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Studies on responsiveness of hepatoma cells to catecholamines. VI. Characteristics of adrenoceptors and adenylate cyclase response in rat ascites hepatoma cells and human hepatoma cells.

Alpha 1, alpha 2- and beta-Adrenoceptor densities and catecholamine responsiveness in established hepatoma cells, rat ascites hepatoma AH13, AH66, AH66F, AH109A, AH130 and AH7974 cells and human hepatocellular carcinoma HLF and HepG2 cells, were compared with those in normal rat hepatocytes and Chang liver cells. Alpha 1-Adrenoceptor densities measured by [3H]prazosin bindings were not detected in all hepatoma cell lines. Alpha 2-Adrenoceptor densities measured by [3H]clonidine bindings were also barely detected in hepatoma cell lines except for AH130 cells and HepG2 cells. Regarding beta-adrenoceptor, AH109A, AH130 and AH7974 cells had much more [125I]iodocyanopindolol binding sites than normal rat hepatocytes, although we could not detect the binding in HepG2 cells. Adenylate cyclase of normal rat hepatocyte and Chang liver cells were stimulated by beta 2-adrenergic agonist salbutamol, while the cyclase in hepatoma cells had no beta 2-adrenergic response but a beta 1-type response. These findings indicate that the characteristics of adrenergic response in hepatoma cell lines is very different from that in normal hepatocytes, suggesting a participation in the hepatocarcinogenesis and/or the autonomous proliferation of hepatoma cells.

Adenylyl Cyclases↗

Antisense oligonucleotides of hepatoma-derived growth factor (HDGF) suppress the proliferation of hepatoma cells.

BACKGROUND/AIMS: Human hepatoma-derived growth factor, purified from the conditioned medium of hepatoma-derived cell line, HuH-7, stimulates the growth of Swiss 3T3 fibroblasts and HuH-7 cells. To evaluate the role of hepatoma-derived growth factor on the growth of hepatoma cells, we investigated the effects of recombinant hepatoma-derived growth factor protein and hepatoma-derived growth factor antisense oligonucleotides on the proliferation of several hepatoma cell lines. METHODOLOGY: We examined the effects of hepatoma-derived growth factor antisense oligonucleotides on the growth of hepatoma cells by cell growth assay. RESULTS: Hepatoma-derived growth factor stimulated the proliferation of some hepatoma cells (HuH-7, HLF, HepG2, AH66tc cells) about 15-70% over than the control. Hepatoma-derived growth factor antisense oligonucleotides, phosphorothioate-linked or encapsulated in liposome, can inhibit the growth of hepatoma cells. The ID50 of hepatoma-derived growth factor antisense phosphorothioate oligonucleotides for HuH-7 cells, in which hepatoma-derived growth factor expression was abundant, was 3 microM by the assay of cell proliferation and [3H]-thymidine incorporation. Their ID50 for AH66tc cells, on which the effects of exogenous hepatoma-derived growth factor were weak, was higher than 10 microM. To omit the toxic effects due to phosphorothioate modification of oligonucleotides and keep the cellular uptake more without their destruction in the culture medium, we used oligonucleotides encapsulated in cationic liposome. Hepatoma-derived growth factor antisense oligonucleotides encapsulated in liposome suppressed the growth of hepatoma cells effectively (ID50:2.0 microM). CONCLUSIONS: These findings suggest that hepatoma-derived growth factor is one of important autocrine, and/or intracrine factors for hepatoma cells, and that hepatoma-derived growth factor anti-sense oligonucleotides may be useful for human hepatocellular carcinoma as an anti-cancer agent.

Animals↗

Microsomal monooxygenase system in Morris hepatoma: purification and characterization of cytochromes P-450 from Morris hepatoma 5123D of 3-methylcholanthrene-treated rats.

