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      간흡충(Clonorchis sinensis)감염에 의한 흰쥐 담관 섬유모세포 미토콘드리아 전자전달효소의 감소 = Reduction of Mitochondrial Electron Transferase in Rat Bile duct Fibroblast by Clonorchis sinensis Infection

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      https://www.riss.kr/link?id=A101628337

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      다국어 초록 (Multilingual Abstract)

      Fibroblasts are the most common cells in connective tissue and are responsible for the synthesis of extracellular matrix components. The fibrosis associated with chronic inflammation and injury may contribute to cholangiocarcinoma pathogenesis, particularly through an increase in extracellular matrix components, which participate in the regulation of bile duct differentiation during development. Mitochondria produce ATP through oxidative metabolism to provide energy to the cell under physiological conditions. Also, mitochondrial dysfunction and oxidative stress have been implicated in cellular senescence and aging. Alternations in mitochondrial structure and function are early events of programmed cell death or apoptosis and mitochondria appear to be a central regulator of apoptosis in most somatic cell. Clonorchis sinensis, one of the most important parasite of the human bile duct in East Asia, arouses epithelial hyperplasia and ductal fibrosis. Isolated fibroblast from the bile ducts of rats infected by C. sinensis showed increase of cytoplasmic process. In addition, decrease of cellular proliferation was observed in fibroblasts which was isolated from normal rat bile duct and then cultured in media containing C. sinensis excretory-secretory product. However, the effects of C. sinensis infection on the mitochondrial enzyme distribution is not clearly reported yet. Therefore, we investigated the structural change of C. sinensis infected bile duct and mitochondrial enzyme distribution of the cultured fibroblast isolated from the C. sinensis infected rat bile duct. As a result, C. sinensis infected SD rat bile ducts showed the features of chronic clonorchiasis, such as ductal connective and epithelial tissue dilatation, or ductal fibrosis. In addition, fibroblast in ductal connective tissue was damaged by physical effect of fibrotic tissue and chemical stimulation. Immunohistochemically detected mitochondrial electron transferase (ATPase, COXII, Porin) was decreased in C. sinensis infected rat bile duct and cultured fibroblast from infected rat bile duct. It can be hypothesized that the reason why number of electron transferase decrease in fibroblast isolated from the rat bile duct infected with C. sinensis is because dysfunction of electron transport system is occurred mitochondrial dysfunction, increase of ROS (reactive oxygen species) and apoptosis after chemical damage on the cell caused by C. sinensis infection. Overall, C. sinensis infection induces fibrotic change of ductal connective tissue, mutation of cellular metabolism in fibroblast and mitochondrial dysfunction. Consequently, ductal fibrosis inhibits fibroblast proliferation and decreases mitochondrial electron transferase on fibroblast cytoplasm. It was assumed that the structure of bile duct could not normalized and ductal fibrosis was maintained for a long period of time according to fibroblast metamorphosis and death induced by mitochondrial dysfunction.
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      Fibroblasts are the most common cells in connective tissue and are responsible for the synthesis of extracellular matrix components. The fibrosis associated with chronic inflammation and injury may contribute to cholangiocarcinoma pathogenesis, partic...

      Fibroblasts are the most common cells in connective tissue and are responsible for the synthesis of extracellular matrix components. The fibrosis associated with chronic inflammation and injury may contribute to cholangiocarcinoma pathogenesis, particularly through an increase in extracellular matrix components, which participate in the regulation of bile duct differentiation during development. Mitochondria produce ATP through oxidative metabolism to provide energy to the cell under physiological conditions. Also, mitochondrial dysfunction and oxidative stress have been implicated in cellular senescence and aging. Alternations in mitochondrial structure and function are early events of programmed cell death or apoptosis and mitochondria appear to be a central regulator of apoptosis in most somatic cell. Clonorchis sinensis, one of the most important parasite of the human bile duct in East Asia, arouses epithelial hyperplasia and ductal fibrosis. Isolated fibroblast from the bile ducts of rats infected by C. sinensis showed increase of cytoplasmic process. In addition, decrease of cellular proliferation was observed in fibroblasts which was isolated from normal rat bile duct and then cultured in media containing C. sinensis excretory-secretory product. However, the effects of C. sinensis infection on the mitochondrial enzyme distribution is not clearly reported yet. Therefore, we investigated the structural change of C. sinensis infected bile duct and mitochondrial enzyme distribution of the cultured fibroblast isolated from the C. sinensis infected rat bile duct. As a result, C. sinensis infected SD rat bile ducts showed the features of chronic clonorchiasis, such as ductal connective and epithelial tissue dilatation, or ductal fibrosis. In addition, fibroblast in ductal connective tissue was damaged by physical effect of fibrotic tissue and chemical stimulation. Immunohistochemically detected mitochondrial electron transferase (ATPase, COXII, Porin) was decreased in C. sinensis infected rat bile duct and cultured fibroblast from infected rat bile duct. It can be hypothesized that the reason why number of electron transferase decrease in fibroblast isolated from the rat bile duct infected with C. sinensis is because dysfunction of electron transport system is occurred mitochondrial dysfunction, increase of ROS (reactive oxygen species) and apoptosis after chemical damage on the cell caused by C. sinensis infection. Overall, C. sinensis infection induces fibrotic change of ductal connective tissue, mutation of cellular metabolism in fibroblast and mitochondrial dysfunction. Consequently, ductal fibrosis inhibits fibroblast proliferation and decreases mitochondrial electron transferase on fibroblast cytoplasm. It was assumed that the structure of bile duct could not normalized and ductal fibrosis was maintained for a long period of time according to fibroblast metamorphosis and death induced by mitochondrial dysfunction.

