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Differentiation of cytotoxic adherent cells from peroxidase positive cells after intraperitoneal injection of Brucella abortus organisms.

The relations between the cytotoxic adherent cells (CAC) and the peroxidase positive adherent cells (PPAC) which appeared after i.p. injection of Brucella abortus were investigated. A kinetic study showed that PPAC preceeded CAC. Twenty-four hours after bacterial injection, almost all adherent cells stained for peroxidase and no cytotoxic activity could be recorded. Cells sampled at this moment acquired cytotoxic properties by cultivation in LPS containing medium. The treatment of the bacterial organisms by HCl or chloroform: methanol (C:M) suppressed their ability of inducing CAC but not that of inducing LPS-activatable PPAC. The substances extracted by C:M could activate PPAC into CAC in vitro. The data presented suggest that CAC differentiate from PPAC, that the recruitment of PPAC is not always followed by their transformation into CAC and that different components of the bacterial organisms might be necessary to achieve the steps of cell recruitment and maturation.

Animals

Lead distribution in the saliva and blood fractions of rats after intraperitoneal injections.

Sprague-Dawley rats were treated with 1, 2 or 3 i.p. injections of lead acetate (100 mg/kg) and sacrificed 24 h, 3 days, 7 days, 14 days and 21 days after the last injection. Lead concentration was determined by flameless AAS technique in whole blood, plasma, plasma filtrate, saliva and submaxillary gland tissue. The concentration of lead in saliva was about 5% of whole blood lead concentration and around 61% of plasma filtrate lead level. Saliva lead concentration was significantly related both to whole blood lead concentration and plasma filtrate lead concentration (r = 0.78, P less than 0.001; r = 0.80, P = 0.001 respectively). Lead was present in the submaxillary gland tissue; the amount of lead increased with increasing amounts administered.

Animals

Comparison of acute toxic effects of intraperitoneally injected nitromethane and nitroethane in rats.

Male 3-month-old Wistar rats dosed i.p. with 200 mg/kg of nitromethane or -ethane showed increased acid proteinase activity in the brain 4 h after the injection. The change was accompanied by a marginal increase in the cerebral glutathione concentration. Nitroethane caused enhanced epoxide hydrolase and UDP-glucuronosyltransferase activity in the hepatic microsomal fraction up to 48 h while 7-ethoxycoumarin o-deethylase decreased. These biochemical changes were accompanied by proliferation of smooth endoplasmic reticulum and degranulation and disorganization of the rough endoplasmic reticulum of the nitroethane-exposed liver cells. The hepatic effects of nitromethane were restricted to decreased cytochrome c reductase activity with proliferation of smooth endoplasmic reticulum. The results point at limited peroxidative damage possibly involving reduction of the nitrogroup.

7-Alkoxycoumarin O-Dealkylase

The influence of l-methionine-d,l-sulfoximine on the labelling of acid soluble fraction and proteins of the brain cortex after intraperitoneal injection of 14c-leucine.

Methionine sulfoximine (MSO) inhibits the labelling of the acid soluble fraction and proteins of the brain cortex after the injection of 14C-leucine. The inhibition takes place even during the early stages after the injection of MSO, when no symptoms of paroxysms are observable. The action of MSO on the labelling of the acid soluble fraction and proteins in the brain cortex is obviously different from that in the kidney and liver. Whereas in the brain tissue MSO markedly influences the labelling of the free amino acid pool, in the kidney and liver it seems primarily affect the protein synthetic mechanisms. Also no decrease in labelling of the plasma acid soluble fraction was found on mice, treated with MSO. Experimental data support the idea, that the changes in the metabolism of proteins in the brain are not connected with the onset of the paroxysmal period.

Animals

Oxidative DNA base damage in renal, hepatic, and pulmonary chromatin of rats after intraperitoneal injection of cobalt(II) acetate.

