PubMed Health⌕ Search

Biomedical subjects

C M Weghorst

Publications and source records attributed to C M Weghorst.

At least 55 records · Page 3Linked to original sources

Promotion of hepatocellular foci and adenomas by di(2-ethylhexyl) phthalate and phenobarbital in C3H/HeNCr mice following exposure to N-nitrosodiethylamine at 15 days of age.

Previous studies have shown that phenobarbital (PB), as well as another known liver tumor promoter, alpha-hexachlorocyclohexane (HCH), inhibits hepatic tumor formation in infant N-nitrosodiethylamine (NDEA)-initiated C57BL/6 x C3H/He (B6C3F1) male mice. These inconsistencies in detecting PB and HCH as tumor promoters have raised important questions on the mechanism of tumor promotion in mice, as well as the reliability of the infant B6C3F1 mouse as an initiation model in two-stage carcinogenesis experiments. Therefore, in an effort to avoid the inconsistencies associated with the B6C3F1 mouse, the present study evaluated the ability of two known hepatic liver tumor promoters, di(2-ethylhexyl)phthalate (DEHP), a peroxisome proliferator, and phenobarbital (PB), a barbiturate, to promote hepatocellular tumorigenesis in mice of the C3H/HeNCr strain initiated during infancy. At 15 days of age, male and female C3H/HeNCr mice received either a single ip injection of NDEA (5 micrograms/g body weight) or saline. At weaning (4 weeks of age), mice were divided into 3 groups and treated with either DEHP in the diet (12,000 ppm), PB in the drinking water (500 ppm), or control drinking water and diet for 24 weeks. All mice were killed at 28 weeks of age and the number and size of hepatic foci and adenomas were evaluated. Mice exposed to NDEA+DEHP or NDEA+PB showed significant increases in the number and size of hepatic tumors compared to those receiving NDEA alone. DEHP treatment in males yielded larger adenomas than those seen in PB-treated males.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenoma, Liver Cell↗

'Cold SSCP': a simple, rapid and non-radioactive method for optimized single-strand conformation polymorphism analyses.

A rapid (< 2.5 hrs) method for single-strand conformation polymorphism (SSCP) analysis of PCR products that allows the use of ethidium bromide staining is described. PCR products ranging in size from 117 to 256 bp were evaluated for point mutations and polymorphisms by 'cold SSCP' in commercially available pre-cast polyacrylamide mini-gels. Several electrophoretic parameters (running temperature, buffers, denaturants, DNA concentration, and gel polyacrylamide concentration) were found to influence the degree of strand separation and appeared to be PCR fragment specific. Use of the 'cold' SSCP technique and the mini-gel format allowed us to readily optimize the electrophoretic conditions for each PCR fragment. This greatly increased our ability to detect polymorphisms compared to conventional, radioisotope-labeled 'hot' SSCP, typically run under two standard temperature conditions. Excellent results have been obtained in resolving mutant PCR fragments from human p53 exons 5 through 8, human HLA-DQA, human K-ras exons 1 and 2, and rat K-ras exon 3. Polymorphisms could be detected when mutant DNA comprised as little as 3% of the total gene copies in a PCR mixture. Compared to standard 'hot' SSCP, this novel non-isotopic method has additional advantages of dramatically increased speed, precise temperature control, reproducibility, and easily and inexpensively obtainable reagents and equipment. This new method also lacks the safety and hazardous waste management concerns associated with radioactive methods.

Animals↗

Low frequency of H-ras activation in naturally occurring hepatocellular tumors of C3H/HeNCr mice.