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      참고문헌 (Reference)

      1 권정남, "배양된 흰쥐 담관 섬유모세포에 대한 간흡충 분비배설 물질의 영향" 한국현미경학회 39 (39): 117-124, 2009

      2 김수진, "간흡충에 감염된 실험쥐 담관 섬유모세포의 미세구조적 변화" 한국현미경학회 34 (34): 121-130, 2004

      3 Navarro A, "Vitamin E at high doses improves survival, neurological performance, and brain mitochondrial function in aging male mice" 289 : 1392-1399, 2005

      4 Koumas L, "Thy-1 expression in human fibroblast subsets defines myofibroblastic or lipofibroblastic phenotypes" 163 (163): 1291-1300, 2003

      5 Hou PC, "The pathology of Clonorchis sinensis infestation of the liver" 70 : 53-64, 1995

      6 Min HK, "The effect of a carcinogen, dimethylnitrosamin, in cholangiocarcinoma in the albino rats experimentally infected with Clonorchis sinensis metacercaria" 17 : 1-10, 1986

      7 Green D, "The central executioners of apoptosis: caspases or mitochondria?" 8 (8): 267-271, 1998

      8 Lee SH, "Studies on pathological changes of the liver in albino rats infected with Clonorchis sinensis" 16 : 148-155, 1978

      9 Navarro A, "Rat brain and liver mitochondria develop oxidative stress and lose enzymatic activities on aging" 287 : 1244-1249, 2004

      10 Lee YH, "Primary carcinoma of liver induced by Clonorchis sinensis" 10 (10): 273-281, 1968

      1 권정남, "배양된 흰쥐 담관 섬유모세포에 대한 간흡충 분비배설 물질의 영향" 한국현미경학회 39 (39): 117-124, 2009

      2 김수진, "간흡충에 감염된 실험쥐 담관 섬유모세포의 미세구조적 변화" 한국현미경학회 34 (34): 121-130, 2004

      3 Navarro A, "Vitamin E at high doses improves survival, neurological performance, and brain mitochondrial function in aging male mice" 289 : 1392-1399, 2005

      4 Koumas L, "Thy-1 expression in human fibroblast subsets defines myofibroblastic or lipofibroblastic phenotypes" 163 (163): 1291-1300, 2003

      5 Hou PC, "The pathology of Clonorchis sinensis infestation of the liver" 70 : 53-64, 1995

      6 Min HK, "The effect of a carcinogen, dimethylnitrosamin, in cholangiocarcinoma in the albino rats experimentally infected with Clonorchis sinensis metacercaria" 17 : 1-10, 1986

      7 Green D, "The central executioners of apoptosis: caspases or mitochondria?" 8 (8): 267-271, 1998

      8 Lee SH, "Studies on pathological changes of the liver in albino rats infected with Clonorchis sinensis" 16 : 148-155, 1978

      9 Navarro A, "Rat brain and liver mitochondria develop oxidative stress and lose enzymatic activities on aging" 287 : 1244-1249, 2004

      10 Lee YH, "Primary carcinoma of liver induced by Clonorchis sinensis" 10 (10): 273-281, 1968

      11 Korea Association of Health Promotion(KA, "Prevalence of intestinal parasitic infections in Korea" Korea Association of Health Promotion 63-66, 2004

