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Biomedical subjects

A Tucker

Publications and source records attributed to A Tucker.

At least 163 records · Page 9Linked to original sources

Isolation of pulmonary pressor substances from bovine amniotic fluid.

The pulmonary pressor activity of bovine amniotic fluid resides in substances that appear to be non-polar lipids as suggested by the various chemical and chromatographic procedures. In preliminary experiments, it was found that the pressor activities of the hexane extracts were blocked by prior administration of aspirin to the calf (1 mg/kg), suggesting that pressor effect was mediated via the prostaglandin system. The amniotic fluid lipids, however, differed from the known prostaglandins in being less polar as indicated by thin layer chromatography and in possessing greater pressor activity. It is possible, of course, that the lipids with pulmonary pressor activity participate in the metabolism of the prostaglandins.

Amniotic Fluid↗

Pulmonary vascular responsiveness in rats following neonatal exposure to high altitude or carbon monoxide.

Exposure of adult and neonatal rats to high altitude increases pulmonary vascular responsiveness during the exposure. A study was undertaken to determine if a short exposure of neonatal rats to either high-altitude or carbon monoxide (CO) hypoxia would cause persistent alterations in pulmonary vascular responsiveness postexposure. One-day-old male Sprague-Dawley rats were obtained as 16 litters of 10-12 pups each. At 2 days of age, 4 litters were exposed to CO (500 ppm) for 32 days, and 4 litters were exposed to ambient air (AIR) in Detroit (200 m). Another 4 litters were exposed to 3500 m altitude (ALT) in a chamber for 32 days, and 3 litters were exposed to ambient conditions in Fort Collins (CON, 1524 m). After the exposures, all rats were maintained at 1524 m. At 2, 40, 76, and 112 days postexposure, lungs were isolated and perfused with Earle's salt solution (+Ficoll, 4 g%). Pulmonary vascular responsiveness was assessed by dose responses to angiotensin II (AII, 0.025-0.40 micrograms) and acute hypoxia (3% O2 for 3 min). AII responses were higher in ALT vs CON rats at all ages, but no differences were noted between CO and AIR rats. Acute hypoxic responses were higher in ALT versus CON rats at 2 and 40 days postexposure, but no differences were noted between CO and AIR rats. Baseline pulmonary vascular resistance and pulmonary arterial pressure (in isolated lungs) were higher in ALT rats at all four ages compared to the other three groups. Both the ALT and CO rats displayed hypertrophy of the right ventricle (RV) and the left ventricle (LV) at the termination of treatment and elevated hematocrit. LV hypertrophy and polycythemia regressed with time, but RV hypertrophy remained significant in the ALT rats through 112 days postexposure. The results indicate that neonatal exposure to ALT, but not CO, causes a persistent increase in pulmonary vascular responsiveness and RV hypertrophy for at least 112 days after termination of the exposure.

Altitude↗

Low-dose carbon monoxide does not reduce vasoconstriction in isolated rat lungs.

Recent studies have demonstrated that nitric oxide (NO) acts as a pulmonary vasodilator when inhaled in low concentrations. Due to the physicochemical similarities between NO and carbon monoxide (CO), it was speculated that low concentrations of CO would have similar effects in the isolated rat lung. The purpose of this study was to determine the role of CO (200 and 1000 ppm) in modulating hypoxia- and angiotensin II (AII)-induced pulmonary vasoconstriction, using isolated salt-perfused lungs of normotensive (CON) or pulmonary hypertensive male rats. Pulmonary hypertensive rats (ALT), induced by simulated altitude exposure (4572 m; 430 mm Hg for 32-48 days), were studied to determine the actions of low-dose CO in a remodeled pulmonary vascular bed. Right ventricular hypertrophy and polycythemia were evident in the ALT rats, suggesting that simulated altitude exposure induced pulmonary hypertension and consequent pulmonary vascular remodeling. CO did not significantly affect pulmonary vascular responses to acute hypoxia (6% CO2, balance N2) in either CON or ALT rats. There were also no significant differences in pulmonary pressor responses to AII injections (0.2 or 0.4 micrograms) in CON or ALT lungs either immediately following or during an acute hypoxia + CO exposure. Therefore, acute low-dose CO exposure (< 1000 ppm) does not appear to attenuate pulmonary vasoconstriction in isolated rat lungs.

Angiotensin II↗

Catheterization of the subarachnoid space in rabbits using a Vascular Access Port.

A surgical technique allowing chronic access to the subarachnoid space in unanesthetized rabbits was devised using the Vascular Access Port system. Instrumentation provides the investigator with a method of measuring intracranial pressure and sampling cerebrospinal fluid in awake rabbits. The catheter is introduced into the dorsal cervical subarachnoid space at the C4-C5 intervertebral space via dorsal laminectomy and passed cranially into the cisterna magna. The access port is subcutaneously implanted in the dorsal thoracic region between the scapulas. This system reduces the potential for infection, is not easily removed by the animal, and is relatively easy to access with minimal discomfort for the animal.

Animals↗