Expression of Hepatocyte Growth Factor mRNA in Rat Liver Cirrhosis Induced by N-nitrosodimethylamine as Evidenced by In Situ RT-PCRJunko Hataa, Etsuko Ikedaa, Hiroshi Unoa, and Satoshi Asanoaa Safety Research Department, Pharmaceuticals Development Research Laboratories, Teijin Limited, Tokyo, Japan Correspondence to: Junko Hata, Safety Research Dept., Pharmaceuticals Development Research Labs, Teijin Ltd., 4-3-2 Asahigaoka, Hino, Tokyo 191-8512, Japan. E-mail: j.hata@teijin.co.jp
Hepatocyte growth factor (HGF) is a potent inducer of hepatocyte proliferation and is expressed during liver failure. In this study we used the in situ reverse transcriptase-polymerase chain reaction (RT-PCR) method to detect HGF mRNA expression in normal rat livers and cirrhotic rat livers induced by treatment with N-nitrosodimethylamine (DMN). In normal control livers, in situ RT-PCR detected HGF mRNA expression in Ito cells and Kupffer cells, both of which showed rounded morphologies. However, in the cirrhotic livers induced by DMN, HGF mRNA-positive cells were spindle-shaped and surrounded the hepatocytes located around the sinusoids. These cells appeared to be sinusoidal endothelial cells as well as Ito and Kupffer cells. Because it has been suggested that HGF expression is related to transforming growth factor-ß (TGF-ß) levels that may play an essential role in disease progression in cirrhotic livers, TGF-ß mRNA expression in normal and cirrhotic livers was also compared using in situ RT-PCR. Our results confirmed that expression of TGF-ß mRNA co-localized with HGF mRNA expression in the cirrhotic liver. (J Histochem Cytochem 50:14611468, 2002) Key Words: HGF, in situ RT-PCR, sinusoidal endothelial cells, Ito cells, Kupffer cells, TGF-ß
HEPATOCYTE GROWTH FACTOR (HGF) was originally isolated from the serum of hepatectomized rats as a potent mitogen (
Although HGF is present at low concentrations in the serum of apparently normal individuals (
Studies using in situ hybridization methods have suggested that HGF mRNA is localized to Kupffer, Ito, and sinusoidal endothelial cells in the cirrhotic livers of rats and humans (
In the present work we studied both normal and cirrhotic rat livers. Cirrhosis was induced by administration of DMN (
Animal Treatments For measurement of HGF concentration, we prepared 10 rats as a different group. In this satellite group, five rats were administered DMN and five were treated as controls.
Specimen Preparation
Measurement of HGF Concentration
Immunohistopathological Examination
In Situ RT-PCR Examination Positive controls consisted of performing in situ RT-PCR in the absence of DNase. RT reactions were performed by the application of 2.5 U/µl MuLV-reverse transcriptase (Perkin Elmer; Norwalk, CT) to the slides. Buffer without MuLV-reverse transcriptase was applied one section on each slide as a negative control. Slides were incubated at 42C for 30 min, then 94C for 5 min. PCR amplification was performed using the hot-start procedure in a GeneAmp In Situ PCR System (PE Biosystems; Tokyo, Japan) thermal cycler. Slides were incubated first at 94C for 5 min (initial denaturation), followed by 30 cycles at 94C for 1 min and 55C for 3 min for denaturing and annealing, respectively. After PCR amplification, slides were washed in 0.1 M Tris-buffered saline, pH 9.5, containing 0.15 M NaCl and 50 mM MgCl2 (washing buffer), and soaked in 0.1 x SSC containing 0.4% bovine serum albumin at 45C for 5 min to block nonspecific binding activity (stringent wash). Immunohistochemical signal detection was carried out using mouse anti-digoxigenin monoclonal antibody Fab fragments conjugated to alkaline phosphatase (1:200 dilution, 30 min, RT) (Roche; Mannheim, Germany), and signals visualized by nitroblue tetrazolium chloride (NBT) (Sigma Aldrich Japan) and bromochloroindoxyl phosphate (BCIP) (Sigma Aldrich Japan).