      12 Choi BI, "Peripheral cholangiocarcinoma and clonorchiasis: CT finding" 169 : 149-153, 1988

      13 Gould E, "Neuronal birth and death" 3 : 676-682, 1993

      14 Albert B, "Molecular biology of the cell" Garland publishing Inc 1179-1180, 1994

      15 Dirks AJ, "Mitochondrial DNA mutations, energy metabolism and apoptosis in aging muscle" 5 : 179-195, 2006

      16 Roy A, "Mitochondria-dependent reactive oxygen speciesmediated programmed cell death induced by 3,3′-diindolylmethane through inhibition of F0F1-ATP synthase in unicellular protozoan parasite Leishmania donovani" 74 (74): 1292-1307, 2008

      17 Cottrell DA, "Mitochondria and ageing" 3 (3): 473-478, 2000

      18 Bruce SA, "Longitudinal study of in vivo wound repair and in vitro cellular senescence of dermal fibroblasts" 26 : 17-27, 1991

      19 Flavell DJ, "Liver-fluke infection as an aetiological factor in bile duct carcinoma of man" 75 : 814-824, 1981

      20 Bhamarapravati N, "Liver changes in hamsters infected with a liver fluke of man, Opisthorchis viverini" 27 : 787-794, 1978

      21 Bustamante J, "Kinetic analysis of thapsigargin-induced thymocyte apoptosis" 37 : 1490-1498, 2004

      22 Belamaric J, "Intrahepatic bile duct carcinoma and C. sinensis infection in Hong Kong" 31 (31): 468-473, 1973

      23 Kim YI, "Intraductal variant of peripheral cholangiocarcinoma of the liver with Clonorchis sinensis infection" 63 : 1562-1566, 1989

      24 Cha SH, "Histopathological changes of the bile duct in the experimental animals by the superinfection of Clonorchis sinensis" 28 (28): 741-757, 1991

      25 Kang HS, "Histology 2nd ed" Komunsa publishing Inc 92-93, 1994

      26 Sher L, "Hilar cholangiocarcinoma associated with clonorchiasis" 34 (34): 1121-1123, 1989

      27 Akimoto M, "Growth inhibition of cultured human Tenon’s fibroblastic cells by targeting the E2F transcription factor" 67 (67): 395-401, 1998

      28 McLeod KJ, "Frequency dependence of electric field modulation of fibroblast protein synthesis" 12 : 1465-1469, 1987

      29 Indo HP, "Evidence of ROS generation by mitochondria in cells with impaired electron transport chain and mitochondrial DNA damage" 7 (7): 106-118, 2007

      30 Fem T, "Demonstration by monoclonal antibodies that carbohy drates structures of glycoproteins and glycolipids are onco-developmental antigens" 314 : 53-, 1985

      31 Sullivan WG, "Common bile duct obstruction and cholangiohepatitis in clonorchiasis" 243 : 2060-2061, 1980

      32 Rim HJ, "Clonorchiasis in Korea" 28 : 63-78, 1990

      33 Purtillo DT, "Clonorchiasis and hepatic neoplasm" 28 : 21-27, 1976

      34 Schwartz DA, "Cholangiocarcinoma associated with liver fluke infection: a preventable source of morbidity in Asian immigrants" 81 (81): 76-79, 1986

      35 Duke RC, "Cell suicide in health and disease" 275 (275): 80-87, 1996

      36 Damjanov I, "Biology of disease: Lectin cytochemistry and histochemistry" 57 (57): 5-20, 1987

      37 Skulachev VP, "Bioenergetic aspects of apoptosis, necrosis and mitoptosis" 11 : 473-485, 2006

      38 최동일, "Bile duct changes in rats reinfected with Clonorchis sinensis" 대한기생충학회 42 (42): 7-17, 2004

      39 Navarro A, "Beneficial effects of moderate exercise on mice aging: survival, behavior, oxidative stress, and mitochondrial electron transfer" 286 : 505-511, 2004

      40 Navarro A, "Behavioral dysfunction, brain oxidative stress, and impaired mitochondrial electron transfer in aging mice" 282 : 985-992, 2002

      41 Bloom W, "A textbook of histology" Saunders 171-172, 1972

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      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
      2014-03-17 학술지명변경 외국어명 : Korean Journal of Microscopy -> Applied Microscopy KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-09-22 학술지명변경 한글명 : 한국전자현미경학회지 -> 한국현미경학회지
      외국어명 : Korean Journal of Electron Microscopy -> Korean Journal of Microscopy
      KCI등재
      2007-10-24 학회명변경 한글명 : 한국전자현미경학회 -> 한국현미경학회
      영문명 : Korean Society Of Electron Microscopy -> Korean Society Of Microscopy
      KCI등재
      2007-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2004-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2003-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2002-01-01 평가 등재후보학술지 유지 (등재후보1차) KCI등재후보
      1999-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.11 0.11 0.12
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.12 0.12 0.273 0
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