Previous reports from several laboratories have consistently shown that approximately 30% of spontaneous hepatocellular adenomas and 70-80% of spontaneous hepatocellular carcinomas found in aged B6C3F1 [C57BL/6 (liver tumor resistant) x C3H (liver tumor susceptible)] male mice contain one of three missense point mutations in codon 61 of the H-ras oncogene, CAA-->AAA, CGA or CTA. Irrespective of subline, the C3H mouse, the paternal parent strain of the B6C3F1 hybrid, is more susceptible to spontaneous liver tumorigenesis than the B6C3F1 mouse. However, the role of H-ras in the pathogenesis of hepatocellular tumors in C3H mice is less clear, as widely different frequencies of activation of this gene, but by the same point mutations in codon 61, have been reported by various laboratories. The present study was undertaken to characterize H-ras involvement in hepatocellular tumors of aged C3H/He mice from the NCI-Frederick Cancer Research and Development Center Colony (C3H/HeNCr). Oncogene activation was evaluated in 45 C3H/HeNCr hepatocellular tumors by the NIH 3T3 transfection assays, and point mutations in the H-ras oncogene were detected and characterized in DNA fragments amplified by PCR, using dot blot hybridization analysis with mutation-specific oligonucleotide probes and direct dideoxy sequencing of PCR products. The only transforming gene detected in these tumors by NIH 3T3 transfection was H-ras. Only 17% (1/6) of spontaneous carcinomas and 8% (3/39) of spontaneous adenomas contained transforming H-ras sequences, each with a point mutation in codon 61. In all four cases with H-ras mutations, mutated sequences comprised a minor fraction of total H-ras gene copies in DNA extracted from primary tumors. H-ras mutations thus appear to have arisen relatively late in the pathogenesis of the neoplasms. For comparison, sections of formalin-fixed, paraffin-embedded hepatocellular tumors that occurred in untreated B6C3F1 hybrid mice sired by C3H/HeNCr males were assayed for the same H-ras mutations by PCR and dot blot hybridization. Nine of 13 such tumors (4/6 carcinomas, 5/7 adenomas) were positive. The overall difference in frequency of H-ras codon 61 mutations in hepatocellular tumors in C3H/HeNCr (4/45) versus B6C3F1 (9/13) was highly significant (P = 0.000035, Fisher's exact test). These data indicate that point mutations in H-ras do not generally play a major or an initiating role in spontaneous hepatocarcinogenesis of inbred C3H/HeNCr mice and contrast with the high rate of ras mutations in liver tumors of the B6C3F1 hybrid.

3T3 Cells↗

Cell proliferation not associated with carcinogenesis in rodents and humans.

Cell proliferation has often been found to be associated with carcinogenesis in rodents and humans at different stages of the multistage carcinogenesis process. The multistage process includes initiation, promotion, and progression phases. At each phase, increasing the normal level of cell turnover of target cells may enhance carcinogenesis. However, we present evidence that normal levels of cell turnover, or increasing the rate of cell turnover at these different stages, do not necessarily lead to enhanced carcinogenesis. In normal tissues, the length of the cell cycle depends on the age of the host and varies from tissue to tissue. Tissues with normal short cell cycles, such as intestine and bone marrow, do not show a high rate of spontaneous tumors in most species. Cells with higher turnover should be more susceptible to carcinogens at the initiation stage of carcinogenesis if cell proliferation per se causes cancer and if these cells or their progeny survive. Cancer in humans is more often associated with specific etiological factors rather than with the natural proliferative rate of specific tissues. For many tissues of humans and rodents, age-related diseases develop in a progressive, irreversible manner. Often, naturally occurring chronic degenerative and inflammatory changes in a tissue (e.g., kidney, liver, heart, reproductive tract) lead to chronic regeneration of the damaged tissue. Yet, cancer is rarely found in these tissues. In rodent carcinogenesis experiments, chronic toxic lesions, accompanied by increases in normal levels of cell turnover, have sometimes been observed in target organs of nongenotoxic carcinogens. More often, however, organ-specific nongenotoxic toxins are not carcinogens. These toxins include compounds toxic for the liver, kidney, and nasal cavity. In 19 inhalation bioassays conducted by the National Toxicology Program, 5/5 nasal carcinogens and 12/14 nasal noncarcinogens caused nasal lesions usually associated with chronic cell proliferation. Although cell proliferation may contribute to multistage carcinogenesis, cell proliferation is not necessarily a tumor promoter or cocarcinogen.

Aging↗

Further evidence of the tumor-suppressive effects of cadmium in the B6C3F1 mouse liver and lung: late stage vulnerability of tumors to cadmium and the role of metallothionein.

