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T Dipaolo

Publications and source records attributed to T Dipaolo.

3 recordsLinked to original sources

Behavioral and biochemical evidence for a different effect of repeated administration of L-dopa and bromocriptine on denervated versus non-denervated striatal dopamine receptors.

The effect of repeated administration of bromocriptine and L-3,4-dihydroxyphenylalanine (L-DOPA) was studied behaviorally and biochemically in rats with a unilateral lesion of the nigrostriatal pathway. Groups of rats injected eight times with bromocriptine or L-DOPA significantly increased their contraversive circling. Rats receiving only two injections of bromocriptine did not. Animals receiving two injections of L-DOPA showed a slight but significant increase in circling. The affinity of the binding of [3H]spiperone to the dopamine receptors was unchanged by the lesion or the treatments, while the density of the binding was significantly modified. Chronic treatment with bromocriptine induced a significant decrease in the density of D2 dopamine receptors in the intact striata, while on the lesioned side, it remained unchanged. By contrast, chronic administration of L-DOPA induced a significant increase in density of the striatal dopamine receptors in the lesioned striata in addition to that caused by denervation, while the decrease on the intact side was not significant. It seems that contrary to the intact striatum, the lesioned side had a defective down-regulation mechanism in response to chronic treatment with a dopamine agonist. The results also show that L-DOPA was more potent than bromocriptine in inducing agonist supersensitivity in a denervated striatum. This may explain why chronic treatment with bromocriptine has a lesser tendency to induce dyskinesia in patients with Parkinson's disease.

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Estradiol, TRH and striatal dopaminergic mechanisms.

1. Estrogens have been shown to decrease the effect of apomorphine in a variety of animal behavioral models reflecting the sensitivity of striatal and mesolimbic dopamine receptors. 2. These include circling, and locomotor activity, in rats and suppression of midbrain tremor as well as lingual dyskinesia in monkeys. 3. Estradiol also increases the haloperidol-induced catalepsy in rats. Moreover estradiol increases 3H spiroperidol specific binding in the rat striatum and potentiates the increase caused by haloperidol or denervation with 6-hydroxydopamine. 4. These findings point to an action of estradiol similar to a week neuroleptic. 5. Thyrotropin-releasing hormone when injected into the head of the caudate nucleus in cats induces a head turning response which may be ipsilateral or contralateral depending upon the injection site. The response is similar to the effect of dopamine injected into the same site. 6. The effect of dopamine but not that of TRH is blocked by prior administration of haloperidol indicating that although TRH has a dopamine-like action in the caudate nucleus, it is not mediated via the dopamine terminals or the dopamine receptors.

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