DNA base damage was studied in renal, hepatic, and pulmonary chromatin of male and female F344/NCr rats that had been given either 50 or 100 mumol of Co(II) acetate/kg body wt in a single ip dose and killed 2 or 10 days later. Control rats received 200 mumol of sodium acetate/kg body wt. Chromatin was isolated from organs and analyzed by gas chromatography/mass spectrometry with selected ion monitoring. The following 11 products derived from purine and pyrimidine bases in DNA were quantified: 5-hydroxy-5-methylhydantoin, 5-hydroxyhydantoin,5-(hydroxymethyl)uracil(5-OHMe-Ura),5- hyd roxycytosine(5-OH- Cyt),thymine glycol, 5,6-dihydroxycytosine,4,6-diamino-5-formamido-pyrimidine (FapyAde),2,6-diamino-4-hydroxy-5-formamidopyrimidine (FapyGua),7,8-dihydro-8-oxoadenine,2-oxoadenine, and 7,8-dihydro-8-oxoguanine. The response was organ-specific. Eight of the DNA base products in renal chromatin of Co(II)-treated rats (mostly 5-OH-Cyt and other pyrimidine products), five in hepatic chromatin (mostly FapyGua and other purine products), and two in pulmonary chromatin (5-OHMe-Ura > FapyAde) were increased by 30% to more than 200% over control levels with increasing Co(II) dose. The renal and hepatic, but not pulmonary, DNA base damage tended to increase with time. No significant differences in response were found between male and female rats. The bases determined were typical products of hydroxyl radical attack on DNA, suggesting a role for this radical in the mechanism(s) of DNA damage caused by Co(II) in vivo. Some of these bases have been shown previously to be promutagenic. The present results imply involvement of oxidative DNA base damage in Co(II)-induced genotoxic and carcinogenic effects.

Acetates

Sustained delivery of interleukin-2 from a poloxamer 407 gel matrix following intraperitoneal injection in mice.

Parenteral delivery of recombinant biologic response modifiers (BRMs) remains a challenge because of the brief intravascular half-life of most recombinant proteins and their associated rapid clearance from the circulation. Recombinant derived interleukin-2 (rIL-2) was formulated with Pluronic F-127, N.F. (poloxamer 407, N.F.) and the biological activity determined vs time at 4, 22, and 37 degrees C. As assessed by rIL-2-induced peripheral blood lymphocyte (PBL) uptake of [3H]thymidine, storage of rIL-2/poloxamer 407 (33% w/w) for 72 hr at 4 and 22 degrees C did not result in an overall negative slope of the [3H]thymidine vs time profiles. However, storage of an rIL-2/poloxamer formulation at 37 degrees C for 72 hr resulted in an approximate 15% reduction in the biological activity as assessed by [3H]thymidine incorporation. As assessed by bioassay ([3H]thymidine uptake), the cumulative percentage rIL-2 released in vitro at 22 degrees C after 8 hr from rIL-2/poloxamer 407 matrices containing either 30% (w/w) or 35% (w/w) poloxamer 407 was 81.8 +/- 1.7 and 82.1 +/- 4.7%, respectively. When ELISA was used to determine the amount of rIL-2 released vs time, the corresponding values for the cumulative percentage rIL-2 released were 82.6 +/- 10.1 and 40.9 +/- 8.8%. Cytotoxicity of rIL-2 stimulated PBLs cultured with poloxamer 407 (0.17%, w/w) toward malignant Daudi cells was significantly (P less than 0.05) enhanced compared to controls. Finally, mice injected with the rIL-2/poloxamer 407 formulation (1 x 10(5) U/inj. q.d. x 3 days) demonstrated a bioequivalent effect of rIL-2-induced natural killer (NK) cell activity in vitro toward malignant murine YAC-1 cells at one-half the standard exogenously administered dose of rIL-2 known to generate enhanced NK lytic activity in mice (1 x 10(5) U/inj. b.i.d. x 3 days). No untoward systemic side effects were observed for mice injected i.p. with polymer vehicle alone (30%, w/w) (0.15 ml q.d. x 3 days), pH 7 phosphate-buffered saline (PBS) (0.15 ml q.d. x 3 days), rIL-2 formulated with poloxamer 407 (30%, w/w) (1 x 10(5) U/0.15 ml q.d. x 3 days and 0.5 x 10(5) U/0.15 ml q.d. x 3 days), or rIL-2 dissolved in PBS (1 x 10(5) U/0.15 ml b.i.d. x 3 days).(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Induction of mesothelioma by intraperitoneal injections of ferric saccharate in male Wistar rats.

