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Biomedical subjects

D M Atrens

Publications and source records attributed to D M Atrens.

At least 55 records · Page 3Linked to original sources

Chlorpromazine hyperalgesia antagonizes clonidine analgesia, but enhances morphine analgesia in rats tested in a hot-water tail-flick paradigm.

Seventy-six male Sprague-Dawley rats were tested in a hot-water (55 degrees +/- 0.5 degrees C) tail-flick paradigm. Tail-flick latencies (TFL) were obtained at 30 and 15 min before intraperitoneal injection of either morphine (2.5, 5.0 and 10.0 mg/kg) clonidine (25, 50, 100 and 200 microgram/kg), chlorpromazine (CPZ, 2.5 and 5.0 mg/kg), dual injections of these drug combinations, or a saline control injection. Further TFL measures were taken immediately following drug administration and thereafter at 15 min intervals. The mean of the pre-drug TFL's served as each rat's baseline. All other TFL's were calculated as percentage changes from that baseline. Mean changes were determined for each treatment group and differences between groups, at each test time, were analysed. Our results demonstrated morphine and clonidine analgesia but CPZ hyperalgesia. The drug interaction studies revealed that morphine analgesia is enhanced by co-administration of either clinidine or CPZ but that clonidine analgesia is antagonized by chlorpromazine. These data suggest that morphine and clonidine exert their analgesic effects through different neurochemical mechanisms. It is particularly interesting that the clonidine-CPZ combination should result in TFL's similar to baseline levels, even though both drugs are sedatives. The investigation emphasizes the value of chlorpromazine as a pharmacological tool in analgesic research because of its ability to induce hyperalgesia even though it is a sedating agent.

Analgesics↗

Energy balance and hypothalamic self-stimulation.

The effects of negative energy balance on self-stimulation are a matter of considerable disagreement. This disagreement undoubtedly reflects the inadequacies of the continuous reinforcement self-stimulation procedures used in this type of experimentation. The present experiment uses a new fixed-interval reinforcement shuttle-box procedure which provides indices of reward and stimulation escape that are free from the numerous performance altering effects that confound continuous reinforcement performance. Whereas 24 h of food deprivation had no effect on stimulation initiation or escape rates, 48 h of food deprivation selectively increased initiation rates. The enhancement of reward was seen over virtually the entire anterior-posterior extent of the lateral hypothalamus and occurred irrespective of the occurrence of any stimulus-bound behaviors. Thus negative energy balance appears to selectively increase the excitability of reward-related neurons in the lateral hypothalamus. The self-stimulating rats became clearly hyperphagic, yet their weight gains were not significantly different from those of controls. The self-stimulation must, therefore, have greatly increased energy expenditure. Thus, not only does energy balance affect self-stimulation, but self-stimulation appears to affect energy balance.

Animals↗

The tetracyclic antidepressant mianserin: evaluation of its blockade of presynaptic alpha-adrenoceptors in a self-stimulation model using clonidine.

It has been suggested that the tetracyclic antidepressant mianserin may be an antagonist at inhibitory presynaptic alpha-adrenoceptors. If mianserin exerted a selective antagonist effect it should produce effects that are essentially opposite to those of a selective agonist such as clonidine. This hypothesis was investigated in a shuttle-box self-stimulation model previously shown to be sensitive to alpha-adrenergic drugs. In this model a presynaptic alpha-adrenoceptor antagonist would be expected to enhance self-stimulation and to reverse the inhibitory effects of clonidine. Mianserin (2.5-4.0 mg/kg) did not enhance self-stimulation, but instead produced a selective inhibition of reward. Further, mianserin did not reverse the inhibitory effects of clonidine on self-stimulation. These data suggest that if mianserin is an antagonist of the presynaptic alpha-adrenoceptors it is not a selective antagonist. It is possible that the presynaptic alpha-adrenoceptor antagonism may be effects on postsynaptic alpha-adrenoceptors and/or on a presynaptic noradrenaline reuptake mechanism.

Adrenergic alpha-Antagonists↗

Apomorphine: selective inhibition of the aversive component of lateral hypothalamic self-stimulation.

