박사

Protective Effect of epigallocatechin gallate (EGCG) : 폐 세포에서 휘발성 유기 화합물의 세포사멸에 대한 EGCG의 차단효과

오영준 2015년
논문상세정보
    • 저자 오영준
    • 기타서명 폐 세포에서 휘발성 유기 화합물의 세포사멸에 대한 EGCG의 차단효과
    • 형태사항 26 cm: 삽화: 77 p.
    • 일반주기 지도교수: 윤효인, 충남대학교 논문은 저작권에 의해 보호받습니다, 참고문헌: p. 67-74
    • 학위논문사항 2015. 8, 忠南大學校 大學院, 학위논문(박사)-, 수의학과 수의기능학 전공
    • DDC 636.089, 22
    • 발행지 대전
    • 언어 eng
    • 출판년 2015
    • 발행사항 忠南大學校 大學院
    유사주제 논문( 0)

' Protective Effect of epigallocatechin gallate (EGCG) : 폐 세포에서 휘발성 유기 화합물의 세포사멸에 대한 EGCG의 차단효과' 의 참고문헌

  • Zou H, Li Y, Liu X, and Wang X. An APAF-1.cytochrome cmultimeric complex is a functional apoptosome that activatesprocaspase-9. The Journal of Biological Chemistry. 1999, 274,11549-11556. Biochemistry. 2001, 222,149-158.
  • Yin SN, Hayes RB, Linet MS, Li GL, Dosemeci M, Travis LB, ZhangZN, Li DG, Chow WH, Wacholder S, Blot WJ. An expandedcohort study of cancer among benzene-exposed workers in China. Benzene Study Group. Environmental Health Perspectives. 1996a,104, 1339-1341.
  • Yin SN, Hayes RB, Linet MS, Li GL, Dosemeci M, Travis LB, LiCY, Zhang ZN, Li DG, Chow WH, Wacholder S, Wang YZ,Jiang ZL, Dai TR, Zhang WY, Chao XJ, Ye PZ, Kou QR, ZhangXC, Lin XF, Meng JF, Ding CY, Zho JS, Blot WJ. A cohortstudy of cancer among benzene-exposed workers in China: overallresults. American Journal of Industrial Medicine. 1996b, 29,227-235.
  • Ye J, Wang S, Leonard SS, Sun Y, Butterworth L, Antinini J, DingM, Rojanasakul Y, Valyathan V, Castranova V, Shi X. Role ofreactive oxygen species and p53 in chromium(VI)-inducedapoptosis. The Journal of Biological Chemistry. 1999, 274,34974-34980. Medicine. 2010, 48,749-762.
  • Yao K, Ye P, Zhang L, Tan J, Tang X, Zhang Y. Epigallocatechingallate protects against oxidative stress-induced mitochondria-dependent apoptosis in human lens epithelial cells. MolecularVision. 2008, 14, 217-223.
  • Yamaguchi Y, Larkin D, Lara-Lemus R, Ramos-Castaneda J, Liu M,Arvan P. Endoplasmic reticulum (ER) chaperone regulation andsurvival of cells compensating for deficiency in the ER stressresponse kinase, PERK. The Journal of Biological Chemistry. 2008, 283, 17020-17029.
  • Wu J, Xu X, Li Y, Kou J, Huang F, Liu B, Liu K. Quercetin,luteolin and epigallocatechin gallate alleviate TXNIP andNLRP3-mediated inflammation and apoptosis with regulation ofAMPK in endothelial cells. European Journal of Pharmacology. 2014, 745, 59-68.
  • Wolfram S. Effects of green tea and EGCG on cardiovascular andmetabolic health. The Journal of the American College ofNutrition. 2007, 26, 373S-388S.
  • Wei MC, Zong WX, Cheng EH, Lindsten T, Panoutsakopoulou V,Ross AJ, Roth KA, MacGregor GR, Thompson CB, KorsmeyerSJ, Proapoptotic BAX and BAK: A Requisite Gateway toMitochondrial Dysfunction and Death. Science. 2001, 292:727-730.
