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Biomedical subjects

P Pour

Publications and source records attributed to P Pour.

At least 19 recordsLinked to original sources

Immunotherapy with monoclonal antibody (Mab) in pancreatic adenocarcinoma.

Conventional therapy of pancreatic exocrine cancer is disappointing. The poor prognosis of the disease challenges development of novel therapeutic strategies. We report the results of clinical trials of the monoclonal antibody (Mab) 17-1A in patients with histologically verified unresectable pancreatic exocrine cancer. No antitumor response was seen in 18 patients treated with Mab 17-1A (500 mg) admixed with 10(9) autologous mononuclear cells, and 81% of the patients developed antimouse antibody response. Combination of recombinant gamma interferon and Mab 17-1A mixed with autologous mononuclear white cells resulted in complete response of 4-mo duration in 1 out of 25 evaluable patients and unusually stable disease from 4 to 48+ mo in another 6 patients. High intermittent doses of infused Mab 17-1A did not show any objective antitumor response and caused serious anaphylaxis in two of the patients in the trial. Because examination of six pancreatic adenocarcinoma cell lines with different doses of Mab 17-1A and IL-2 failed to augment lytic activity of mononuclear effector cells against all cancer cell lines tested, there seemed to be no rationale for pursuing clinical studies with IL-2 and Mab 17-1A in either the murine or chimeric form. Attractive therapeutic approaches include active immunotherapy with immunization using idiotypic antibodies or targeted toxicity with the use of radioimmunoconjugates, particularly 125I-labeled chimeric Mab 17-1A.

Adenocarcinoma↗

Pancreatic ductal adenocarcinomas induced in Syrian hamsters by N-nitrosobis(2-oxopropyl)amine contain a c-Ki-ras oncogene with a point-mutated codon 12.

We have used the polymerase chain reaction and dideoxynucleotide sequencing to amplify and sequence exons 1 and 2 of the c-Ki-ras proto-oncogene from the normal Syrian golden hamster. Similar methods were employed to screen for the presence of point mutations in the c-Ki-ras oncogene in primary hamster pancreatic ductal adenocarcinomas (PDC) induced by N-nitrosobis(2-oxopropyl)amine (BOP). A GGT to GAT point mutation was detected in codon 12 of the c-Ki-ras gene in 10 primary hamster PDCs. This same point mutation was present in two nonclonal cell lines, PC-1 and PC-1-0, established from tumors that were produced in hamsters by subcutaneously implanting a preparation of minced BOP-induced PDC. Two clonal cell lines, Cl-3 and Cl-7, were cloned from the PC-1 cell line, and these cell lines also carried the GAT point mutation at codon 12. This point mutation was the same as that detected in greater than 75% of adenocarcinomas from the human exocrine pancreas. Thus, our findings provide further validation for the use of the BOP-induced hamster PDC model as a relevant experimental model for human pancreas cancer: not only did the hamster pancreatic ductal adenocarcinomas closely resemble their human counterpart in histopathological morphology and sequential development, but they also contained the same point mutation in codon 12 of the c-Ki-ras oncogene, as has been reported for human pancreatic adenocarcinomas.

Amino Acid Sequence↗

Proliferative changes in the prostate.

The prostate of the rat has several lobes which have variable responsiveness to estrogens and testosterone. Testosterone is a major stimulant of cell proliferation in the prostate. Chemical carcinogenesis models in the rat prostate have taken advantage of administering the carcinogen during the peak proliferative period following testosterone administration with subsequent testosterone administered to continue the proliferative stimulus. Invasive adenocarcinomas of the prostate have been induced utilizing such methods.

Aging↗

Effect of pure zinc deficiency on glucose tolerance and insulin and glucagon levels.

The effect of zinc deficiency on glucose tolerance was investigated using intragastric force feeding to obviate decreased food intake and altered eating patterns. Three groups of weanling male Sprague-Dawley rats were fed a purified zinc-deficient diet: zinc-deficient, ad libitum-fed animals (ZDA) were offered powdered zinc-deficient diet; zinc-replete, force-fed controls (ZRF) were tube fed a diet blended with water containing 25 ppm of zinc; zinc-deficient, force-fed animals (ZDF) were similarly tube fed the zinc-deficient diet. The ZRF and ZDF groups received a diet of identical amount based on the intake of ad libitum-fed, zinc-replete rats. After 8 days of feeding, the ZDF group had impaired glucose tolerance curves, yet blood insulin and glucagon levels were normal. The ZDA group had normal glucose tolerance with low insulin levels compared with the ZRF group. The islet cell morphology among the three dietary groups were similar. These results suggest that the glucose intolerance observed in ZDF rats is not due to altered blood insulin and glucagon levels but rather to peripheral resistance to insulin action.