Preparation of Cirrhotic Livers in Rats by DMN Administration
Determination of HGF Concentrations in the Plasma of Rats During DMN Administration
Detection of HGF and TGF-ß mRNA in Normal and Cirrhotic Livers Using In Situ RT-PCR
In situ RT-PCR results confirmed that HGF mRNA was expressed in Kupffer cells located in the sinusoid and in Ito cells located in the space of Disse in normal livers (Fig 2B). HGF mRNA expression was also detected in sinusoidal endothelial cells in cirrhotic livers (Fig 2D and Fig 2E). Whereas the morphology of these cells was rounded in control livers, the cells were spindle-shaped and surrounded the hepatocytes in cirrhotic livers. Hemangioendothelial cells and hemangiopericytes expressed HGF mRNA in both normal and cirrhotic livers. TGF-ß mRNA signals were almost undetectable in normal livers except the hemangioendothelial cells and hemangiopericytes (Fig 3A). Some mesenchymal cells, including Ito cells and Kupffer cells, slightly expressed TGF-ß mRNA. However, in cirrhotic livers, results showed that cells expressing TGF-ß mRNA corresponded to areas of HGF mRNA expression (Fig 3B).
It was recently reported that HGF mRNA appeared to be produced by mesenchymal cells, including Ito, Kupffer, and sinusoidal endothelial cells, in cirrhotic livers in both rats and humans (
A large number of studies have examined TGF-ß expression. Reports showed that mesenchymal cells, especially desmin-positive perisinusoidal cells (e.g., fat-storing cells and myofibroblasts), as well as periductal and periportal cells of the liver, are the principal sources of TGF-ß transcripts in normal, regenerative, and fibrogenic liver states by in situ hybridization (
Recently, it was shown that the TGF-ß appeared to inhibit HGF synthesis through suppression of HGF gene expression ( In this study for detection of the HGF mRNA with certainty, we performed determination of plasma HGF concentrations. As the result of the ELISA analyses, the concentration peaked at 4 hr after administration during the periods of administrations except just before death. At 5 weeks after the dosing of DMN, plasma HGF concentrations reached a maximal level continually. In human liver disease, it is known that plasma HGF levels of patients in acute hepatitis are higher than those in chronic hepatitis. In this model of DMN, however, it was observed that the higher plasma HGF levels, the more severe the fibrosis in the liver cirrhosis. Therefore, we could investigate the gene expression of the HGF and TGF-ß in the more severe fibrosis producing HGF by using the in situ RT-PCR method.
As the result of in situ RT-PCR, HGF mRNA expression was observed in mesenchymal cells around blood vessels and bile ducts in both normal and cirrhotic livers. In the normal liver, HGF mRNA was also detected in rounded mesenchymal cells, thought to be Ito cells and Kupffer cells, located in the space of Disse (
We also examined HGF and TGF-ß mRNA levels in cirrhotic livers in rats given DMN. In this study, half of the rats treated with DMN were dead within 5 weeks due to lethal DMN-induced liver cirrhosis. Histopathological analysis showed excessively expanded fibrous areas in the cirrhotic livers, with pseudonodule formation and most hepatocytes undergoing degeneration or necrosis. Immunostaining for In conclusion, our results suggest that HGF and TGF-ß mRNA, believed to be important factors in liver injury repair, are expressed in mesenchymal cells (Kupffer cells and Ito cells) in the normal liver. In the cirrhotic liver, our results show that sinusoidal endothelial cells also express HGF and TGF-ß mRNA. Mesenchymal cells, including sinusoidal endothelial cells, produce TGF-ß as a signal of liver failure and are responsible for collagen production during fibrogenesis. We also believe that these same cells, including sinusoidal endothelial cells, secrete HGF, which promotes fibrosis repair.
We wish to thank Mr Eiji Obana (Teijin SRL Lab. Inc., Japan) and Ms Ayumi Namiki for excellent tissue preparations. Received for publication April 27, 2001; accepted June 5, 2002.