Previously, we studied the ability of cadmium to initiate or promote tumors in B6C3F1 mice and, contrary to expectation, found that cadmium inhibited development of N-nitrosodiethylamine (NDEA)-initiated and sodium barbital-promoted liver tumors. In this study, the time course of cadmium inhibition of NDEA-initiated tumor formation was studied. A single dose of NDEA (90 mg/kg i.p.) was given at 5 weeks of age (time 0) followed by cadmium (1000 ppm) in drinking water from 2 to 48, 4 to 48, 8 to 48, 16 to 48 and 32 to 48 weeks. The study ended at 48 weeks. NDEA-induced elevations in liver tumor incidence (22 tumor-bearing mice/25 total) over control (5/25) were prevented by cadmium regardless of the period of administration (NDEA + cadmium: 2-48 weeks, 2/25; 4-48 weeks, 1/25; 8-48 weeks, 1/25; 16-48 weeks, 2/25; 32-48 weeks, 6/24). Cadmium alone (2-48 weeks) eliminated (0/25) spontaneously occurring liver tumors (5/25). NDEA-induced lung tumor incidence (25/25) and multiplicity (7.28 tumors/lung) were also reduced by cadmium (maximal decreases 28% and 80%, respectively). Some evidence of a specific deficiency of metallothionein in tumor cells was seen immunohistologically in NDEA-induced hepatic lesions and pulmonary lesions. These results indicate that cadmium prevents or reduces tumor formation in the B6C3F1 mouse liver and lung regardless of the exposure interval and apparently by cell-specific cytotoxicity. Auxiliary studies indicated that in mice bearing multiple liver foci resulting from NDEA treatment there was a marked reduction in basal metallothionein levels and in response to zinc induction.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Progressive atypia in spontaneous and N-nitrosodiethylamine-induced hepatocellular adenomas of C3H/HeNCr mice.

The progression of hepatocellular adenomas to carcinomas has been less well documented in mice than in rats. We studied progression of spontaneous and chemically induced hepatocellular adenomas in male C3H/HeNCr mice by image analysis. Spontaneous lesions in 15, 18 and 21 month old untreated male C3H/HeNCr mice and experimentally induced lesions were examined. Experimental group 1 received a single i.p. injection of N-nitrosodiethylamine (DEN) (5 mg/kg body wt) at 15 days of age. Groups 2 and 3 were injected a second time with DEN at 15 or 20 weeks of age (75 mg/kg body wt), with interim sacrifices at 11, 16 and 34 weeks after the second DEN injection. Atypia in adenomas were classified into four grades according to cell size, tinctorial changes, cellular pleomorphism and trabecular pattern. At earlier stages of the neoplastic process (11 or 16 weeks after the second DEN dose), most adenomas were well-differentiated lesions with no atypia or focal grade 1 or 2 atypia. At later stages (34 weeks after the second DEN dose), a large proportion of hepatocellular tumors were classified as adenoma with grade 3 atypia or carcinoma. The proportion of carcinomas in mice treated with a second dose of DEN at 20 weeks of age was significantly higher than in mice treated with a single dose of DEN or in mice given a second dose of DEN at 15 weeks. A positive correlation was found between increase in the size of lesions and increased atypia in both spontaneous and DEN-induced lesions and with age for spontaneous tumors. These results support the hypothesis that mouse hepatocellular adenomas are truly neoplastic lesions in different stages of progression toward malignancy.

Aging↗

Anticarcinogenic effects of cadmium in B6C3F1 mouse liver and lung.

The B6C3F1 mouse liver has been widely used for the evaluation of carcinogenic or tumor promoting efficacy of various organic compounds, although little is known about the actions of metallic carcinogens in this system. Thus, the ability of cadmium to initiate or promote tumors in B6C3F1 mouse liver was studied. In promotion studies, diethylnitrosamine (DEN; 90 mg/kg, ip) was given as an initiator to 5-week-old mice followed 2 weeks later by 500 or 1000 ppm of cadmium in drinking water for 50 weeks. DEN caused an elevation of liver tumor incidence (13 tumor bearing mice/45 total) over control (1/48) which was prevented by cadmium (DEN + 500 ppm cadmium, 3/42; DEN + 1000 cadmium, 0/47). Cadmium alone did not further reduce the very low spontaneous liver and lung tumor incidence at approximately 1 year of age. DEN-induced lung tumor incidence (15/45) was also reduced by cadmium (DEN + 500 ppm cadmium, 11/42; DEN + 1000 ppm cadmium, 1/47) to control levels (0/48). In initiation studies, cadmium (20 or 22.5 mumol/kg, sc) was given to 5-week-old mice (n = 30-60) 2 weeks before an established promoting regimen of sodium barbital (BB) in drinking water at 500 ppm level was begun. Barbital in drinking water was given continuously for up to 92 weeks. Such cadmium doses caused acute, focal hepatic necrosis. Mice treated with BB and killed at 97 weeks of age showed an elevation of liver tumor multiplicity (7.44 tumors/liver) over control (2.24) that was prevented by cadmium in a dose-related manner (20 mumol/kg cadmium + BB, 3.93; 22.5 mumol/kg cadmium + BB, 1.87). Cadmium alone given by injection also reduced spontaneous liver tumor multiplicity. These results indicate that cadmium inhibits tumor formation in the B6C3F1 mouse liver initiation/promotion system regardless of route of exposure or sequence of administration. The possibility exists that cadmium has a specific toxicity toward previously initiated cells within liver and lung.