Two forms of cytochrome P-450 (hepatoma P-450MCI and P-450MCII) were purified from hepatoma 5123D microsomes of tumor-bearing rats treated with 3-methylcholanthrene. Hepatoma P-450MCI had a specific content of 18.4 nmol/mg protein and showed a main protein band with a minimum molecular weight of 56,000 on sodium dodecyl sulfate-polyacrylamide gel. Hepatoma P-450MCII had a specific content of 7.38 nmol/mg protein and a minimum molecular weight of 50,000. The carbon monoxide-reduced difference spectral peak of hepatoma P-450MCI was at 446.5 nm, whereas the peak of hepatoma P-450MCII was at 451 nm. In the reconstituted system, hepatoma P-450MCI catalyzed 3-hydroxylation of benzo[a]pyrene and O-deethylation of 7-ethoxycoumarin, but showed low activities for N-demethylation of benzphetamine and aminopyrine, O-demethylation of p-nitroanisole, and p-hydroxylation of aniline. On the other hand, hepatoma P-450MCII did not catalyze hydroxylation of any of the substrates tested. By Ouchterlony double-diffusion analysis, hepatoma P-450MCI was immunologically indistinguishable from rat liver cytochrome P-450c, but hepatoma P-450MCII was distinct from hepatoma P-450MCI and rat liver cytochrome P-450c. Peptide maps of hepatoma P-450MCI and rat liver cytochrome P-450c after proteolysis with Staphylococcus aureus V8 protease demonstrated the similarity of the two cytochromes P-450.

Animals↗

Purification of antigenic peptide from murine hepatoma cells recognized by Class-I major histocompatibility complex molecule-restricted cytotoxic T-lymphocytes induced with B7-1-gene-transfected hepatoma cells.

BACKGROUND/AIM: It has been reported that expression of costimulatory molecules, such as B7, on tumors is essential for priming tumor-specific cytotoxic T-lymphocytes (CTLs). Here, we have attempted to induce murine hepatoma-specific CTLs by immunizing with the B7-1-gene-expressing hepatoma cells, and to identify the epitope(s) presented on the hepatoma cells. METHODS: The B7-1-gene encoding plasmid was transferred into the murine hepatoma cell line, Hepa1-6. Syngeneic C57BL/6 mice were immunized with the B7-1-transfected cells via various routes to prime CTLs. The mild acid elution method was used to isolate antigenic fractions from the class-I major histocompatibility complex (MHC) molecules on the Hepa1-6 cells. Cytotoxicity was measured by standard 51Cr-releasing assay. The effect of the CTLs on hepatoma growth was evaluated in hepatoma-bearing SCID mice to which the cells were preadministered. RESULTS: A clone, termed L1, highly expressing the B7-1-gene, has been established. Killer cells generated from mice immunized intraperitoneally with L1 cells eliminated both L1 and Hepa1-6 cells, and also another syngeneic hepatoma cell line, Hepa1-clc7. The killer cells were CD8+ and the class-I MHC molecule-restricted CTLs which might recognize hepatoma-specific antigenic peptide(s) in association with the D(b)class-I MHC molecules. A functional peptide fraction was obtained from eluted fluid of the Hepa1-6 cells. In addition, intravenous preadministration of the CTLs inhibited the hepatoma growth in SCID mice. CONCLUSIONS: The hepatoma epitope-specific CTLs which suppressed hepatoma growth in vivo could be generated with the B7-1-gene-transfected hepatoma cells. These results will be useful in establishing immunotherapy against hepatocellular carcinoma.

Animals↗

Establishment of in vivo hepatoma models in rat and mouse from rodent hepatoma cell lines.