The effects of dopamine agonists on self-stimulation are a matter of considerable dispute. Apomorphine has variously been reported to inhibit, have no effect on, or to facilitate lever-press self-stimulation. To investigate the possibility that these discrepancies may reflect peculiarities of the lever-press test situation, the present study investigated the effects of apomorphine on locomotor initiation of and escape from lateral hypothalamic stimulation in a shuttle-box. Apomorphine had relatively little effect on the initiation behavior, but it produced a large and dose-dependent inhibition of escape. These data suggest that apomorphine acts to inhibit the aversive component of lateral hypothalamic stimulation. The implications of these findings for the usefulness of the shuttle-box in investigating the pharmacology of self-stimulation are discussed.

Animals↗

alpha-Adrenergic modulation of hypothalamic self-stimulation: effects of phenoxybenzamine, yohimbine, dexamphetamine and their interactions with clonidine.

The alpha-adrenoceptor agonist clonidine (12.5--50.0 microgram/kg) produced a dose-dependent increase in the latency to initiate lateral hypothalamic stimulation. The insurmountable postsynaptic alpha-adrenoceptor antagonist phenoxybenzamine (0.2-0.8 mg/kg) had no effect on self-stimulation by itself, but potentiated the inhibitory effects of clonidine. The fact that the concurrent escape behavior to the intracranial stimulation was unchanged by either clonidine or the phenoxybenzamine-clonidine combination suggests that the inhibition is specific to the rewarding component of hypothalamic stimulation. Yohimbine (0.5--2.0 mg/kg) produced a dose-dependent increase in both response latencies. This lack of behavioral specificity may reflect yohimbine's wide range of pharmacological activity, Dexamphetamine (0.25--0.50 mg/kg) reversed clonidine's inhibition of self-stimulation reward in a specific and dose-dependent fashion. This reversal could be blocked by previous inhibition of catecholamine synthesis with alpha-methyl-p-tyrosine. These data support the concept that the alpha-adrenoceptors play a critical role in the modulation of hypothalamic self-stimulation reward. They further suggest that the inhibitory effects of clonidine on self-stimulation reward represent an agonist effect on presynaptic alpha-adrenoceptors.

Animals↗

Cardiovascular responses and lateral hypothalamic self-stimulation: anatomical differentiation and functional significance.

Heart rate was telemetrically recorded from rats self-stimulating in a two-day shuttle-box. Blood pressure changes to intracranial stimulation (ICS) were determined in acute studies with the same subjects. Stimulus-bound heart rate decreases were found only at sites in the anterodorsal aspect of the lateral hypothalamus, whereas no changes in heart rate were observed at ventral or posterior sites. In the acute experiments, stimulation of the anterodorsal sites produced either decreases or no change in blood pressure. Stimulus-bound blood pressure increases were observed only in the ventrolateral hypothalamus. The differential topographical distribution of the electrode sites producing the heart rate and blood pressure changes suggests that these two aspects of cardiovascular function are subserved by separate neural systems in the hypothalamus and that the bradycardia during self-stimulation is a primary response to ICS and is not a reflex elicited by blood pressure increases. Blockade of the bradycardia with the peripheral cholinergic blocker methyl-hyoscine HBr had no effect on the initiation of or escape from ICS indicating that peripheral parasympathetic activity is not causally related to either the rewarding or aversive components of hypothalamic ICS.

Animals↗

Specific inhibition of hypothalamic self-stimulation by selective reuptake blockade of either 5-hydroxytryptamine or noradrenaline.

The effects of two new phthalane-derived bicyclic thymoleptics on hypothalamic self-stimulation were investigated in rats. The drugs, LU 10-171 and LU 5-003 are potent and highly selective reuptake blockers of 5-hydroxytryptamine (5-HT) and noradrenaline (NA), respectively. The use of a two-way shuttle-box permitted the differentiation of specific reward modulation effects from the variety of non-specific performance changes that these drugs may produce. Selective reuptake blockade of either 5HT or NA produced a dose-dependent reduction in reward that could be clearly dissociated from any non-specific performance decrements. Besides providing direct evidence for a significant role for 5HT in the mediation of hypothalamic self-stimulation, these data show that symphy increasing transmitter availability is not a sufficient condition to enhance self-stimulation reward. It is suggested that self-stimulation is dependent on response-contingent transmitter release and that any operation that increases reward-transmitter availability in a response-independent manner should attenuate self-stimulation.

