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Biomedical subjects

T Hunt

Publications and source records attributed to T Hunt.

At least 127 records · Page 7Linked to original sources

A gamma camera method to monitor the use of degradable starch microspheres in hepatic arterial chemotherapy.

A gamma camera method to quantify the haemodynamic effects of degradable starch microspheres (DSM) in intra arterial hepatic therapy is described. Results are presented from ten patients with colorectal liver metastases. Intra hepatic arterio venous shunting was present in 1 patient prior to DSM and in 2 subjects after three 300 mg DSM fractions. DSM reduced the rate of flow of injectate to the lung in all cases. Conversely, an increased rate of flow of injectate to gut or spleen occurred with 300 mg fractions of DSM in 7/9 cases. Lower dose DSM fractions are indicated. At 2-3 min after DSM injection the mean fraction of the activity retained in the liver was 0.22. A DSM induced enhancement of tumour relative to normal tissue perfusion was obtained in four out of five tumour regions identified. All indices showed a wide variation between patients and between individual DSM doses, and the high incidence of extra hepatic shunting confirms the need for monitoring when using intra arterial microspheres.

Antineoplastic Agents↗

The role of cyclin synthesis, modification and destruction in the control of cell division.

This paper reviews our current knowledge of the cyclins based on observations of the oocytes and eggs of sea urchins, clams and frogs. Cyclins are proteins found in all eukaryotes whose special property is rapid destruction at specific stages in the cell cycle. The cyclins fall into three families. A-type cyclins have been found in clams, flies and frogs. B-type cyclins have been found in clams, flies, frogs, sea urchins and fission yeast. A more distantly related family of three genes is found in Saccharomyces cerevisiae. B-type cyclins appear to be required for cells to enter mitosis, and their destruction is thought to be necessary for exit from mitosis. We describe evidence in support of these ideas, and describe various conditions under which cyclin destruction is delayed or deranged. We conclude with a discussion of the relationship between the cyclins and maturation- (or M phase-) promoting factor and some ideas on how the cyclins may work.

Animals↗

Temporal regulation of cdc2 mitotic kinase activity and cyclin degradation in cell-free extracts of Xenopus eggs.

In cleaving Xenopus eggs, the cell division cycle is abbreviated to a rapid succession of S and M phases. During mitosis a number of proteins show increased phosphorylation due to the activation of a histone H1 kinase, the homologue of the cdc2+ gene product of the yeast Schizosaccharomyces pombe. We have studied the regulation of the activity of this enzyme in cell-free extracts of Xenopus eggs. In extracts of activated eggs incubated at 22 degrees C, histone H1 kinase activity shows two peaks of activation and disappearance. Activation occurs in two stages. The first stage requires protein synthesis, whereas the second does not. The second stage of activation involves post-translational activation of the kinase. Kinase activity rises to a peak and then abruptly disappears. Added sea urchin cyclin is degraded at the time of disappearance of kinase activity. The oscillation in kinase activity is then repeated, usually with lower amplitude. Post-translational activation of the kinase requires a membrane-containing particulate cellular component, whose role has yet to be defined. The kinase can still be activated in the presence of EDTA or in the presence of the ATP analogue, 6-dimethylaminopurine, which implies that phosphorylation of the kinase complex is not required for activation. Under these conditions, however, the kinase activity does not show its normal sudden disappearance, and added cyclin is perfectly stable. These observations are consistent with the idea that post-translational activation of the kinase involves protein phosphatase activity, whereas switching off the kinase requires an ATP-Mg2(+)-dependent reaction, perhaps due to protein phosphorylation

Adenine↗

Tolerance to morphine analgesia is reduced by the novel addition or omission of an alcohol cue.

A recent study demonstrated that ethanol tolerance was reduced by the presentation of a novel extraneous stimulus at the time of test. In Pavlovian terms, this phenomenon is known as external inhibition. The present study sought to determine whether a drug cue could act as an external inhibitor of tolerance. Theoretically, either the occurrence of an unexpected stimulus or the nonoccurrence of an expected one can operate to disrupt already established conditioned responses. This prediction was assessed in the present study by the novel presentation or the novel omission of a drug cue at test. Two groups of rats were made completely tolerant to the analgesic effects of morphine. During tolerance acquisition the groups were treated identically except that one group always received a dose of alcohol 15 min following morphine. At test, animals experienced either the novel introduction or the novel omission of the alcohol cue. Both manipulations led to a reduction of morphine analgesia. Beyond their theoretical importance, these results have clinical implications in view of the frequency of multiple concurrent drug abuse.

Analgesia↗

Benzodiazepine-induced hyperphagia: a test of the hunger-mimetic model.