Animals↗

Ductal metaplasia of human exocrine pancreas and its association with carcinoma.

Monoclonal antibodies to cell surface markers of human exocrine pancreas were used to establish the cytotypic expression of cells forming "tubular complexes" in pancreases from six adults without carcinoma and in the nontumorous pancreatic parenchyma of 16 pancreases with carcinoma. These cells manifested duct cell determinants. In general, the presence of cells with duct cell surface markers within the acini corresponded to the normal distribution of centroacinar cells in the 30 control human pancreases (from cadaveric donors); however, foci of abnormal acini were seen in these pancreases independent of or intermingled with the "tubular complexes." The acini in these abnormal areas were formed by a core of cells and cell processes that expressed duct cell determinants. They were partially surrounded by acinar cells and showed slight or no lumenal dilation. While the causative agent(s), the cell(s) of origin, and the regression and/or progression of these lesions are yet to be determined, the replacement of acini by the spectrum of lesions composed of cells with duct cell surface marker is suggested to constitute ductal metaplasia.

Animals↗

Test of catechol, tannic acid, Bidens pilosa, croton oil, and phorbol for cocarcinogenesis of esophageal tumors induced in rats by methyl-n-amylnitrosamine.

Catechol (CAS: 120-80-9), given in drinking water to rats, was the most effective of 5 phenols in enhancing [3H]thymidine incorporation [( 3H]dThd-l) into esophageal DNA. To test for esophageal cocarcinogenesis, groups of 30 male MRC-Wistar rats received 3 weekly ip injections of 25 mg methyl-n-amylnitrosamine [(MNAN) CAS: 13256-07-0]/kg. From the time of the first MNAN injection, each group also received catechol, tannic acid (CAS: 1401-55-4), dried leaves of Bidens pilosa L., or croton oil (CAS: 8001-28-3) (respectively, 2, 10, 50, and 2 g/kg semipurified diet), or were given 20 ip injections of 6 mg phorbol (CAS: 17673-25-5)/rat. The rats were killed after 20-45, 46-52, or 53-72 weeks (subgroups A, B, and C). In the group given MNAN alone, most esophageal papillomas developed during the first 45 weeks. Both catechol and B. pilosa significantly increased the esophageal papilloma multiplicity (No. of papillomas/rat) induced by MNAN, with a maximum tumor yield of 2.2 times that in the corresponding subgroup treated with MNAN alone. Papilloma multiplicity increased from subgroup A to subgroup C in the MNAN plus B. pilosa group but not in the MNAN plus catechol group. No tumors were induced by the test cocarcinogens given without MNAN. We concluded that a) an increased esophageal [3H]dThd-I indicates potential cocarcinogenicity and b) catechol and B. pilosa were weak esophageal cocarcinogens. These results support the view that catechol in cigarette smoke and B. pilosa as eaten in South Africa contribute to the etiology of human esophageal cancer.

Animals↗

Exocrine pancreatic secretion in the Syrian golden hamster Mesocricetus auratus--III. Effects of carcinogen administration and development of pancreas cancer.

The short- and long-term effects of the administration of the pancreas carcinogen N-nitrosobis(2-oxopropyl)amine (BOP) on pancreatic exocrine secretion were examined in Syrian hamsters with and without stimulation by secretin and pancreozymin. Protein concentration, flow rate, pH and ion content, (Na+, K+, Ca2+, Mg2+, HCO3-, Cl-, HPO4(2-) and SO4(2-)) were measured. An immediate effect of BOP is the stimulation of flow rate in females and of protein secretion in both sexes. Multiple doses of BOP significantly altered the parameters mentioned in Section 2 only in the later stages of tumorigenesis. When these animals were stimulated with secretin or pancreozymin large decreases in flow rate and protein content of secretions were observed as early as 8 weeks after BOP treatment. Insulin-like immunoreactivity and growth hormone-like immunoreactivity were detected in collected pancreatic secretions.

Animals↗

Persistence of DNA single-strand breaks and other tests as indicators of the liver carcinogenicity of 1-nitroso-5,6-dihydrouracil and the noncarcinogenicity of 1-nitroso-5,6-dihydrothymine.