Animals↗

5-hydroxytryptamine depletion with para-chlorophenylalanine: effects on eating, drinking, irritability, muricide, and copulation.

Forty-four male rats were tested for eating, drinking, irritability, and copulation before and after intraperitonial para-chlorophenylalanine (PCPA) or control injections. Eleven of these rats were tested for muricide before and after PCPA injections (Group 1), while 18 others were tested only after PCPA injections (Groups 2). Group 1 rats received four 350 mg/kg PCPA injections spaced 6 days apart and showed hyperdipsia, weight loss, and a 24% increase in muricide. Group 2 rats received five daily 100 mg/kg PCPA injections repeated 11 days later and showed hyperdipsia and weight loss; in addition, 78% of them killed mice. Neither group showed significant changes in copulation. At the end of the experiment, t6 rats from Group 2 that were irritable and killed mice were injected intraperitonially with 5-hydroxytryptophan (80 mg/kg). Five of these rats lost their irritability and four stopped killing. The various behavioral changes were not corrleated significantly either with each other or with the degree of 5-hydroxytryptamine depletion. This tentatively suggests that PCPA may produce its effects on behavior by other means in addition to 5-hydroxytryptamine depletion.

Aggression↗

Modulation of reward and aversion processes in the rat diencephalon by neuroleptics: differential effects of clozapine and haloperidol.

The effects of clozapine and haloperidol on self-stimulation in rats were investigated in a shuttle-box that provides concurrent rate-independent indexes of the rewarding and aversive components of intracranial stimulation. The use of two concurrent measures of performance permits the differentiation of specific reward modulation effects from the variety of nonspecific performance decrements that these drugs may produce. Clozapine produced a dose-dependent reduction in reward that could be clearly dissociated from its nonspecific effects. In contrast, the apparent reduction in reward produced by haloperidol could not be dissociated from a nonspecific performance decrement. Consequently, the attenuation of self-stimulation produced by haloperidol does not indicate a direct role for dopamine in modulating reward. It is suggested that the attenuation of reward produced by neuroleptics reflects a reduction in noradrenergic transmission, whereas their nonspecific effects reflect their blockade of dopamine receptors.

Animals↗

Alpha-noradrenergic modulation of hypothalamic self-stimulation: studies employing clonidine, 1-phenylephrine and alpha-methyl-p-tyrosine.

An alpha-noradrenergic substrate of rewarding intracranial stimulation (ICS) has been hypothesized based on the observation that the alpha-antagonist phentolamine produced an inhibition of self-stimulation. The present experiment investigated the effects on hypothalamic self-stimulation of the alpha agonist clonidine in normal and in catecholamine-depleted rats. Using a shuttle-box technique that provides a rate-independent index of the rewarding and aversive components of ICS, it was demonstrated that clonidine produces a dose-dependent inhibition of reward that is clearly dissociable from any non-specific effects of the drug. The ineffectiveness of the peripheral alpha-agonist 1-phenylephrine indicates that the inhibition of reward produced by clonidine is mediated centrally. Clonidine and the catecholamine synthesis inhibitor alpha-methyl-p-tyrosine act together in a synergistic manner to greatly increase the magnitude and prolong the duration of the inhibition of reward while leaving the aversive component unaffected. These data are interpreted as supporting an alpha-noradrenergic basis of ICS reward while indicating that the aversive component of ICS is essentially independent of noradrenergic transmission.

Animals↗

Assessing the aversiveness of intracranial stimulation.

A comparison was made between rats' performance to escape intracranial stimulation in a shuttle-box, two-lever box and a single-lever Sidman avoidance situation. The former two tasks also provided concurrent rate-independent measures of the rewarding properties of ICS. The rate-independent measures of aversion (latency to escape ICS) obtained in the shuttle-box and two-lever task were significantly correlated with each other but were not significantly correlated with the lever-press rates on Sidman avoidance. A number of animals that would not lever-press to initiate ICS would perform the locomotor response very vigorously to initiate the same ICS suggesting that even rate-independent lever-press measures may not accurately reflect the motivational characteristics of ICS. These data are discussed in the context of the problem as to why animals escape rewarding ICS and it is suggested that the escape behaviour is an independent phenomenon which merits further study in its own right.

Animals↗