwein P. Insulin-like growth factor-mediated muscle cell survival : central roles for Akt and cyclin-dependent kinase inhibitor p21" 20 : 8983-8995, 2000

      9 Vandromme M, "Protein kinase B beta/Akt2 plays a specific role in muscle differentiation" 276 : 8173-8179, 2001

      10 Tang L, "Potent activation of mitochondria-mediated apoptosis and arrest in S and M phases of cancer cells by a broccoli sprout extract" 5 : 935-944, 2006

      1 van Oosterwijk JG, "Three new chondrosarcoma cell lines: one grade III conventional central chondrosarcoma and two dedifferentiated chondrosarcomas of bone" 12 : 1-10, 2012

      2 Xu Q, "The insulin-like growth factor-phosphatidylinositol 3-kinase-Akt signaling pathway regulates myogenin expression in normal myogenic cells but not in rhabdomyosarcoma- derived RD cells" 275 : 36750-36757, 2000

      3 Singh SV, "Sulforaphane-induced G2/M phase cell cycle arrest involves checkpoint kinase 2-mediated phosphorylation of cell division cycle 25C" 279 : 25813-25822, 2004

      4 Gamet-Payrastre L, "Sulforaphane, a naturally occurring isothiocyanate, induces cell cycle arrest and apoptosis in HT29 human colon cancer cells" 60 : 1426-1433, 2000

      5 Herman-Antosiewicz A, "Sulforaphane causes autophagy to inhibit release of cytochrome C and apoptosis in human prostate cancer cells" 66 : 5828-5835, 2006

      6 Bi W, "Sox9 is required for cartilage formation" 22 : 85-89, 1999

      7 Bell DM, "SOX9 directly regulates the type-II collagen gene" 16 : 174-178, 1997

      8 Lawlor MA, "Rotwein P. Insulin-like growth factor-mediated muscle cell survival : central roles for Akt and cyclin-dependent kinase inhibitor p21" 20 : 8983-8995, 2000

      9 Vandromme M, "Protein kinase B beta/Akt2 plays a specific role in muscle differentiation" 276 : 8173-8179, 2001

      10 Tang L, "Potent activation of mitochondria-mediated apoptosis and arrest in S and M phases of cancer cells by a broccoli sprout extract" 5 : 935-944, 2006

      11 Miyaji T, "Monoclonal antibody to parathyroid hormone-related protein induces differentiation and apoptosis of chondrosarcoma cells" 199 : 147-155, 2003

      12 Parnaud G, "Mechanism of sulforaphane-induced cell cycle arrest and apoptosis in human colon cancer cells" 48 : 198-206, 2004

      13 Park EH, "Integrity of the cortical actin ring is required for activation of the PI3K/Akt and p38 MAPK signaling pathways in redifferentiation of chondrocytes on chitosan" 32 : 1272-1278, 2008

      14 Brodowicz T, "Inhibition of proliferation and induction of apoptosis in soft tissue sarcoma cells by interferon-alpha and retinoids" 80 : 1350-1358, 1999

      15 Park SY, "Induction of apoptosis by isothiocyanate sulforaphane in human cervical carcinoma HeLa and hepatocarcinoma HepG2 cells through activation of caspase-3" 18 : 181-187, 2007

      16 Fimognari C, "In vitro antitumor activity of cyanidin-3-O-beta-glucopyranoside" 51 : 332-335, 2005

      17 Chorley BN, "Identification of novel NRF2-regulated genes by ChIP-Seq: influence on retinoid X receptor alpha" 40 : 7416-7429, 2012

      18 Chorley BN, "Identification of novel NRF2-regulated genes by ChIP-Seq: influence on retinoid X receptor alpha" 40 : 7416-7429, 2012

      19 Chen YJ, "Honokiol induces cell apoptosis in human chondrosarcoma cells through mitochondrial dysfunction and endoplasmic reticulum stress" 291 : 20-30, 2010

      20 Mundlos S, "Heritable diseases of the skeleton. Part I: Molecular insights into skeletal development-transcription factors and signaling pathways" 11 : 125-132, 1997

      21 Mi L, "Covalent binding to tubulin by isothiocyanates. A mechanism of cell growth arrest and apoptosis" 283 : 22136-22146, 2008

      22 Lawlor MA, "Coorinate control of muscle cell survival by distinct insulin-like growth factor activated signaling pathways" 151 : 1131-1140, 2000

      23 Myzak MC, "Chemoprotection by sulforaphane : keep one eye beyond Keap1" 233 : 208-218, 2006

      24 Chung FL, "Chemoprevention of colonic aberrant crypt foci in Fischer rats by sulforaphane and phenethyl isothiocyanate" 21 : 2287-2291, 2000

      25 Zhang Y, "Anticarcinogenic activities of sulforaphane and structurally related synthetic norbornyl isothiocyanates" 91 : 3147-3150, 1994

      26 Kulik G, "Akt-dependent and -independent survival signaling pathways utilized by insulin-like growth factor I" 18 : 6711-6718, 1998

      27 Fujio Y, "Activation of Akt2 Inhibits anoikis and apoptosis induced by myogenic differentiation" 8 : 1207-1212, 2001

      28 Lee WK, "Actin cytoskeleton Architecture regulates sulforaphane-induced differentiation in human chondrosarcoma, HTB-94 cells" 17 : 295-302, 2012

      29 Tang GQ, "(-)-Epigallocatechin-3-gallate induces apoptosis and suppresses proliferation by inhibiting the human Indian Hedgehog pathway in human chondrosarcoma cells" 136 : 1179-1185, 2010

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2022 평가예정 재인증평가 신청대상 (재인증)
      2019-01-01 평가 등재학술지 선정 (계속평가) KCI등재
      2018-12-01 평가 등재후보로 하락 (계속평가) KCI등재후보
      2015-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2013-10-14 학술지명변경 외국어명 : Cancer Prevention Research -> Journal of Cancer Prevention KCI등재
      2012-10-15 학회명변경 영문명 : Korean Association of Cancer Prevention -> Korean Society of Cancer Preveniton KCI등재
      2011-04-04 학술지명변경 외국어명 : Journal of Korean Association of Cancer Prevention -> Cancer Prevention Research KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2007-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2005-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.22 0.22 0.18
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.15 0.12 0.405 0.13
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