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Biomedical subjects

K Hakoi

Publications and source records attributed to K Hakoi.

23 records · Page 2Linked to original sources

Promotion of rat hepatocarcinogenesis by praziquantel.

Praziquantel, the widely used anti-helminthic agent, was investigated for hepatocarcinogenesis-promoting potential using a medium-term liver bioassay system for carcinogens. F344 male rats were given a single intraperitoneal injection of diethylnitrosamine (DEN, 200 mg/kg) and then starting 2 weeks later, received praziquantel in the diet at concentrations of 1.5 or 0.5%, or intragastrically at a dose of 1,500 mg/kg once a week for 6 weeks. Control groups received DEN or praziquantel alone. All rats were subjected to two-thirds partial hepatectomy at week 3 and killed at week 8. Development of glutathione S-transferase placental form-positive foci in the liver was significantly increased in terms of both number and area with the 1.5% dose, while only area was affected by the 0.5% dose. The results thus indicate that praziquantel at high dose has promoting potential in rat hepatocytic tumorigenesis.

Alanine Transaminase↗

Synergistic enhancement of glutathione S-transferase placental form-positive hepatic foci development in diethylnitrosamine-treated rats by combined administration of five heterocyclic amines at low doses.

Potential synergism among 5 heterocyclic amines at low doses in the induction of glutathione S-transferase placental form (GST-P)-positive liver cell foci was examined in an 8-week experiment using male rats initially given diethylnitrosamine (200 mg/kg, ip). The heterocyclic amines applied were 3-amino-1-methyl-5H-pyrido[4,3-b]indole (500 ppm), 2-amino-6-methyldipyrido[1,2-a:3',2'-d]-imidazole (500 ppm), 2-amino-3-methyl-9H-pyrido[2,3-b]indole (800 ppm), 2-amino-9H-pyrido[2,3-b]indole (800 ppm), and 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP, 400 ppm). Separate groups received each chemical at the dose used in earlier carcinogenicity assays (above doses), at 1/5 or 1/25 of these, or all 5 chemicals together, each at the 1/5 or 1/25 levels. The numbers and areas of GST-P-positive foci were significantly increased with all chemicals, except for PhIP, at the highest dose, the results being consistent with the reported liver carcinogenicity. In the combined treatment at the 1/5 dose levels, synergistic enhancement occurred; the numbers and areas of foci were significantly increased above the sums of individual data. However, this was not the case for the 1/25 dose groups. Although the synergism between pyrolysis products in liver carcinogenesis depended on the dose and combination of chemicals, the findings, together with those from a previous experiment using 5 different heterocyclic amines, are of particular significance since several heterocyclic amines might be simultaneously generated during cooking of foodstuffs.

Amines↗

X-ray microanalysis and electron microscopy of platinum complex in the epithelium of proximal renal tubules of the cisplatin administered rabbits.

The initial phase of endocytosis of cisplatin, an anti-tumor platinum agent, into epithelial cells of the proximal renal tubules of rabbits was studied using an X-ray microanalyser at the electron microscopic level. After one to 11 intravenous injections of cisplatin (1 mg/kg/daily), each rabbit was sacrificed with overdose of pentobarbital and small pieces of renal cortex were fixed with 4% glutaraldehyde and 2% osmium tetroxide. After binding on the surface of brush border, dense substance was taken up in endocytic vacuoles that proceeded into the center of epithelial cells leaving empty or scanty vacuoles in apical area. Both platinum and iron were detected in such intracellular dense substance. This shows the transcellular pathways of platinum complex. On the other hand, intercellular pathways were not found in this experiment.

Animals↗

Lack of carcinogenicity of daminozide, alone or in combination with its contaminant 1,1-dimethylhydrazine, in a medium-term bioassay.

The carcinogenicity of daminozide (succinic acid-2,2-dimethylhydrazide; Alar), a plant growth regulator used primarily in apple orchards, has been the subject of recent investigations by several national and international organizations because of contradictory study results. The aim of the present study was to assess the carcinogenicity of daminozide alone and in combination with 1,1-dimethylhydrazine (UDMH), its major contaminant, in a novel medium-term bioassay in Fischer 344 rats, the DEN-PH model. Rats were given diethylnitrosamine (DEN) at 200 mg/kg body weight intraperitoneally and then 2 weeks later were given daminozide at 20,000 ppm or daminozide plus UDMH at 75, 150, or 300 ppm in the diet for 6 weeks and were then killed; all rats underwent a partial (two-thirds) hepatectomy (PH) at week 3. Hepatocarcinogenic potential was assessed by comparing the number and area of preneoplastic foci positive for the glutathione S-transferase placental form (GST-P+) in the liver of treated rats, with those in controls given DEN alone. Daminozide, UDMH, and the combination were not carcinogenic in this model. This novel medium-term bioassay for carcinogenicity is considered to be practical for the rapid evaluation of both agrochemical formulations and contaminants found in agrochemicals and other compounds.

Adjuvants, Immunologic↗

Sequential morphological and biological changes in the glandular stomach induced by oral administration of catechol to male F344 rats.

Histogenesis and mechanisms of catechol-induced rat glandular stomach carcinogenesis were investigated in male F344 rats. Groups of 5 or 6 rats were treated with dietary catechol at doses of 1, 0.5, 0.1, and 0.01% for 12 hr or for 1, 2, 3, or 7 days or at a dose of 0.8% for 1, 2, 4, 12, and 24 wk; rats were then euthanatized. The initial morphological changes were edema of the gastric wall, inflammatory-cell infiltration, erosion in the pyloric region close to the duodenum, and considerable increase in apoptosis at 12 hr; later, changes included augmented DNA synthesis and cell proliferation, as evaluated by bromodeoxyuridine labeling index and thickness of mucosa, respectively, on day 1. Downward hyperplasia due to excess regeneration appeared at edges of ulceration at week 2. This lesion disappeared, and then submucosal hyperplasia appeared in the course of adenoma development. Only slight expression of c-myc or c-fos was apparent after 30-min oral administration or 1-, 3-, and 6-hr oral administration of catechol. No increase in lipid peroxide levels was evident in gastric epithelium fed catechol for 1 wk. The amount of catechol distributed in the glandular stomach and forestomach epithelium, which is not a target for carcinogenesis, did not differ 1, 3, 6, and 24 hr after a single intragastric dose of 75 mg/kg body weight. Amounts of catechol bound to tissue protein were also not specifically high in the glandular stomach. These results indicate that regenerative cell proliferation due to toxicity plays an important role in catechol-induced glandular stomach carcinogenesis. Protein binding and free radicals may not be largely responsible for the toxicity.

Administration, Oral↗