The cyclic nitrosourea 1-nitroso-5,6-dihydrothymine [(NDHT) 1-nitrosodihydrothymine] was not significantly carcinogenic when it was administered for 1 year in drinking water (206 mg/liter) to MRC-Wistar rats. In acute toxicity tests, ip injection of saline solutions of 1-nitroso-5,6-dihydrouracil [(NDHU) CAS: 16813-36-8; 1-nitrosohydrouracil], a strong liver carcinogen in rats, produced only mild liver toxicity but marked focal degeneration of myocardial fibers. NDHU injected ip in water solution produced subcapsular liver damage. NDHU, but not NDHT, induced unscheduled DNA synthesis in hepatocyte primary cultures. NDHU, NDHT, and methylnitrosourea [(MNU) CAS: 684-93-5; N-methyl-N-nitrosourea], a liver carcinogen only under special conditions, were tested for their ability, when injected ip into rats, to produce liver DNA damage measured as strand breaks by alkaline sucrose gradient centrifugation. The three nitrosoureas produced similar maximum DNA damage of 2.2-3.2 strand breaks/10(8) daltons. Eighty percent of the damage due to NDHU persisted for 7 days, and the damage at that time was significantly greater than that produced by NDHT and MNU. The varying persistence of liver DNA damage may explain why NDHU, but not NDHT, is a liver carcinogen.

Animals↗

The persistence of DNA damage in the pancreas of syrian golden hamsters treated with N-nitrosobis(2-oxopropyl)-amine.

DNA damage was estimated in the liver, pancreas and salivary gland of Syrian hamsters given N-nitrosobis(2-oxopropyl)amine (BOP) by alkaline sucrose gradient centrifugation. A single BOP dose (10 mg/kg) produced in all 3 tissues extensive DNA damage that was largely repaired in the salivary gland by 4 weeks, while in the liver and pancreas, some DNA damage persisted until 4 weeks. When higher BOP doses (20 and 40 mg/kg) were used, considerable DNA damage was still evident in the pancreas, but not in the liver at 6 weeks. Greater damage persisted in hamsters given 40 mg/kg, compared with those administered 20 mg/kg.

Animals↗

Maintenance of adult hamster pancreas cells on fibroblastic cells.

The maintenance of primary cultures of adult hamster pancreatic cells on layers of irradiated C3H/10T1/2 cells was studied. Various types of pancreatic cells, acinar, islet and ductular cells could be identified in the cultures by light and electron microscopy. Morphologically the various pancreatic cells retained many differentiated characteristics of their respective in vivo cells types. Insulin production was maintained at near Day 1 levels for the 16 d in culture for which it was measured. Colonies of epithelial cells continued to grow during a 20 d culture period. It is believed that this procedure for maintaining functional and growing pancreas cells in culture may be a useful in vitro model for studying the initiation of pancreatic carcinogenesis.

Animals↗

Sex differences in the effects of retinoids on carcinogenesis by N-nitrosobis(2-oxopropyl)amine in Syrian hamsters.

Syrian hamsters were given in a single dose of N-nitrosobis(2-oxopropyl)-amine (BOP) (40 mg/kg, s.c.) and 1 week later were fed 1 of 4 retinoid types (13-cis-retinoic acid (13-cis-RA), N-ethylretinamide (ERA), 2-hydroxyethylretinamide (OH-ERA), or 4-hydroxyphenylretinamide (PRA)) each at 3 levels (0.05, 0.1, 0.2 mM/kg diet). The pancreatic carcinoma incidence was not influenced significantly by feeding retinoids. The pancreatic adenoma incidence, however, was reduced by feeding each of the retinoids to female hamsters, with the reduction varying with the retinoid fed (13-cis-RA greater than ERA and OH-ERA greater than PRA). In male hamsters increased numbers of pancreatic adenomas were observed after feeding OH-ERA and PRA. Tumors induced in other tissues were reduced by retinoids in females, but not in males. Females fed 13-cis-RA and ERA had a lower incidence of gall bladder polyps, and feeding OH-ERA reduced the liver tumor incidence. Food consumption and serum alkaline phosphatase ans aspartate amino transferase activities were not influenced by BOP or retinoid type or level. Body and pancreas weight were influenced by retinoid level, but the effects were not consistently dose-related.

Animals↗

The carcinogenicity of N-nitrosodiethanolamine, an environmental pollutant, in Syrian hamsters.

Weekly subcutaneous injections of N-nitrosodiethanolamine (NDELA) at doses of 1000, 500 and 250 mg/kg body wt for life induced tumors in Syrian hamsters which primarily affected the upper respiratory tract. The incidence of these malignant neoplasms arising exclusively from the olfactory region was between 73% (highest dose) and 35% (lowest dose). Lower numbers of neoplasms were found with decreasing frequency in the trachea, larynx and lungs. The results indicate that doses of NDELA lower than 250 mg/kg body wt may also be carcinogenic. Hence, NDELA and its precursors should be regarded as hazardous to human health.

Animals↗

Induction of benign and malignant lip tumors in Syrian hamsters by topical application of N-nitrosobis(2-oxopropyl)amine and N-nitroso(2-hydroxypropyl)(2-oxopropyl)amine.