The 'hunger-mimetic' model is a prominent explanatory account of benzodiazepine-induced hyperphagia. A salient feature of food deprivation (hunger) in laboratory animals is 'finicky' eating, or an enhanced reactivity to the palatability of food. If the hunger-mimetic model is correct, a similar finicky pattern of increased eating should be observed both in hungry (food-deprived) rats and in benzodiazepine-treated, hyperphagic rats. Two groups of rats were matched on measures of ad lib baseline intake of both a highly palatable food (sweetened condensed milk) and a food low in palatability (milk adulterated with 37.5 mg% quinine). Subsequently one group was placed on a moderate food deprivation schedule while the second group was maintained on ad lib food but was injected (IP) with 5 mg/kg chlordiazepoxide (CDP) 30 min prior to food presentation tests. Single-bottle tests indicated that while the food deprived animals exhibited a greater augmentation of eating when given the high-palatability food, the animals pretreated with CDP exhibited an indiscriminate elevation of eating across both foods. Similarly, on two-bottle choice tests the food-deprived rats exhibited an enhanced preference for the high-palatability food, whereas the CDP-treated animals did not change from baseline food preference. These results fail to support the hunger-mimetic model of benzodiazepine-induced hyperphagia. Alternative models based on a perseverative, disinhibitory action of benzodiazepines are discussed.

Animals↗

Dissociation and hypnotizability in posttraumatic stress disorder.

The authors compared the hypnotizability of 65 Vietnam veteran patients with posttraumatic stress disorder (PTSD) to that of a normal control group and four patient samples using the Hypnotic Induction Profile. The patients with PTSD had significantly higher hypnotizability scores than patients with diagnoses of schizophrenia (N = 23); major depression, bipolar disorder--depressed, and dysthymic disorder (N = 56); and generalized anxiety disorder (N = 18) and the control sample (N = 83). This finding supports the hypothesis that dissociative phenomena are mobilized as defenses both during and after traumatic experiences. The literature suggests that spontaneous dissociation, imagery, and hypnotizability are important components of PTSD symptoms.

Adult↗

Effect of carotid endarterectomy on cerebral blood flow and its response to hypercapnia.

Cerebral blood flow (CBF) was measured in 14 patients before carotid endarterectomy, 3 h after surgery and 2 days postoperatively using the intravenous xenon-133 technique. In 11 of the patients CBF was remeasured at 6 months and in 8 patients CBF and the response to hypercapnia (5 per cent CO2 in air) was measured pre-operatively and 6 months following surgery. All operations were performed using an intraluminal Javid shunt and internal carotid artery (ICA) 'stump' pressure was recorded. CBF measured at 3 h after endarterectomy revealed a postoperative cerebral hyperperfusion with significantly increased flows in both hemispheres. There was a significant correlation between carotid cross clamping time and ipsilateral hemispheric CBF increase which implied an ischaemic aetiology for the hyperperfusion and supported the routine use of an intraluminal shunt in carotid endarterectomy. Six months after surgery, CBF had returned to its preoperative value but reactivity to CO2 was significantly improved, which suggested that the operation had increased cerebral reserve.

Aged↗

Molecular cloning and characterization of the mRNA for cyclin from sea urchin eggs.

We have isolated a cDNA clone encoding sea urchin cyclin and determined its sequence. It contains a single open reading frame of 409 amino acids which shows homology with clam cyclins. RNA transcribed in vitro from this sequence was efficiently translated in reticulocyte lysates, yielding full-length cyclin. Injection of nanogram amounts of this synthetic mRNA into Xenopus oocytes caused them to mature more rapidly than with progesterone treatment. The sea urchin cyclin underwent two posttranslational modifications in the Xenopus oocytes during maturation. The first occurred at about the time that maturation became cycloheximide-resistant, when a small apparent increase in the molecular weight of cyclin was observed. The second modification involved destruction of the cyclin at about the time of white spot appearance, just as would have occurred at the metaphase/anaphase transition in the natural environment of a cleaving sea urchin embryo.

Amino Acid Sequence↗

Isolation housing decreases the effectiveness of morphine in the conditioned taste aversion paradigm.

