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Biomedical subjects

J Ruberte

Publications and source records attributed to J Ruberte.

25 records · Page 2Linked to original sources

Lymphatic drainage of Listeria monocytogenes and Indian ink inoculated in the peritoneal cavity of the mouse.

The lymphatic drainage of the peritoneal cavity has been investigated by intraperitoneal inoculation of an intracellular bacterium (Listeria monocytogenes) and an inert marker (Indian ink). The results reveal that both agents are transported, either after phagocytosis by intraperitoneal macrophages or in suspension in the lymph, towards the cranial sternal lymph nodes (Lymphonodi sternales craniales) of the ventral thoracic lymphocentrum (Lymphocentrum thoracicum ventrale) and to the lymph nodes of the mediastinal lymphocentrum (Lymphocentrum mediastinale), prior to systemic dissemination. This mechanism of peritoneal lymph drainage has relevance on experimental studies involving the inoculation of pathogens, and on the investigation of metastatic diffusion of neoplasms from the peritoneum.

Animals↗

[Lymphaticovenous communication in the mammary gland of the female dog].

Lymphaticovenous Communications were searched in the mammary glands of 24 bitches. Injections of indian ink into the interstice of living animals were followed after death by the filling of the veins with latex and barium sulphate. Afterwards, the used techniques were: microdissection, angiography, clarification and histological section. The results obtained would seem to prove the existence of Lymphovenous Anastomoses. The roles of these communications in the canine mammary gland neoplasia are discussed.

Animals↗

[Topography of the lymphatic collecting ducts of the mammary glands of the dog].

The topography of the lymph drainage was examined by in vivo injections of india ink into the mammary parenchyma of 73 female dogs. Only one gland was injected at a time on each side. Only the cranial abdominal mammary gland had direct drainage to the axillary as well as to the superficial inguinal nodes. The principal routes of drainage differ for each gland. The glands on each side are completely independent as regards their lymph drainage. The cranial thoracic mammary glands on each side had their own collecting duct which led to the sternal lymph nodes. The results of this study suggest to develop a new model for the surgical extirpation of mammary tumors in the bitch.

Animals↗

Diprosopia in a cat.

A diprosopic cat is described. In the head, two snouts, three eyes and two pinnae were present. The mandible was single and immobile because labial skin of both upper lips and single lower lip was partly fused. Superimposition of upper and lower dental arches was impossible and the mouths remained permanently open. Two incomplete oral cavities were present and the two tongues were joined at their base. The brain was duplicated in part. In the cranium only occipital and temporal bones were normal, the basisphenoid was bifurcated and the remaining bones were duplicated. Embryological mechanisms are discussed.

Animals↗

Transplacental transport of netobimin metabolites in ewes.

Neither netobimin (NTB) nor its metabolite albendazole (ABZ) were found in plasma after an oral administration of 20 mg/kg of NTB to pregnant ewes during the last third of gestation. ABZ metabolites, albendazole sulphoxide (ABZSO) and albendazole sulphone (ABZSO2) were found in plasma 30 min and 2 h, respectively, after administration. The maximal plasma concentration (Cmax) of ABZSO was detected at 11.6 +/- 1.0 h and for ABZSO2 at 16.5 +/- 2.3 h. The plasma levels of the latter remained constant for 36 h, and decreased as ABZSO was removed from the blood. Jugular plasma levels of both metabolites did not differ significantly from those observed in the ovarian vein, suggesting that there were no exchanges between foetal and placental tissues. Both metabolite concentrations were similar in the umbilical vein and artery and in the amniotic and allantoic fluids, their values were half the maternal plasma concentration, leading to the conclusion that there was transplacental movement of metabolites. Both metabolites reached the foetus and could be responsible for the teratogenicity of NTB in sheep.

Albendazole↗

Comparative pharmacokinetics of netobimin metabolites in pregnant ewes.

The pharmacokinetics of netobimin (NTB) metabolites has been investigated in ewes. Non-pregnant ewes and ewes in the first and last third of pregnancy were dosed orally with 20 mg kg bodyweight of NTB. Blood samples were collected from the jugular vein from 30 minutes to 72 hours after administration and plasma samples were analysed by high performance liquid chromatography. Neither NTB nor albendazole (ABZ) were detected in any of the samples analysed. No statistically significant differences were found between the pharmacokinetic parameters of albendazole suphoxide (ABZSO) and albendazole sulphone (ABZSO2) among the three groups of ewes. The peak plasma concentrations (Cmax) ABZSO and ABZSO2 were reached about 10 and 20 hours respectively after administration in all three groups. The ratios of ABZSO/ABZSO2 for Cmax and the areas under the curve (AUCzero-infinity) were 6 and 3, respectively, in each group and suggest a low rate of oxidation of sulfoxide to sulphone.

Albendazole↗

Developmental toxicity in rat fetuses exposed to the benzimidazole netobimin.

Netobimin (NTB) is a prodrug of albendazole (ABZ) and is used as a broad-spectrum anthelmintic both in human and veterinary medicine. Pregnant Sprague-Dawley rats were treated po with 50, 59.5 and 70.7 mg/kg of NTB on Gestational Day (GD) 10. The results, observed on GD 20, demonstrated that NTB induced a significant increase of resorptions. Moreover, decreased fetal body weight and an increase in skeletal malformations were observed in treated groups. We report the first study in which vascular malformations are described in rats after the administration of a benzimidazole compound. An interesting relationship between intercostal vessel and rib malformations was found.

Abnormalities, Drug-Induced↗