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Biomedical subjects

M Durando

Publications and source records attributed to M Durando.

5 recordsLinked to original sources

Collagen remodelling in the guinea-pig uterine cervix at term is associated with a decrease in progesterone receptor expression.

In human and guinea-pig parturition, progesterone withdrawal and estrogen action are not mediated by changes in their circulating levels. Instead, these events might be promoted by changes in the responsiveness of the uterus and cervix to progesterone and estrogen via changes in their receptors. In this study, the guinea-pig model was used to investigate whether high levels of progesterone and estrogen at term are associated with regional changes in PR and ERalpha levels in uterus and cervix. PR and ERalpha profiles were established in both subepithelium and the muscular layer of the cervix and the lower uterine horns during pregnancy, parturition and postpartum; while collagen remodelling was measured in the subepithelium. Our data showed that collagen remodelling involved in cervical ripening is temporally and spatially associated with a decrease in PR, whereas high expression of ERalpha is observed. This association was found in the subepithelium of the cervical tissue but not in the same region of the uterus. The muscular region of the cervix and uterus also present a transiently decreased expression of PR while ERalpha levels remain high. Thus, the present results indicate that, before parturition, diminished responsiveness of the cervix to progesterone might be caused by a decrease in PR levels and that this may be the mechanism of functional progesterone withdrawal. The guinea-pig was further validated as an animal model for human parturition studies.

Animals↗

Suppressed thromboxane production in endotoxin-desensitized THP-1 cells is not a result of decreased prostaglandin H synthase activity.

Pre-exposure of THP-1 cells to low concentrations of endotoxin (lipopolysaccharide, LPS) down-regulates thromboxane (Tx) A2, an arachidonic acid (AA) metabolite, production in response to a subsequent LPS stimulation. To further delineate the mechanisms of LPS-induced down-regulation of TxA2, we examined expression of prostaglandin H synthase (PGHS)-2 mRNA, changes in PGHS activity, and content of PGHS-1 and -2. Pre-exposure to LPS (1 microg/mL for 18 h to desensitize cells) inhibits production of TxB2, the stable metabolite of TxA2, in response to secondary stimulation of LPS (10 microg/mL), when compared with LPS-stimulated naive cells (p < .05, n=5). LPS (10 microg/mL) induced expression of PGHS-2 mRNA at 1 and 2 h in naive cells, but this expression was decreased in the LPS-desensitized cells. However, exogenous AA (16 microM) or phorbol myristic acid (PMA), 3 microM) stimulated greater TxB2 production in the LPS-desensitized cells than in the naive cells (p < .05). Protein content of PGHS-1 and -2 were examined by Western blot analysis, using antibodies specific for PGHS-1 and PGHS-2. Densitometric analysis demonstrated a significant increase in PGHS-2 induction in LPS-stimulated naive cells (405+/-174%) over its respective basal group (p < .05, n=5). PGHS-1 was constitutively present, but there was no significant difference in quantity between naive and LPS-desensitized basal or LPS-stimulated groups. Thus, despite the reduction in expression of PGHS-2 mRNA, these composite data demonstrate that down-regulation of PGHS activity (assessed with exogenous AA or PMA) cannot be responsible for the inhibition of AA metabolism observed in LPS desensitization.

Arachidonic Acid↗

Intracranial pressure and cerebral perfusion pressure in clinically normal equine neonates.

Intracranial pressure (ICP) and cerebral perfusion pressure (CPP) were determined in 8 clinically normal neonatal foals. After the foals oriented themselves and nursed the mares, they were sedated as necessary, and local anesthesia was provided for making the skin incisions. Using a technique similar to that used in human beings, an indwelling subdural catheter was placed to measure ICP. Carotid artery catheterization was used to measure arterial blood pressure. Cerebral perfusion pressure was calculated as the difference between mean arterial blood pressure and ICP. Intracranial pressure and CPP readings were taken twice during each 24-hour period, starting at 6 hours of age and continuing through 72 hours of age. Mean (+/- SD) ICP were 5.83 +/- 1.82, 8.81 +/- 2.06, and 9.55 +/- 1.55 mm of Hg (range, 2 to 15 mm of Hg), and mean CPP were 80.19 +/- 10.34, 75.30 +/- 10.86, and 76.80 +/- 12.59 mm of Hg (range, 50 to 109 mm of Hg) for each of the first three 24-hour periods after birth, respectively. All 8 foals had physical and neurologic examinations, CSF analysis, and computerized axial tomography evaluations. The foals manifested normal behavior during the interval of measurements, and adverse effects of the procedure were not detected during the monitoring period. Establishment of normal values for ICP and CPP are important to clinicians who have the opportunity to apply this technique for monitoring and evaluating neonatal foals with signs of CNS dysfunction.

Animals↗

Leptospiral abortion and leptospiruria in horses from the same farm.

Leptospirosis was documented as the cause of abortion in a 5-year-old mare. Leptospires were detected in tissue specimens from fetal kidneys and from placenta by histologic evaluation of silver-stained sections. Antibodies against Leptospira interrogans serovar pomona were detected in fetal serum at a titer of 1,600 by use of a microscopic agglutination test. The mare had serum titers of 6,400; 0; 400; 800; 3,200; and 6,400 to L interrogans serovars bratislava, canicola, grippotyphosa, hardjo, icterohaemorrhagiae, and pomona, respectively. A serologic survey identified titers of at least 6,400 against serovars bratislava and pomona in 5 other horses on the farm. Titers of at least 100 against serovar bratislava were detected in 53% of the horses on the farm. Leptospires were detected by direct fluorescent-antibody testing in urine samples from the mare that aborted and from 2 of the other 5 horses.

Abortion, Veterinary↗