  • Wang F, Li C, Liu W, Jin Y. Effect of exposure to volatile organiccompounds (VOCs) on airway inflammatory response in mice. TheJournal of Toxicological Sciences. 2012, 37, 739-748.
  • Valkoa M, Rhodesb CJ, Moncola J, Izakovica M, Mazura M. Freeradicals, metals and antioxidants in oxidative stress-induced cancer. Chemico-Biological Interactions. 2006, 160, 1-40.
  • Urban P, Bilecova-Rabajdova M, Marekova M, Vesela J. Progressionof apoptic signaling from mesenteric ischemia-reperfusion injury tolungs: correlation in the level of ER chaperones expression. Molecular and Cellular Biochemistry. 2012, 362, 133-140.
  • Uotani S, Abe T, Yamaguchi Y. Leptin activates AMP-activated proteinkinase in hepatic cells via a JAK2-dependent pathway. Biochemical and Biophysical Research Communications. 2006, 351,171-175.
  • Umeda D, Yano S, Yamada K, Tachibana H. Green Tea PolyphenolEpigallocatechin-3-gallate Signaling Pathway through 67-kDaLaminin Receptor. The Journal of Biological Chemistry. 2008,283, 3050-3058.
  • Umeda D, Yano S, Yamada K, Tachibana H. Green Tea PolyphenolEpigallocatechin-3-gallate Signaling Pathway through 67-kDaLaminin Receptor. The Journal of Biochemistry. 2008, 283,3050-3058.
  • Thielecke F, Boschmann M. The potential role of green tea catechinsin the prevention of the metabolic syndrome. PhytochemistryReviews. 2009, 70, 11-24.
  • Tachibana H, Koga K, Fujimura Y, Yamada K. A receptor for greentea polyphenol EGCG. Nature Structural & Molecular Biology. 2004, 11, 380-381.
  • Shi H, Shi X, Liu KJ. Oxidative mechanism of arsenic toxicity andcarcinogenesis. Molecular and Cellular Biochemistry. 2004, 255,67-78.
  • Sheng R, Gu ZL, Xie ML, Zhou WX, Guo CY. Epigallocatechingallate protects H9c2 cardiomyoblasts against hydrogendioxides-induced apoptosis and telomere attrition. European Journalof Pharmacology. 2010, 641, 199-206.
  • Santus P, Corsico A, Solidoro P, Braido F, Marco FD, Scichilone N. Oxidative Stress and Respiratory System: Pharmacological andClinical Reappraisal of N-Acetylcysteine. Journal of ChronicObstructive Pulmonary Disease. 2014, 11, 705-717.
  • Sandikci M, Seyrek K, Aksit H, Kose H. Inhalation of formaldehydeand xylene induces apoptotic cell death in the lung tissue. Toxicology and Industrial Health. 2009, 25, 455-461.
  • Salah N, Miller NJ, Paganga G, Tijburg L, Bolwell GP, Rice-Evans C. Polyphenolic flavanols as scavengers of aqueous phase radicals and aschain-breaking antioxidants. Archives of Biochemistry and Biophysics. 1995, 322, 339-346.
  • Sakurai T1, Ochiai M, Kojima C, Ohta T, Sakurai MH, Takada NO,Qu W, Waalkes MP, Fujiwara K. Role of glutathione indimethylarsinic acid-induced apoptosis. Toxicology and AppliedPharmacology. 2004, 198, 354-365.
  • Ron D, Walter P. Signal integration in the endoplasmic reticulumunfolded protein response. Nature Reviews Molecular Cell Biology. 2007. 8, 519-529.
  • Riedl SJ, Shi Y. Molecular mechanisms of caspase regulation duringapoptosis. Nature Reviews Molecular Cell Biology. 2004, 5,897-907.
  • Rahman I, MacNee W. Oxidative stress and regulation of glutathionein lung inflammation. European Respiratory Journal. 2000, 16,534-554.
