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Biomedical subjects

A P Stringer

Publications and source records attributed to A P Stringer.

3 recordsLinked to original sources

Impact of psychological dynamics of stress on the peripheral benzodiazepine receptor.

In an attempt to dissociate the relative impact of psychological vs. physiological concomitants of stress on the peripheral benzodiazepine receptor (PBR), the influence of stressor controllability and predictability was investigated in rats. In addition, the effect of a purely psychological stressor, contextually conditioned fear, was examined. The response of the PBR in rats confronted with a naturalistic threat, a cat, was also tested. Various peripheral and CNS tissues were analyzed. Specific binding of [3H]Ro 5-4864 was significantly reduced in the kidneys of subjects receiving either controllable or uncontrollable shock. Similar changes were seen in the kidneys of subjects receiving either predictable or unpredictable shock. Mean [3H]Ro 5-4864 binding in lung was reduced following both predictable and unpredictable shock, but only the reduction in the predictable shock group reached significance. Controllability appeared to protect against the stress-induced reduction in [3H]Ro 5-4864 binding in lung. Contextually conditioned fear only affected PBR in the olfactory bulb, and exposure to a cat was without effect. These data suggest that the PBR responds only to potent stressors, and psychological influences on the PBR are tissue specific.

Animals

Sexual dimorphism of stress-induced changes in renal peripheral benzodiazepine receptors in rat.

Adult male and female rats were exposed to either inescapable shock or no treatment. In vitro [3H]Ro 5-4864 (4'-chlorodiazepam) binding (1 nM) to peripheral benzodiazepine receptors (PRB) in both CNS and peripheral tissues indicated no gender differences in olfactory bulb, heart, lung or adrenal gland but a significant effect was observed in renal tissue. Female rats showed an attenuated stress-induced reduction (23%) in PBR in comparison to males (55%). This difference was shown to be an alteration of Bmax and not kD by Scatchard analysis. These data are the first demonstration of a sexual dimorphism in environmentally-induced alterations in PBR.

Animals

Pentobarbital blocks the stress-induced decrease in [3H]Ro 5-4864 binding in rat kidney.

Exposure to environmental stress causes changes in the binding of [3H]Ro 5-4864 to peripheral benzodiazepine receptors (PBRs). The influence of the central nervous system (CNS) in these stress-induced modifications is unclear. The present study examined whether pretreatment with a dose-response regimen of sodium pentobarbital would impact the stress-induced reduction in renal PBR. Administration of either a sedative/ataxic (20 mg/kg) or hypnotic (60 mg/kg) dose of pentobarbital prior to stress blocks the stress-induced decrease of [3H]Ro 5-4864 binding to renal PBR in rat. These findings suggest that higher-order, supraspinal mechanisms play a critical role in marshalling the renal PBR changes in response to stress.

Animals