Baroni GS, Ambrosio LD, Curto P, Casini A, Mancini R, Jezequel AM, Benedetti A (1996) Interferon gamma decreases hepatic stellate cell activation and extracellular matrix deposition in rat liver fibrosis. Hepatology 23:1189-1199[Medline]
Friedman SL (1993) Seminars in medicine of the Beth Israel hospital, Boston, the cellular basis of hepatic fibrosis. N Engl J Med 328:1828-1835 Gohda E, Tsubouchi H, Nakayama H, Hirano S, Sakiyama O, Takahashi K, Miyazaki H et al. (1988) Purification and partial characterization of hepatocyte growth factor from plasma of patient with fulminant hepatic failure. J Clin Invest 81:414-419 Ishidoya S, Morrissey J, McCracken R, Reyes A, Klahr S (1995) Angiotensin II receptor antagonist ameliorates renal tubulointerstitial fibrosis caused by unilateral ureteral obstruction. Kidney Int 47:1285-1294[Medline]
Ishii T, Sato M, Sudo K, Suzuki M, Nakai H, Hishida T, Niwa T et al. (1995) Hepatocyte growth factor stimulates liver regeneration and elevates blood protein level in normal and partially hepatectomized rats. J Biochem 117:1105-1112 Iwasaka T, Umemura S, Miyajima K, Shoda T, Takahashi A, Kakimoto K, Koizumi H et al. (2000) Lack of prolactin (PRL) mRNA expression in estrogen-treated rat mammary glands. J Toxicol Pathol 13:151-157 Jenkins SA, Grandison A, Baxter JN, Day DW, Taylor I, Shields R (1985) A dimethylnitrosamine-induced model of cirrhosis and portal hypertension in the rat. J Hepatol 1:489-499[Medline] Jezequel AM, Mancini R, Rinaldesi ML, Macarri G, Venturini C, Orlandi F (1987) A morphological study of the early stages of hepatic fibrosis induced by low doses of dimethylnitrosamine in the rat. J Hepatol 5:174-181[Medline]
Kastner S, Elias MC, Rivera AJ, YablonkaReuveni Z (2000) Gene expression patterns of the fibroblast growth factors and their receptors during myogenesis of rat satellite cells. J Histochem Cytochem 48:1079-1096
Kawaida K, Matsumoto K, Shimazu H, Nakamura T (1994) Hepatocyte growth factor prevents acute renal failure and accelerates renal regeneration in mice. Proc Natl Acad Sci USA 91:4357-4361 Kinoshita Y, Hassan S, Kawamura M, Matsushima Y, Okada A, Maekawa T, Fukui H et al. (1998) Increased hepatocyte growth factor content in rat stomach during omeprazole treatment. Digestion 59:101-109 Knittel T, Janneck T, Muller L, Fellmer P, Ramadori G (1996) Transforming growth factor ß1-regulated gene expression of Ito cells. Hepatology 24:352-360[Medline] Lee LK, Pollock AS, Lovett DH (1993) The asymmetric origins of the mature glomerular basement membrane. J Cell Physiol 157:169-177[Medline]
Matsuda Y, Matsumoto K, Ichida T, Nakamura T (1995) Hepatocyte growth factor suppressed the onset of liver cirrhosis and abrogates lethal hepatic dysfunction in rats. J Biochem 118:643-649
Matsumoto K, Tajima H, Okazaki H, Nakamura T (1992) Negative regulation of hepatocyte growth factor gene expression in human lung fibroblasts and leukemic cells by transforming growth factor-ß1 and glucocorticoids. J Biol Chem 267:24917-24920 McMillan JI, Riordan JW, Couser WG, Pollock AS, Lovett DH (1996) Characterization of glomerular epithelial cell metalloproteinase as matrix metalloproteinase-9 with enhanced expression in a model of membranous nephropathy. J Clin Invest 97:1094-1101[Medline] Michalopoulos GK, Zarnegar R (1992) Hepatocyte growth factor. Hepatology 15:149-155[Medline]
Nace EK, Steurer FJ, Eberhard ML (1999) Evaluation of Streck tissue fixative, a nonformalin fixative for preservation of stool samples and subsequent parasitologic examination. J Clin Microbiol 37:4113-4119 Nakamura T, Nawa K, Ichihara A (1984) Partial purification and characterization of hepatocyte growth factor from serum of hepatectomized rats. Biochem Biophys Res Commun 122:1450-1459[Medline] Nakamura T, Nawa K, Ichihara A, Kaise N, Nishino T (1987) Purification and subunit structure of hepatocyte growth factor from rat platelets. FEBS Lett 224:311-316[Medline] Nakamura T, Nishizawa T, Hagiya M, Seki T, Shimonishi M, Sugimura A, Tashiro K et al. (1989) Molecular cloning and expression of human hepatocyte growth factor. Nature 342:440-443[Medline]