BACKGROUND: Hepatoma is one of the most common cancers in Southeast Asia and African countries. In Taiwan, it is the leading cause of death in male cancer patients. In order to examine the effect of various factors on the growth of hepatoma, in vivo hepatoma models such as carcinogen-induced hepatoma and subcutaneous implantation of hepatoma in nude mice have been used. However, there are disadvantages in these models. METHODS: Rats and mice were anesthetized by ketamine or ether, respectively. After a midline incision was made, N1S1 rat hepatoma cells were injected intrasplenically to partially hepatectomized or sham-operated rats, while BALB/c mice received intrasplenic injection of ML-2 and ML-3 mouse hepatoma cells. For direct tumor implantation, a 1mm3 N1S1 tumor piece was implanted in liver of Sprague-Dawley (SD) rat using a trocar. Animals were sacrificed at specific times after tumor implantation. Tumor incidence and the number of tumor nodules on the liver surface were recorded. Tumor samples were fixed and embedded for histological examination. RESULTS: After intrasplenic implantation of ML-2 cells, no tumor was observed on the liver in any of the 10 mice 40 days later. In comparison, rapid growth of hepatic ML-3 tumors was observed in all animals. Rat hepatoma cells RH-35, McA-RH7777 and McA-RH8994 cells did not form tumors in SD rats. The tumorigenicity of N1S1 cells in SD rats was dose-dependent on implanted tumor cells. In addition, hepatic N1S1 tumors could be obtained within a few weeks by homograft. CONCLUSIONS: We have successfully established in vivo hepatoma models in both the rat and the mouse. The murine ML-3 cells generated hepatoma in syngeneic BALB/c mice while the tumorigenicity of N1S1 cells in partially hepatectomized SD rats was dose-dependent on implanted tumor cells. These in vivo rodent models will be valuable tools for future studies of hepatoma.

Animals↗

Activities of key gluconeogenic enzymes and glycogen synthase in rat and human livers, hepatomas, and hepatoma cell cultures.

The activities of pyruvate carboxylase (PC), phosphoenolpyruvate carboxykinase (PEPCK), glucose-6-phosphatase (G6Pase), and glycogen synthetase (GS) were determined in the cancerous and in the apparently uninvolved (host) regions of livers from primary hepatoma patients as well as in normal adult human livers and human fetal livers. The activities of these enzymes were also assayed in a fairly fast-growing, 3'-methyl-4-dimethylaminoazobenzene-induced transplantable rat hepatoma and in hepatoma cell lines derived from both rat and human tumors. In the human hepatoma, as in the rat hepatoma, the activities of PC, PEPCK, and G6Pase were considerably reduced, compared to those in the host liver. The activities of both the a (glucose 6-phosphate-independent) and b (glucose 6-phosphate-dependent) forms of GS were also lower in human and rat hepatomas than in the respective host livers. Activities of PC, PEPCK, and G6Pase in the human hepatomas were often comparable with those of fetal livers. In rat and human hepatoma cells, the activities of PC, PEPCK, and G6Pase were similar to or lower than the activities in the respective hepatomas; the activities of GS a were also similar to those in the hepatoma, whereas the activities of GS b were somewhat higher.

Animals↗

Activities of some enzymes of pyrimidine and DNA synthesis in a rat transplantable hepatoma and human primary hepatomas, in cell lines derived from these tissues, and in human fetal liver.

Activites of the enzymes DNA polymerase, thymidine kinase, thymidylate kinase, thymidylate synthase, and deoxycytidylate deaminase have been measured in rat and human normal and neoplastic liver, in human fetal liver, and in cell lines derived from human hepatomas and rat transplantable hepatomas. The activities of these enzymes were increased in rat transplantable hepatomas, relative to rat normal or host liver, to a degree corresponding to the rapid growth rate of these tumors. With the exception of thymidine kinase, which did not change, the activities of these enzymes increased in human hepatomas relative to the corresponding host liver (apparently normal liver tissue from the same patient) and to human normal liver. The increases in enzyme activity observed in human hepatomas were small in comparison with those found in the rapidly growing rat hepatomas. The activities of deoxycytidylate deaminase in both human and rat liver tissues were 2 to 3 orders of magnitude higher than those of the other enzymes assayed. Activities of the enzymes of DNA synthesis in a slow-growing cell line derived from a human hepatoma were similar to those in human hepatoma tissues. In the case of rapidly growing cell lines derived from rat and human hepatomas, enzyme activities were higher than those in the corresponding tissues.

