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Biomedical subjects

L J Grimm

Publications and source records attributed to L J Grimm.

3 recordsLinked to original sources

Chronic reserpine administration selectively up-regulates beta 1- and alpha 1b-adrenergic receptors in rat brain: an autoradiographic study.

Rats were treated for 15 days with reserpine or vehicle. One day after the last treatment, animals were killed and frozen brain sections were prepared for in vitro autoradiography. Binding to beta-adrenergic receptors was measured with [125I]iodocyanopindolol, and binding selective for beta 1 and beta 2 subtypes was assessed by including non-radioactive drugs that selectively mask beta receptor subtypes. Total alpha 1-adrenergic receptor binding was measured with [3H]prazosin, while alpha 1a binding was measured with [3H]WB4101 (in the presence of unlabeled serotonin). Quantitative densitometric analysis revealed that chronic reserpine treatment caused an increase in beta binding throughout the brain, including the cortex, thalamus, amygdala, hippocampus, caudate-putamen and hypothalamus. This effect of reserpine was entirely confined to the beta 1 subtype in all regions examined. [3H]Prazosin binding (alpha 1a plus alpha 1b) was also increased after chronic reserpine in several regions of the cortex and thalamus, as well as the ventral hippocampus and caudal amygdala. No effect of chronic reserpine was seen on [3H]WB4101 binding, indicating that the effect of reserpine on alpha 1 receptors is limited to the alpha 1b subtype. The increase in alpha 1b binding after reserpine administration in rats was generally smaller and less widespread than that seen with beta 1 binding. Thus the effect of reserpine upon noradrenergic neurotransmission demonstrates a high degree of receptor specificity and regional selectivity.

Animals

Electroconvulsive shock differentially increases binding to alpha-1 adrenergic receptor subtypes in discrete regions of rat brain.

Quantitative in vitro autoradiographic methods were used to examine for the effect of repeated administration of electroconvulsive shock (ECS) on binding to subtypes of the alpha-1 receptor in rat brain. Rats were treated once daily for 10 d with ECS or sham ECS, then killed, and brains were removed and sectioned for autoradiographic analysis. Total alpha-1 binding (including both alpha-1a and alpha-1b subtypes) was assessed with [3H]prazosin; alpha-1b binding was assessed with [3H]prazosin in the presence of 10 nM WB4 101 to mask alpha-1a binding; and alpha-1a binding was assessed with [3H]WB4 101. ECS caused a significant increase in [3H]prazosin binding in most cortical regions: this increase was confined to a band corresponding to cortical laminae I-III. Subtype analysis indicated that the increase in cortical binding was due to an increase in binding to the alpha-1b subtype. Dense alpha-1 binding was detected in most thalamic nuclei: however, only 1 small area, the parafascicular nucleus, showed a significant increase in alpha-1 binding following repeated ECS. The only other region where ECS was shown to significantly affect alpha-1 binding was the amygdala. Binding to all regions of the amygdala except the central nuclei was increased by ECS: in the lateral amygdala, this was due primarily to an increase in alpha-1b binding, while in the remaining regions the increase was primarily an alpha-1a phenomenon. Thus the effect of repeated ECS on alpha-1 binding in rat brain was found to be confined to several specific regions of the cortex, thalamus, and amygdala. Furthermore, in each of these regions, the ECS effect was limited to 1 or the other of the 2 subtypes of the alpha-1 receptor.

Adrenergic alpha-Antagonists