Administration, Oral↗

Dose response of hepatic and renal DNA synthetic rates to continuous exposure of bromodeoxyuridine (BrdU) via slow-release pellets or osmotic minipumps in male B6C3F1 mice.

We studied the use of acute and chronic 5-bromo-2'-deoxyuridine (BrdU) administration for detection of DNA-synthesizing cells in the liver and kidney of B6C3F1 male mice. Six-week-old mice were exposed to BrdU either acutely with a single-pulse (IP) injection 1 hr before sacrifice or chronically with the use of slow-release pellets or osmotic minipumps at one of four BrdU dose rates. Pellets (2.5, 10, 25, and 50 mg) and minipumps (2.5 and 10 mg equivalents) were implanted subcutaneously on the backs of the animals 4 or 7 days before sacrifice). BrdU incorporation into DNA was determined by immunohistochemistry using an anti-BrdU antibody. Mice chronically exposed to BrdU demonstrated increased levels of nuclear labeling compared with those receiving a single-pulse injection. No time-related increases in nuclear labeling were detected in hepatocytes or renal tubule cells of mice exposed to BrdU pellets and in the kidneys of mice receiving BrdU minipumps at the 7-day compared with the 4-day time point. In some cases, the labeling indices at 7 days were significantly decreased compared with those at 4 days. In contrast, a time-related increase in nuclear labeling was seen in hepatocytes and Kupffer cells of mice exposed to BrdU minipumps. Therefore, the method used to administer BrdU chronically to the animal appears to play an important role in presenting the true proliferative scenario in cell kinetic studies. Our findings also provide evidence for an effect of BrdU on normal proliferation rates in these tissues.

Animals↗

K-ras activation occurs frequently in mucinous adenocarcinomas and rarely in other common epithelial tumors of the human ovary.

To explore the role of mutational activation of members of the ras family of cellular protooncogenes in the development of human ovarian neoplasms, a series of 37 ovarian tumors from Japanese patients was studied. These included 30 common epithelial tumors (1 mucinous tumor of borderline malignancy, 7 mucinous adenocarcinomas, and 22 nonmucinous carcinomas: 10 serous, 3 clear cell, 8 endometrioid, and 1 undifferentiated), 5 tumors of germ cell origin, and 2 sex cord/stromal cell tumors. Polymerase chain reaction was performed from selected areas of deparaffinized sections of formalin-fixed paraffin-embedded tissue, and the presence of activating point mutations in codons 12, 13, and 61 of the H-, N-, and K-ras genes was probed by dot-blot hybridization analysis with mutation specific oligonucleotides. Mutations in K-ras were also looked for by direct genomic sequencing. The overall frequency of ras gene mutations was 10/37 (27%). Mutations were detected only in K-ras, and were found in most of the mucinous tumors, including the one such tumor of borderline malignancy (6/8; 75%). In one mucinous adenocarcinoma, two mutations were detected in paraffin-embedded material that had not previously been found in high molecular weight DNA isolated from frozen tissue from the same case. K-ras mutations occurred significantly more frequently in mucinous tumors (6/8, 75%) than in serous carcinomas (2/10, 20%; P = 0.031) or in all nonmucinous types of epithelial ovarian tumors combined (3/22, 14%; P = 0.0031).

Adenocarcinoma, Mucinous↗

Liver tumor promoting ability of corn oil gavage in B6C3F1 male mice.