Animals↗

Retinyl palmitate, retinyl phosphate, and dolichyl phosphate of postnuclear membrane fraction from hepatoma, host liver, and regenerating liver: marginal vitamin A status of hepatoma tissue.

The retinyl palmitate content of the postnuclear membrane fraction from 10 Morris hepatomas, their host rat livers, one acetylaminofluorene-induced rat liver hepatoma, and the host liver and of regenerating rat liver was measured by reverse-phase high-pressure liquid chromatography of the chloroform:methanol extracts. Membranes from the hepatoma tissue contained less than detectable levels of retinyl acyl esters, whereas membranes from host liver tissue and regenerating liver contained levels of retinyl palmitate within normal ranges. The amount of cellular retinol-binding protein was also decreased considerably in cytosols from 9618 and 7777 hepatomas. The ratio of endogenous retinyl phosphate to the polyisoprenoid dolichyl phosphate available for mannosylation in an assay containing postnuclear membranes and guanosine dephospho[14C] mannose was decreased by a factor of 3 to 10 in hepatoma tissue. Such change in ratio was not attributable to specific changes in retinyl phosphate mannose-synthesizing activity, but it appeared to be related to the vitamin A deficiency condition of the membrane from tumors. As for membranes from vitamin A-deficient liver tissue, postnuclear membranes from rat cystic hepatocarcinoma, Morris 7777, 3924A1-1, and 5123D-1-2 transplantable rat hepatomas and guinea pig line 10 hepatoma all synthesized a mannolipid with intermediate hydrophobic properties between retinyl phosphate mannose and dolichyl phosphate mannose and not normally found in liver tissue. These alterations in patterns of lipid intermediates may be responsible for altered glycosylation of glycoproteins in neoplastic cells. In conclusion, the present investigation establishes that hepatoma cell membrane is in a status of vitamin A and of retinyl phosphate depletion, while dolichyl phosphate contents appear similar to host liver membrane.

Animals↗

Decreased RIZ1 expression but not RIZ2 in hepatoma and suppression of hepatoma tumorigenicity by RIZ1.

The distal short arm of human chromosome 1 (1p36) is commonly altered in primary hepatoma tumors and cell lines. This region includes the RIZ gene, a member of the PR (PRDI-BF1/BLIMP1 and RIZ homology) domain family of transcription factors. An unusual feature of this family is the yin-yang involvement in human cancers. Two products are normally produced from a PR family member which differ by the presence or absence of the PR domain; the PR-plus product is disrupted or underexpressed whereas the PR-minus product is present or overexpressed in cancer cells. The PR-plus product RIZ1 is a candidate tumor suppressor because it can induce G(2)/M arrest and/or apoptosis and is commonly underexpressed in breast cancer. Here, we have investigated the role of RIZ in hepatoma. RIZ1 transcript was undetectable in 80% of hepatoma cell lines (8 of 10 lines examined). RIZ1 expression was also decreased in hepatoma tumor specimens. In contrast, RIZ2 transcript was uniformly present in all samples examined. Adenovirus-mediated RIZ1 expression in hepatoma cell lines caused cell cycle arrest in G(2)/M and/or programmed cell death. RIZ1 expression also suppressed tumorigenicity of hepatoma cells in nude mice. Our observations reinforce the yin-yang notion of RIZ gene products in human cancer and suggest a RIZ1 tumor suppressor role in hepatoma.

Animals↗

Inhibitory effects of (-)-epigallocatechin gallate on spontaneous hepatoma in C3H/HeNCrj mice and human hepatoma-derived PLC/PRF/5 cells.