  • Palade G. Intracellular aspects of the process of protein synthesis. Science. 1975. 189(4200), 347-358.
  • Ohkawa H, Ohishi N, Yagi K. Assay for lipid peroxides in animaltissues by thiobarbituric acid reaction. Analytical Biochemistry. 1976, 95, 351-358.
  • Nie G, Cao Y, Zhao B. Protective effects of green tea polyphenolsand their major component, (-)-epigallocatechin-3-gallate (EGCG),on 6-hydroxydopamine-induced apoptosis in PC12 cells. RedoxReport. 2002, 7, 171-177.
  • Nicholson DW. Caspase structure, proteolytic substrates, and functionduring apoptotic cell death. Cell Death & Differentiation. 1999, 6,1028-1042.
  • Mortality among benzene-exposed workers in China. EnvironmentalHealth Perspectives. 1996, 104, 1349?1352.
  • Mori K. Tripartite management of unfolded proteins in the endoplasmicreticulum. Cell. 2000, 101, 451-454.
  • Maltoni C, Conti B, Corn G. Benzene: a multipotential carcinogen. Results of long-term bioassays performed at the Bologna Instituteof Oncology. American Journal of Industrial Medicine. 1983, 4,589-630.
  • Lushchak VI, Glutathione Homeostasis and Functions: Potential Targetsfor Medical Interventions. Journal of Amino Acids. 2012, ArticleID736837, 26 pages.
  • Luo S, Baumeister P, Yang S, Abcouwer SF, Lee AS. Induction ofGrp78/BiP by translational block: activation of the Grp78 promoterby ATF4 through and upstream ATF/CRE site independent of theendoplasmic reticulum stress elements. The Journal of BiologicalChemistry. 2003, 278, 37375-37385.
  • Long YC, Zierath JR. AMP-activated protein kinase signaling inmetabolic regulation. The Journal of Clinical Investigation. 116,1776-1783.
  • Lino-dos-Santos-Francoa A, Correa-Costab M, Santos Duraoc ACC,Oliveirab APL, Breithaupt-Faloppaa AC, Almeida Bertonia J,Oliveira-Filhoa RM, Camarab NOS, Marcourakisc T,Tavares-de-Limaa W, Formaldehyde induces lung inflammation byan oxidant and antioxidant enzymes mediated mechanism in thelung tissue. Toxicology Letters. 2011, 207, 278-285.
  • Lim SK, Kim JC, Moon CJ, Kim GY, Han HJ, Park SH. Formaldehyde induces apoptosis through decreased Prx 2 via p38MAPK in lung epithelial cells. Toxicology. 2010, 271, 100-106
  • Lim SK, Kim JC, Moon CJ, Kim GY, Han HJ, Park SH. Formaldehyde induces apoptosis through decreased Prx 2 via p38MAPK in lung epithelial cells. Toxicology. 2010, 271(3), 100-106.
  • Lim SK, Choi H, Park MJ, Kim DI, Kim JC, Kim GY, Jeong SY,Rodionov RN, Han HJ, Yoon KC, Park SH. The ERstress-mediated decrease in DDAH1 expression is involved informaldehyde-induced apoptosis in lung epithelial cells. Food andChemical Toxicology. 2013, 62, 763-769.
  • Li L, Wu L, Wang C, Liu L, Zhao Y. Adiponectin modulates carnitinepalmitoyltransferase-1 through AMPK signaling cascade in ratcardiomyocytes. Regulatory Peptides. 2007, 139, 72-79.
  • Levy M, Khan E, Careaga M, Goldkorn T. Neutral sphingomyelinase 2is activated by cigarette smoke to augment ceramide-inducedapoptosis in lung cell death. AMERICAN JOURNAL ofPHYSIOLOGY -Lung Cellular and Molecular Physiology. 2009,297, 125-133.
  • Lehmann I, Rehwagen M, Diez U, Seiffart A. Enhanced in vivo IgEproduction and T cell polarization toward the type 2 phenotype inassociation with indoor exposure to VOC: results of the LARSstudy. International Journal of Hygiene and Environmental Health. 2001, 204, 211?221.
