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Published in: Pediatric Surgery International 1/2005

01-01-2005 | Original Article

Connective tissue growth factor and progressive fibrosis in biliary atresia

Authors: Hiroyuki Kobayashi, Nobukazu Hayashi, Kenji Hayashi, Atsuyuki Yamataka, Geoffrey J. Lane, Takeshi Miyano

Published in: Pediatric Surgery International | Issue 1/2005

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Abstract

Connective tissue growth factor (CTGF) is a newly described protein that stimulates transforming growth factor-β1 (TGF-β1). We evaluated the expression of CTGF mRNA in operative biopsy specimens from biliary atresia (BA) patients and normal controls to assess the role of CTGF in BA. Liver biopsy specimens were taken from BA patients at the time of portoenterostomy (n=22) and compared with specimens taken from normal controls (n=6). In situ hybridization was used to stain CTGF mRNA in all specimens. The distribution of collagen type IV (C-IV) was also assessed in the same specimens as an indicator of the severity of fibrosis present at the time of biopsy. Results were analyzed to determine whether there was any correlation between CTGF and C-IV and outcome. Of the 22 postoperative BA patients, eventual outcome was good in 17 (group I), and five (group II) subsequently required liver transplantation. Control specimens (n=6) had no apparent CTGF mRNA expression, and median C-IV positive immunoreactivity was 1.23±0.25%. CTGF mRNA was weakly expressed in hepatic stellate cells (HSC) and hepatocytes in specimens from group I, and median C-IV-positive immunoreactivity was 3.18±0.86%. However, in specimens from group II, there was increased CTGF mRNA in HSC and hepatocytes. Median C-IV-positive immunoreactivity was 6.31±0.96%. There was a significant correlation between CTGF mRNA intensity and the amount of C-IV, which implies that CTGF expression reflects prognosis. This study provides the first evidence that CTGF is strongly expressed in BA, in particular in HSC and hepatocytes, suggesting that they may be a source of CTGF. The strong correlation with C-IV indicates that CTGF plays a major role in the pathogenesis of progressive fibrosis in BA.
Literature
1.
go back to reference Kobayashi H, Horikoshi K, Yamataka A, et al. (2001) Are stable postoperative biliary atresia patients really stable? Pediatr Surg Int 17:104–107CrossRefPubMed Kobayashi H, Horikoshi K, Yamataka A, et al. (2001) Are stable postoperative biliary atresia patients really stable? Pediatr Surg Int 17:104–107CrossRefPubMed
2.
go back to reference Paradis V, Dargere D, Vidaud M, et al. (1999) Expression of connective tissue growth factor in experimental rat and human liver fibrosis. Hepatology 30:968–976CrossRefPubMed Paradis V, Dargere D, Vidaud M, et al. (1999) Expression of connective tissue growth factor in experimental rat and human liver fibrosis. Hepatology 30:968–976CrossRefPubMed
3.
go back to reference Bradham DM, Igarashi A, Potter RL, et al. (1991) Connective tissue growth factor: a cysteine-rich mitogen secreted by human vascular endothelial cells is related to the SRC-induced immediate early gene product CEF-10. J Cell Biol 114:1285–1294CrossRefPubMed Bradham DM, Igarashi A, Potter RL, et al. (1991) Connective tissue growth factor: a cysteine-rich mitogen secreted by human vascular endothelial cells is related to the SRC-induced immediate early gene product CEF-10. J Cell Biol 114:1285–1294CrossRefPubMed
4.
go back to reference Duncan MR, Frazier KS, Abramson S, et al. (1999) Connective tissue growth factor mediates transforming growth factor β-induced collagen synthesis: down-regulation by cAMP. FASEB J 13:1774–1786PubMed Duncan MR, Frazier KS, Abramson S, et al. (1999) Connective tissue growth factor mediates transforming growth factor β-induced collagen synthesis: down-regulation by cAMP. FASEB J 13:1774–1786PubMed
5.