The inhibitory effect of (-)-epigallocatechin gallate (EGCG), a main constituent of Japanese green tea, on spontaneous hepatoma in C3H/HeNCrj mice was investigated. A total of 72 mice were divided into three groups; the control group without EGCG, and two experimental groups receiving 0.05% (w/w) or 0.1% EGCG in drinking water. EGCG reduced the incidence of hepatoma-bearing mice from 83.3% (control) to 56.0% (0.05% EGCG) and 52.2% (0.1% EGCG), and also reduced the average number of hepatomas per mouse from 1.83 (control) to 0.72 (0.05% EGCG) and 0.91 (0.1% EGCG) at week 65. Ridit analysis of the distribution of the number of hepatomas in each group revealed that EGCG significantly increased the rate of mice without hepatoma in the two EGCG groups as compared to the control. EGCG did not affect body weight gain, food consumption or any serum biochemical parameter. EGCG inhibited the growth and secretion of alpha-fetoprotein by human hepatoma-derived PLC/PRF/5 cells without decreasing their viability. These results indicate that EGCG may be a practical, nontoxic preventive agent against human hepatoma.

Animals↗

Hormonal regulation of carbamoyl-phosphate synthetase I synthesis in primary cultured hepatocytes and Reuber hepatoma H-35. Defective regulation in hepatoma cells.

Regulation of carbamoyl-phosphate synthetase I (CPS) synthesis by various hormones was compared in primary cultured hepatocytes from adult rat and in Reuber hepatoma H-35 by pulse labeling of the cells with [35S]methionine. CPS synthesis in hepatocytes was stimulated 8-fold and 5-fold by dexamethasone and glucagon respectively. CPS synthesis in hepatocytes was synergically (about 50-fold) stimulated by a combination of dexamethasone and glucagon. Less synergic stimulation was observed by combining dexamethasone with N6, O2'-dibutyryladenosine 3',5'-monophosphate (dibutyryl-cAMP) or with isoproterenol. The basal level of CPS synthesis in hepatoma cells was higher than that in hepatocytes. CPS synthesis in hepatoma cells was stimulated by dexamethasone and dibutyryl-cAMP but the extent was only 3-fold and 1.8-fold respectively. The synergic effect of combination of dexamethasone and dibutyryl-cAMP was not observed in hepatoma cells. Neither glucagon nor isoproterenol exhibited an appreciable effect on CPS synthesis in hepatoma cells. Insulin and epinephrine suppressed CPS synthesis both in hepatocytes and hepatoma cells. The effect of epinephrine was indicated to be through alpha-adrenergic receptors. The effects of insulin and epinephrine were additive on CPS synthesis both in hepatocytes and hepatoma cells.

Animals↗

Inhibitory effect of coffee on hepatoma proliferation and invasion in culture and on tumor growth, metastasis and abnormal lipoprotein profiles in hepatoma-bearing rats.

We have already reported that instant coffee powder (ICP) and ICP-loaded rat sera could suppress proliferation and invasion of rat ascites hepatoma cell line of AH109A in vitro. In this report, we examined the mechanisms for suppression of tumor cell proliferation and invasion by ICP, and the effect of ICP on in vivo tumor growth, metastasis and abnormal lipoprotein profiles in hepatoma-bearing rats. ICP, when directly added to the culture media, induced cell cycle arrest (elongation of S phase) at a lower concentration (0.3 mg/mL) and apoptosis at a higher concentration (0.6-1.2 mg/mL). ICP and ICP-loaded rat sera showed reactive oxygen species (ROS)-scavenging property and canceled the enhancement of invasive activity of hepatoma cells induced by ROS in vitro. These results suggest that ICP suppresses the proliferation by inducing cell cycle arrest and apoptosis, and the invasion by scavenging ROS and that ICP could retain these properties after their gastrointestinal absorption. The hepatoma-bearing rats were fed with a 20% casein diet (20C) or 20C supplemented with 0.1%, ICP for 14 d. Dietary ICP significantly reduced solid tumor growth and tended to reduce hepatoma metastases to lung and lymphatic nodes, suggesting that ICP could suppress tumor cell proliferation and invasion in vivo. In addition, dietary ICP significantly increased serum high-density lipoprotein (HDL)-cholesterol and tended to reduce very low-density and low-density lipoprotein (VLDL+LDL)-cholesterol, resulting in amelioration of abnormal lipoprotein profiles occurred in hepatoma-bearing rats. In conclusion, ICP has the ability to induce cell cycle arrest and apoptosis in hepatoma cells and to suppress tumor cell invasion by reducing oxidative stresses in vitro, and it could also exhibit these effects in vivo, leading to the inhibition of tumor growth and metastases.