  • Kim WJ, Terada N, Nomura T, Takahashi R, Lee SD, Park JH,Konno A. Effect of formaldehyde on the expression of adhesionmolecules in nasal microvascular endothelial cells: the role offormaldehyde in the pathogenesis of sick building syndrome. Clinical & Experimental Allergy. 2002, 32, 287-295.
  • Kim H, QUan MJ, Kim J. New insights into the mechanisms ofpolyphenols beyond antioxidant properties; lessons from the green teapolyphonel, epigallocatechin-3-gallate. Redox Biology. 2014, 2,187-195.
  • Khalade A, Jaakkola MS Pukkala E, Jaakkola J. Exposure to benzeneat work and the risk of leukemia: a systematic review andmeta-analysis. Environmental health. 2010, 9, 31-39.
  • Kelsen SG. Respiratory epithelial cell responses to cigarette smoke: theunfolded protein response. Pulmonary Pharmacology andTherapeutics. 2012, 25, 447-452.
  • Kaufman RJ. Orchestrating the unfolded protein response in health anddisease. The Journal of Clinical Investigation. 2002, 110,1389-1398.
  • Kampa M, Castanas E. Human health effects of air pollution. Environmental Pollution. 2008, 151, 362-367.
  • Jung WW, Kim EM, Lee EH, Yun HJ, Ju HR, Jeong MJ, HwangKW, Sul DG, Kang HS. Formaldehyde exposure induces airwayinflammation by increasing eosinophil infiltrations through theregulation of reactive oxygen species production. EnvironmentalToxicology and Pharmacology. 2007, 24, 174-182.
  • Joshi S, B. Peck A, R. Khan1 S. NADPH Oxidase as a TherapeuticTarget for Oxalate Induced Injury in Kidneys. Oxidative Medicineand Cellular Longevity. 2013, Article ID 462361, 18 pages.
  • Jin CF, Shen Sr SR, Zhao BL. Different effects of five catechins on6-hydroxydopamine-induced apoptosis in PC12 cells. Journal ofAgricultural and Food Chemistry. 2001, 49, 6033-6038.
  • Jian MY, Alexeyev MF, Wolkowicz PE, Zmijewski JW, Creighton JR. Metformin-stimulated AMPK-α1 promotes microvascular repair inacute lung injury. AMERICAN JOURNAL oF PHYSIOLOGY -LungCellular and Molecular Physiology. 2013, 305, L844-855.
  • IARC Working Group. Some industrial chemicals and dyestuffs. IARCmonographs on the evaluation of the carcinogenic risk ofchemicals to humans. 1982, 29, 93-148.
  • IARC Working Group. Benzene. IARC monographs on the evaluationof the carcinogenic risk of chemicals to humans. 1987, 42,120-122.
  • Hurley RL, Barre LK, Wood SD, Anderson KA, Kemp BE, MeansAR, Witters LA. Regulation of AMP-activated protein kinase bymultisite phosphorylation in response to agents that elevate cellularcAMP. The Journal of Biological Chemistry. 2006, 281,36662-36672.
  • Hummasti S, Hotamisligil GS. Endoplasmic Reticulum Stress andInflammation in Obesity and Diabetes. Circulation Research. 2010,107, 579-591.
  • Higdon JV, Frei B. Tea catechins and polyphenols: health effects,metabolism, and antioxidant functions. Critical Reviews in FoodScience and Nutrition. 2003, 43, 89-143.
  • Heath-Engel HM, Chang NC, Shore GC. The endoplasmic reticulum inapoptosis and autophagy: role of the BCL-2 protein family. Oncogene. 2008, 27, 6419-6433.
  • Hayes RB, Yin NS, Dosemeci M, Li GL, Wacholder S, Chow WH,Rothman N, Wang YZ, Dai TR, Chao XJ, Jiang ZL, Ye PZ,Zhao HB, Kou QR, Zhang WY, Meng JF, Zho JS, Lin XF, DingCY, Li CY, Zhang ZN, Li DG, Travis LB, Blot WJ, Linet MS.