In chronic carcinogenic bioassays, chemicals being tested with low water solubility have been administered via corn oil gavage. The present study examined the effect of chronic corn oil gavage on hepatic tumor formation in the B6C3F1 male mouse. Mice were initiated with diethylnitrosamine (DENA) either at 15 days of age with a single i.p. injection (5 micrograms/gbw) (protocol 1) or at 4 weeks of age via the drinking water (15 mg/l) for a duration of 3 weeks (protocol 2). At weaning (protocol 1) or 8 weeks of age (protocol 2) initiated and untreated mice were administered either corn oil at a dose of 0.15 ml via gavage (once a day, 5 days/wk) or saline (0.15 ml via gavage, once a day 5 days/wk). All mice were killed at 28 weeks of age and hepatic lesions were quantitated. Only mice exposed to DENA demonstrated hepatic tumors. Mice treated with DENA (at 15 days of age) and corn oil gavage exhibited a significant decrease in the number of hepatic adenomas compared with DENA (at 15 days of age) only treated mice. No difference was noted in the number of hepatic adenomas between mice treated with DENA (at 4 wks of age) and corn oil gavage and mice exposed to DENA (at 4 wks of age) only.

Animals↗

Comparative effects of phenobarbital, DDT, and lindane on mouse hepatocyte gap junctional intercellular communication.

Gap junctional intercellular communication appears to be important in the regulation of cellular homeostasis, differentiated cell functions, and growth control in adult tissues. Interruption of intercellular communication by chemical compounds has been shown to be a sublethal response to a number of tumor promoters. The mechanism by which tumor promoters inhibit intercellular communication remains unresolved. In the present study the kinetics of inhibition of mouse hepatocyte gap junctional intercellular communication (measured by dye coupling) by three well-established hepatic tumor promoters [phenobarbital, 1,1-bis(4-chlorophenyl)-2,2,2-trichloroethane (DDT), and gamma-hexachlorocyclohexane (lindane)] are compared. All three compounds inhibited intercellular communication in a time- and dose-dependent manner in both freshly plated and 24-hr-old hepatocyte cultures. Following removal of the tumor promoters from the culture medium, intercellular communication was reestablished within 0.5 hr (phenobarbital) to 1.5 hr (DDT and lindane). Prolonged treatment of hepatocytes for up to 48 hr with the three promoters resulted in the continued inhibition of intercellular communication by lindane and DDT, but the development of refractoriness to phenobarbital-induced inhibition of intercellular communication. Concomitant treatment with combinations of the three promoters showed an additive effect of the compounds on inhibition of intercellular communication. Inhibition of intercellular communication by phenobarbital was prevented by addition of the cytochrome P450 enzyme inhibitor SKF-525A. SKF-525A had no effect on the inhibition of intercellular communication induced by lindane or DDT. Coincubation of the three promoters with the cAMP analog 8-bromo-cAMP prevented the promoter-induced inhibition of intercellular communication.

Animals↗

Infection of rat liver epithelial cells with v-Ha-ras: correlation between oncogene expression, gap junctional communication, and tumorigenicity.

The role of v-Ha-ras oncogene in tumorigenesis in an in vitro/in vivo model system was studied by investigating the expression of the Ha-ras gene, gap junctional intercellular communication, and tumorigenicity as endpoints. Infection of a Fischer 344 rat liver epithelial cell line (WB 344) with a retrovirus containing the v-Ha-ras oncogene resulted in altered cell morphology and decreased contact sensitivity. Gap junctional intercellular communication in v-Ha-ras infected WB cells (WBHa-ras), assessed by fluorescence redistribution after photobleaching (FRAP), microinjection/dye transfer, and scrape-loading/dye transfer techniques, was markedly decreased compared with the level in control WB cells. Injection of 10(7) WBHa-ras cells into the portal vein of male F344 rats caused multiple focal hepatic lesions within 1 and 2 wk, merging to large invading tumors after 3 and 4 wk. Examination of the methylation pattern of the Ha-ras gene in WBHa-ras and control WB cells showed that the infected Ha-ras gene was relatively hypomethylated in comparison to the normal cellular Ha-ras gene, indicating a greater potential for expression. There was an increased level of Ha-ras mRNA in hepatomas as compared with both adjacent nontumor liver tissue and liver tissue obtained from normal animals. Three cell lines derived from three different primary hepatic tumors induced by an injection of WBHa-ras cells in a F344 rat displayed similar growth characteristics, levels of gap junctional communication, and methylation patterns as the original WBHa-ras cells. The results of these studies have established a strong positive correlation between expression of the Ha-ras oncogene, reduced gap junctional intercellular communication, decreased contact sensitivity, and tumorigenicity of the v-Ha-ras-infected rat liver epithelial cells.

Animals↗