Animals↗

Increased activity of dipeptidyl peptidase IV in serum of hepatoma-bearing rats coincides with the loss of the enzyme from the hepatoma plasma membrane.

The specific activity of dipeptidyl peptidase IV (DPP IV E.C. 3.4.14.-) in the plasma membrane of Morris hepatoma 9121 or hepatoma 7777 was 3.5% and 2.9%, respectively, of that in the plasma membrane of rat liver. The enzyme activity in the serum of hepatoma-bearing rats was 141% (hepatoma 91219) and 162% (hepatoma 7777) of the normal value. Cytochemical investigation showed that the DPP IV activity was almost completely absent from the hepatoma cell plasma membrane and was not sequestered within these cells. Indirect immunofluorescence staining with a polyclonal antibody directed against DPP IV indicated that the loss of activity was due to the absence of DPP IV molecules in the plasma membrane. The possibility that the enzyme is transferred from the membrane into the serum as a result of structural alterations is discussed.

Animals↗

Immunoaffinity purification and characterization of lipoprotein-associated coagulation inhibitors from Hep G2 hepatoma, Chang liver, and SK hepatoma cells. A comparative study.

A polyclonal antibody against a synthetic peptide corresponding to amino acids 3-25 of mature lipoprotein-associated coagulation inhibitor (LACI) was raised in rabbits. The antibody was used to study the production of LACI by Hep G2 hepatoma, Chang liver, and SK hepatoma cells, and to purify LACI from the culture media. By using an amidolytic assay for factor Xa, it was found that the culture media from these liver-derived cell lines contain inhibitors of factor Xa. In Hep G2 hepatoma culture medium, approximately 50% of Xa inhibitory activity was due to LACI. In the Chang liver and SK hepatoma culture media over 95% of the Xa inhibitory activity was due to LACI. The LACIs were purified from these media by immunoaffinity chromatography on an anti-LACI-lg-Sepharose 4B column and preparative sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The purified LA-CIs varied in molecular weight depending on whether the media were concentrated before chromatography. An Mr approximately 38,000 LACI was obtained by chromatography of unconcentrated media. Chromatography of concentrated media yielded a LACI of Mr approximately 35,000 with the same amino-terminal sequence, suggesting partial proteolysis in the carboxyl-terminal region. In addition, an Mr approximately 25,000 form of LACI was also present. The purified Mr approximately 38,000 and approximately 35,000 LACI species from the above cells possess similar specific activities when measured by an anti-Xa/amidolysis assay. To study the role of LACI in the control of coagulation, pooled human plasma was depleted of LACI antigen by immunoaffinity absorption and reconstituted with varying amounts of purified LACI to examine the effect on tissue factor (TF)-induced coagulation. LACI depletion shortens the time of TF-induced clotting of plasma and the clotting time is linearly related to the LACI concentration after reconstitution. These results suggest that LACI plays an important role in limiting TF-induced coagulation in human plasma. Comparison of the potencies of various purified LACIs in the prolongation of TF-induced coagulation revealed that LA-CIs from different sources are not equivalent. The plasma LACI, SK hepatoma LACI, and Chang liver LACI are approximately 7-, 6-7, and 1.3-fold higher in specific activity than Hep G2 hepatoma LACI in the TF-induced clotting assay when compared on an anti-Xa/amidolysis unit basis, suggesting possible differences in post-translational modification of these LA-CIs.

Carcinoma, Hepatocellular↗