  • Hardie DG, Scott JW, Pan DA, Hudson ER. Management of cellularenergy by the AMP-activated protein kinase system. FEBSLETTERS. 2003, 546, 113-120.
  • Haddad JJ. Redox and oxidant-mediated regulation of apoptosissignaling pathways: immuno-pharmaco-redox conception ofoxidative siege versus cell death commitment. InternationalImmunopharmacology. 2004, 4, 475-493.
  • Goncharova EA, Goncharov DA, James ML, Atochina-Vasserman EN,Stepanova V, Hong SB, Li H, Gonzales L, Baba M, LinehanWM, Gow AJ, Margulies S, Guttentag S, Schmidt LS, KrymskayaVP. Folliculin controls lung alveolar enlargement and epithelialcell survival through E-cadherin, LKB1, and AMPK. Cell Reports. 2014, 7, 412-423.
  • Fujimakia H, Yamamotoa S, Tin-Tin-Win-Shwea, Hojoa R, Satob F,Kunugitab N, Arashidanib K. Effect of long-term exposure tolow-level toluene on airway inflammatory response in mice. Toxicology Letters. 2007, 168, 132-139.
  • Filip A, Daicoviciu D, Clichici S, Mocan T, Muresan A, Postescu ID. Photoprotective Effects of Two Natural Products on UltravioletB.Induced Oxidative Stress and Apoptosis in SKH-1 Mouse Skin. Journal of Medicinal Food. 2011, 14, 761-766.
  • Endo M, Oyadomari S, Suga M, Mori M, Gotoh T. The ER stresspathway involving CHOP is activated in the lungs of LPS-treatedmice. The Journal of Biochemistry. 2005, 138, 501-507.
  • Dong YF, Wang LX, Huang X, Cao WJ, Lu M, Ding JH, Sun XL,Hu G. Kir6.1 knockdown aggravates cerebral ischemia/reperfusion-induced neural injury in mice. CNS Neuroscience & Therapeutics 2013, 19, 617-624.
  • Cronkite EP, Bulbs J E, Inoue T, Drew RT. Benzene inhalationproduces leukemia in mice. Toxicology and Applied Pharmacology. 1984, 75, 358-361.
  • Cortes-Canteli M, Pignatelli M, Santos A, Perez-Castillo A. CCAAT/enhancer-binding protein beta plays a regulatory role indifferentiation and apoptosis of neuroblastoma cells. The Journalof Biological Chemistry. 2002, 277, 5460-5467.
  • Cnop M, Hannaert JC, Hoorens A, Eizirik DL, Pipeleers DG. Inverserelationship between cytotoxicity of free fatty acids in pancreaticislet cells and cellular triglyceride accumulation. Diabetes. 2001,50, 1771-1777.
  • Carling D. AMP-activated protein kinase: balancing the scales. Biochimie. 2005, 87, 87-91.
  • Blobel G, Dobberstein B. Transfer of proteins across membranes. I. Presence of proteolytically processed and unprocessed nascentimmunoglobulin light chains on membrane-bound ribosomes ofmurine myeloma. Journal of Cell Biology. 1975, 67, 835-851.
  • Bartek, J Bartkova, J Lukas, J DNA damage signalling guards againstactivated oncogenes and tumour progression. Oncogene. 2007, 26,7773-7779.
  • Asano K, Takagi K, Haneishi A, Nakamura S, Yamada K. (-)-Epigallocatechin-3-gallate stimulates both AMP-activated proteinkinase and nuclear factor-kappa B signaling pathways. FOODCHEMISTRY. 2012, 134, 783-788
  • Arican RY, Sahin Z, Ustunel I, Sarikcioglu L, Ozdem S, Oguz N. Effects of formaldehyde inhalation on the junctional proteins ofnasal respiratory mucosa of rats. Experimental and ToxicologicPathology. 2009, 61, 209-305.