go back to reference Frazier KS, Williams S, Kothapalli D, et al. (1996) Stimulation of fibroblast cell growth, matrix production and granulation tissue formation by connective tissue growth factor. J Invest Dermatol 107:404–411CrossRefPubMed Frazier KS, Williams S, Kothapalli D, et al. (1996) Stimulation of fibroblast cell growth, matrix production and granulation tissue formation by connective tissue growth factor. J Invest Dermatol 107:404–411CrossRefPubMed
6.
go back to reference Williams EJ, Gaca MDA, Brigstock DR, et al. (2000) Increased expression of connective tissue growth factor in fibrotic human liver and in activated hepatic stellate cells. J Hepatol 32:754–761CrossRefPubMed Williams EJ, Gaca MDA, Brigstock DR, et al. (2000) Increased expression of connective tissue growth factor in fibrotic human liver and in activated hepatic stellate cells. J Hepatol 32:754–761CrossRefPubMed
7.
go back to reference Tagge DU, Tagge EP, Drongowski RA, et al. (1991) A long-term experience with biliary atresia. Ann Surg 214:590–598PubMed Tagge DU, Tagge EP, Drongowski RA, et al. (1991) A long-term experience with biliary atresia. Ann Surg 214:590–598PubMed
8.
go back to reference Roberts AB, McCune BK, Sporn MB, et al. (1992) Regulation of extracellular matrix. Kidney Int 41:557–559PubMed Roberts AB, McCune BK, Sporn MB, et al. (1992) Regulation of extracellular matrix. Kidney Int 41:557–559PubMed
9.
go back to reference Lamireau T, Bail BL, Boussarie L, et al. (1999) Expression of collagen type I and IV, osteonectin and transforming growth factor beta-1 (TGFβ1) in biliary atresia and paucity of intrahepatic bile ducts during infancy. J Hepatol 31:248–255CrossRefPubMed Lamireau T, Bail BL, Boussarie L, et al. (1999) Expression of collagen type I and IV, osteonectin and transforming growth factor beta-1 (TGFβ1) in biliary atresia and paucity of intrahepatic bile ducts during infancy. J Hepatol 31:248–255CrossRefPubMed
10.
go back to reference Abou-Shady M, Friess H, Zimmermann A, et al. (2000) Connective tissue growth factor in human liver cirrhosis. Liver 20:296–304CrossRefPubMed Abou-Shady M, Friess H, Zimmermann A, et al. (2000) Connective tissue growth factor in human liver cirrhosis. Liver 20:296–304CrossRefPubMed
11.
go back to reference Yokoi H, Sugawara A, Mukoyama M, et al. (2001) Role of connective tissue growth factor in profibrotic action of transforming growth factor-β: a potential target for preventing renal fibrosis. Am J Kidney Dis 38: S134-S138PubMed Yokoi H, Sugawara A, Mukoyama M, et al. (2001) Role of connective tissue growth factor in profibrotic action of transforming growth factor-β: a potential target for preventing renal fibrosis. Am J Kidney Dis 38: S134-S138PubMed
12.
go back to reference Tamatani T, Kobayashi H, Tezuka K, et al. (1998) Establishment of the enzyme-linked immunosorbent assay for connective tissue growth factor (CTGF) and its detection in the sera of biliary atresia. Biochem Biophys Res Commun 251:748–752CrossRefPubMed Tamatani T, Kobayashi H, Tezuka K, et al. (1998) Establishment of the enzyme-linked immunosorbent assay for connective tissue growth factor (CTGF) and its detection in the sera of biliary atresia. Biochem Biophys Res Commun 251:748–752CrossRefPubMed
13.
go back to reference Sedlaczek N, Jia Ji-D, Bauer M, et al. (2001) Proliferating bile duct epithelial cells are a major source of connective tissue growth factor in rat biliary fibrosis. Am J Pathol 158:1239–1244PubMed Sedlaczek N, Jia Ji-D, Bauer M, et al. (2001) Proliferating bile duct epithelial cells are a major source of connective tissue growth factor in rat biliary fibrosis. Am J Pathol 158:1239–1244PubMed
Metadata
Title
Connective tissue growth factor and progressive fibrosis in biliary atresia
Authors
Hiroyuki Kobayashi
Nobukazu Hayashi
Kenji Hayashi
Atsuyuki Yamataka
Geoffrey J. Lane
Takeshi Miyano
Publication date
01-01-2005
Publisher
Springer-Verlag
Published in
Pediatric Surgery International / Issue 1/2005
Print ISSN: 0179-0358
Electronic ISSN: 1437-9813
DOI
https://doi.org/10.1007/s00383-004-1254-z

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