Weekly topical application of equitoxic doses of N-nitrosobis(2-oxopropyl)amine (BOP) or N-nitroso(2-hydroxypropyl)(2-oxopropyl)amine (HPOP) to lip and/or vagina of female Syrian hamsters led to the development of papillomas and carcinomas of the lip, papillomas of the vagina, and tumors of internal organs. The relative incidence of the tumor types is affected by the dose of BOP or HPOP administered. BOP is excreted unchanged and as HPOP in the saliva of Syrian hamsters injected subcutaneously with BOP and pilocarpin. This result may help to explain preliminary observations that subcutaneously injected BOP and pilocarpin also lead to lip tumors.

Administration, Topical↗

Blood group specificity of pancreatic tumor mucin.

N-nitrosobis(2-oxopropyl)amine (BOP)-induced pancreatic adenocarcinomas in Syrian hamsters produce considerable amounts of mucin. The mucin is immunogenic in rabbits and is predominately of A blood group antigenic specificity, as determined by immunodiffusion in agar gel. Indirect immunofluorescence studies with human anti-A typing sera demonstrated bright tumor-mucin fluorescence. The mucin produced by transplantable pancreatic tumors is also of A blood group specificity. Eppley colony Syrian hamsters, randomly examined, demonstrated red cells of blood group O. They lacked the anti-A and anti-B isoagglutinins in their serum. It is emphasized that the antigenic specificity of tumor-mucin in induced pancreatic cancer might be useful for early clinical detection, and perhaps therapy, of the disease.

Adenocarcinoma↗

Induction of local epidermal papillomas and carcinoma by selected nitrosamines.

Weekly cutaneous application of N-nitrosobis (2-oxopropyl)amine (BOP) at a dose of 2 mg/application to the neck area resulted in the induction of local papillomas and carcinomas in 80% of Syrian hamsters as early as 19 weeks post-treatment. In addition, a few tumors of internal organs (predominantly in the liver) were also found. N-Nitroso(2-hydroxypropyl) (2-oxopropyl)amine (HPOP), a common metabolite of BOP and BHP, was also found to be an epidermal carcinogen at a dose of 3.8 mg/application. N-Nitrosobis(2-hydroxypropyl)amine (BHP), however, failed to induce any epidermal lesions, when applied similarly at a much higher dose level (%) mg/animal/week). In contrast to BOP and HPOP, BHP induced a high incidence of tumors in internal organs, especially pancreatic cancer, which was the only induced tumor in 5 animals. Skin absorption studies demonstrated that BHP, but not BOP is rapidly absorbed and was detectable in the blood in concentrations of up to 5.5 mug/ml as early as 15 min after carcinogen administration. The possible reasons for the differing effects of BHP and BOP upon hamster skin are discussed.

Adenocarcinoma↗

Experimental pancreatic ductal (ductular) tumors.

Pancreatic ductal (ductular) tumors similar in morphological and biological characteristics to those in man can be induced in Syrian golden hamsters by specific nitroso compounds. The short latency period and high yield of these neoplasms and their possible selective induction make this model unique for investigating many aspects of this dismal human disease. Most of these neoplasms derive from ductular cells, including centroacinar cells and islet cell precursors, and only a few appear to arise from ductal epithelium. Tumors from both cell origins share various histological characteristics with relevant human tumors. Also, in analogy to the findings in man, we have seen mixed ductular-insular and ductular-acinar cell carcinomas. With regard to etiology, it is postulated that the similarity of the carcinogen molecule to sugar facilitates its uptake into the ductular cells (islet cell precursors). The histogenesis of tumors (which indicates an intimate relationship between the exocrine and endocrine pancreas) is described, tumor etiology is discussed and a system of classifying the induced tumors proposed.

Adenocarcinoma↗

Metabolism and mutagenicity of N-nitroso-2-methoxy-2,6-dimethylmorpholine in hamsters.

N-Nitroso-2-methoxy-2,6-dimethylmorpholine (MeNDMM) was derived from the cyclic form of N-nitroso-(2-hydroxypropyl)(2-oxopropyl)amine (HPOP), a proposed proximate pancreatic carcinogen for the hamster. MeNDMM was metabolized in vivo by noninbred Syrian golden hamsters to HPOP, which was excreted in urine. In vitro metabolism produced HPOP by cytochrome P450-mediated oxidative demethylation. MeNDMM and HPOP were similarly mutagenic in the Ames Salmonella typhimurium assay, in which hamster liver preparations were used for metabolic activation. MeNDMM, due to its metabolism to HPOP, is probably also a pancreatic carcinogen in the hamster.

Animals↗