Nakamura T, Teramoto H, Ichihara A (1986) Purification and characterization of a growth factor from rat platelets for mature parenchymal hepatocytes in primary cultures. Proc Natl Acad Sci USA 83:6489-6493 Nakatsukasa H, Evarts RP, Hsia C-C, Marsden E, Thorgeirsson SS (1991) Expression of transforming growth factor-ß1 during chemical hepatocarcinogenesis in the rat. Lab Invest 65:511-517[Medline] Nakatsukasa H, Evarts RP, Hsia C-C, Thorgeirsson SS (1990a) Transforming growth factor-ß1 and type I procollagen transcripts during regeneration and early fibrosis of rat liver. Lab Invest 63:171-180[Medline] Nakatsukasa H, Nagy P, Evarts RP, Hsia C-C, Marsden E, Thorgeirsson SS (1990b) Cellular distribution of transforming growth factor-ß1 and procollagen types I, III, and IV transcripts in carbon tetrachloride-induced rat liver fibrosis. J Clin Invest 85:1833-1843 Noji S, Tashiro K, Koyama E, Nohno T, Ohyama K, Taniguchi S, Nakamura T (1990) Expression of hepatocyte growth factor gene in endothelial and Kupffer cells of damaged rat livers as revealed by in situ hybridization. Biochem Biophys Res Commun 173:42-47[Medline] Nuovo GJ (1996) PCR In Situ Hybridization, Protocol and Applications. 2nd ed New York, LippincottRaven Nuovo GJ (1997) PCR In Situ Hybridization, Protocol and Applications. 3rd ed New York, LippincottRaven
PietrzakJohnston SM, Bishop H, Wahlquist S, Moura H, De Oliveira Da Silva N, Pereira Da Silva S, NguyenDinh P (2000) Evaluation of commercially available preservatives for laboratory detection of helminthes and protozoa in human fecal specimens. J Clin Microbiol 38:1959-1964 Schirmacher P, Geerts A, Pietrangelo A, Dienes HP, Rogler CE (1992) Hepatocyte growth factor/hepatopoietin A is expressed in fat-storing cells from rat liver but not myofibroblast-like cells derived from fat-storing cells. Hepatology 15:5-11[Medline] Shimizu I, Ma YR, Mizobuchi Y, Liu F, Miura T, Nakai Y, Yasuda M et al. (2001) Effects of Sho-saiko-to, a Japanese herbal medicine, on hepatic fibrosis in rats. Hepatology 29:149-160 Sinigalliano CD, Kuhn DN, Jones RD, Guerrero MA (2001) In situ reverse transcription to detect the cbbL gene and visualize RuBisCO in chemoautotrophic nitrifying bacteria. Lett Appl Microbiol 32:388-393[Medline] Tada S, Iwamoto H, Nakamura M, Sugimoto R, Enjoji M, Nakashima Y, Nawata H (2001) A selective ROCK inhibitor, Y27632, prevents dimethylnitrosamine-induced hepatic fibrosis in rats. J Hepatol 34:529-536[Medline] Takahashi M, Ota S, Hata Y, Mikami Y, Azuma N, Nakamura T, Terano A et al. (1996) Hepatocyte growth factor as a key to modulate anti-ulcer action of prostaglandins in stomach. J Clin Invest 98:2604-2611[Medline]
Tashiro K, Hagiya M, Nishizawa T, Seki T, Shimonishi M, Shimizu S, Nakamura T (1990) Deduced primary structure of rat hepatocyte growth factor and expression of the mRNA in rat tissues. Proc Natl Acad Sci USA 87:3200-3204 Tsubouchi H, Niitani Y, Hirono S, Nakayama H, Ghoda E, Arakaki N, Sakiyama O et al. (1991) Levels of the human hepatoxyte growth factor in serum of patients with various liver diseases determined by an enzyme-linked immunosorbent assay. Hepatology 13:1-5[Medline] Ueki T, Kaneda Y, Tsutsui H, Nakanishi K, Sawa Y, Morishita R, Matsumoto K et al. (1999) Hepatocyte growth factor gene therapy of liver cirrhosis in rats. Nature Med 5:226-230[Medline] Wake K (1980) Perisinusoidal stellate cells (fat-storing cells, interstitial cells, lipocytes), their related structure in and around the liver sinusoids, and vitamin A-storing cells in extrahepatic organs. Int Rev Cytol 66:303-353[Medline] Yamaguchi K, Nalesnik MA, Michalopoulos GK (1996) Hepatocyte growth factor mRNA in human liver cirrhosis as evidenced by in situ hybridization. Scand J Gastroenterol 31:921-927[Medline] Zarnegar R, DeFrances MC, Kost DP, Lindroos P, Michalopoulos GK (1991) Expression of hepatocyte growth factor mRNA in regenerating rat liver after partial hepatectomy. Biochem Biophys Res Commun 177:559-565[Medline]
Zarnegar R, Michalopoulos G (1989) Purification and biological characterization of human hepatopoietin A, a polypeptide growth factor for hepatocytes. Cancer Res 49:3314-3320
This article has been cited by other articles:
|
||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||