Iron appears to play a major role in catalysing free radical production, leading to lipid peroxidation and DNA damage. We, therefore, investigated the effect of colloidal iron deposited in the peritoneum. Wistar male rats were given either ferric saccharate, ferric saccharate and nitrilotriacetic acid (NTA), NTA or saline. NTA was shown previously to 'free' iron to promote lipid peroxidation and an iron chelate of NTA is known to be carcinogenic to the kidney. Iron at a dose of 5 mg kg-1 day-1, and saline at a dose of 0.5 ml day-1 were injected i.p. for 3 months. NTA at a dose of 83.5 mg kg-1 day-1 was give i.p. for 5 months. All the rats were killed about a year later for histological examination. In nine of the 19 rats treated with ferric saccharate, mesothelial tumors were induced in the serosa of the tunica vaginalis or the length of the spermatic cord. Among rats treated with ferric saccharate and NTA, seven had localised mesotheliomas in the above locations and six had wide-spread peritoneal mesotheliomas. No mesothelial tumors developed in either NTA treated or saline treated rats. No pleural mesotheliomas were found in any group. These findings add to the evidence that iron is involved in some carcinogenic processes.

Animals

Comparative toxicity and tissue distribution of antimony potassium tartrate in rats and mice dosed by drinking water or intraperitoneal injection.

Antimony potassium tartrate (APT) is a complex salt that until recently was used worldwide as an antischistosomal drug. Treatment was efficacious only if APT was administered intravenously to humans at a near lethal total dose of 36 mg/kg. Because unconfirmed epidemiologic studies suggested there might be an association between APT treatment and bladder cancer, we initiated prechronic toxicity studies with the drug to select a route of administration and doses in the event that chronic studies of APT were needed. The toxicity and concentration of tissue antimony levels were compared in 14-d studies with F344 rats and B6C3F1 mice administered APT in the drinking water or by ip injection to determine the most appropriate route for longer term studies. Drinking water doses estimated by water consumption were 0, 16, 28, 59, 94 and 168 mg/kg in rats and 0, 59, 98, 174, 273, and 407 mg/kg in mice. APT was poorly absorbed and relatively nontoxic orally, whereas ip administration of the drug caused mortality, body weight decrements, and lesions in the liver and kidney at doses about one order of magnitude below those in drinking water. Because of these data and the dose-related accumulation of antimony in the target organs, an ip dose regimen was selected for subsequent studies. Both sexes of F344 rats and B6C3F1 mice were given 0, 1.5, 3, 6, 12, and 24 mg/kg doses of APT every other day for 90 d by ip injection. There were no clinical signs of toxicity nor gross or microscopic lesions in mice that could be attributed to toxicity of APT, although elevated concentrations of antimony were detected in the liver and spleen of mice. Rats were more sensitive than mice to the toxic effects of APT, exhibiting dose-related mortality, body weight decrements, and hepatotoxicity. The concentrations of antimony measured in liver, blood, kidney, spleen, and heart of rats were proportional to dose, but there were no biochemical changes indicative of toxicity except in the liver. Hepatocellular degeneration and necrosis occurred in association with dose-related elevations in activities of the liver-specific serum enzymes sorbitol dehydrogenase and alanine aminotransferase. By alternating the site of abdominal injection and the days of treatment, mesenteric inflammation at the site of administration was minimized in the rats and mice, indicating that the ip route would be suitable for chronic studies.(ABSTRACT TRUNCATED AT 400 WORDS)

Administration, Oral

Transabdominal lymphography after intraperitoneal injection of Rous virus in newborn rats.

Newborn rats were inoculated in the peritoneal cavity with Rous sarcoma virus (Schmidt-Ruppin strain). They were studied lymphographically and histologically after various intervals of time. As a result of lesions of the lymph vessels and nodes, the lymphatic drainage of the peritoneal cavity was increasingly impaired. Pleural effusion developed as a result of leakage through the walls of the lymphatics. The passage through the lymph nodes was blocked and large lymph cysts arose in the mediastinum and retroperitoneally.

Animals