Male Long Evans rats were obtained at 21 days of age and were housed in either an aggregated (four per double cage) or isolated (one per single cage) condition for 6 weeks. They were then placed on a fluid deprivation schedule that allowed them access to fluids for 20 min daily. This schedule was maintained for the remainder of the experiment. Following habituation, sensitivity to morphine-induced conditioned taste aversion (CTA) was compared in the differentially housed rats. On the 1st day and every 5 days thereafter the rats were presented with a 0.1% solution of sodium saccharin for the 20-min drinking period, followed immediately by an injection of morphine (0, 2.5, 5.0, 10.0, or 20.0 mg/kg). On intervening days they received water as the fluid. No drugs were given on these days. There was no difference in baseline saccharin consumption as a function of housing condition. In comparison with the isolated rats, the grouped animals were more sensitive to the CTA-inducing properties of low doses of morphine. These data strengthen the already existing evidence for the influence of the early housing environment on drug sensitivity and provide additional support for the conclusion that variability in response to a number of drugs of abuse can be reduced by environmental means. Possible mechanisms for the differences between isolation and aggregation housed rats are discussed.

Animals↗

Cyclin synthesis, modification and destruction during meiotic maturation of the starfish oocyte.

The pattern of protein synthesis in oocytes of starfish Marthasterias glacialis changes during 1-methyladenine-induced meiotic maturation. One of the newly synthesized proteins, a major 54-kDa polypeptide, was synthesized continuously after activation but was destroyed abruptly just before appearance of the polar bodies at each meiotic division. This protein thus resembles the cyclin proteins identified in cleaving sea urchin and clam embryos. RNA extracted from oocytes before and after maturation encoded virtually identical polypeptides when translated in the reticulocyte lysate. However, there was poor correspondence between the in vitro translation products and the labelling pattern of intact cells. There was no exact in vitro counterpart to the in vivo-labelled cyclin. Instead, a major polypeptide of 52 kDa was seen which appears to be a precursor of the 54-kDa form of cyclin. The 52-kDa polypeptide was identified as cyclin by hybrid arrest of translation. Cyclin mRNA is ot translated to a significant extent before oocyte activation and is present in oocytes as nonadenylated form. It becomes polyadenylated when the oocytes mature. This behavior is also seen in the case of the mRNA for the small subunit of ribonucleotide reductase, another abundant maternal mRNA whose translation is activated at maturation.

Animals↗

Differential involvement of central cholinergic mechanisms in the aversive stimulus properties of morphine and amphetamine.

Previously, it was reported that pretreatment with the centrally-acting cholinergic antagonist atropine, but not the peripherally-acting antagonist, methyl-atropine, may serve to attenuate the positive reinforcing properties of morphine and conversely, to enhance those of amphetamine as evidenced within a drug self-administration paradigm in rats. In parallel, evidence from several sources would suggest that there may be a functional relationship between the neurochemical mechanisms mediating these drugs' positive reinforcing properties and their seemingly paradoxical capacity to act as aversive stimuli, as evidenced within a conditioned taste aversion (CTA) paradigm. Accordingly, the present study undertook to examine whether a similar differential involvement of central cholinergic mechanisms established for these drugs' positive reinforcing effects may be obtained for morphine and amphetamine-induced CTA. Using a conventional CTA paradigm, animals were pretreated with either intraperitoneal (IP) atropine or methyl-atropine (0.6 mg/kg) 40 minutes prior to consuming a novel 0.1% saccharin solution. This taste stimulus was paired with IP injection of 15 mg/kg morphine or vehicle. Results showed that atropine (but not methyl-atropine) pretreatment served to attenuate the morphine CTA. In a second experiment, atropine-pretreatment failed to attenuate, and may have slightly potentiated, a CTA induced by 1 mg/kg amphetamine. Atropine pretreatment did not affect a CTA induced by the emetic agent, lithium chloride. Pretreatment with the peripherally-acting methyl-atropine had no effect on the amphetamine CTA and served, if anything, to slightly attenuate the lithium chloride CTA.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine↗

Conditioned taste aversion induced by self-administered drugs: paradox revisited.

In this paper we have reviewed the literature on Conditioned Taste Aversion (CTA) with specific attention to the "apparent paradox" in this literature. This paradox refers to the fact that drugs which are self-administered (SA) by animals and are therefore presumed to possess positive reinforcing properties are also endowed with the capacity to induce a CTA. We have argued that the CTA literature contains evidence of the existence of two qualitatively distinct types of CTA, one which is mediated by emetic agents and the other induced by SA drugs. We first provided evidence to support the notion that the traditional explanation of CTA as a function of "drug toxicity" and its resultant gastrointestinal distress does not fit the data on the nature of CTA induced by SA drugs. We proposed instead that "drug shyness" or the novelty of the drug state of these psychoactive SA drugs constitutes a better explanation of the CTA of SA drugs. We provided further evidence suggesting a functional relationship between the positive reinforcing and aversive properties of SA drugs. We have based this contention on a review of the behavioral, physiological and neurochemical data concerning the nature of CTA of SA drugs. The examination of these data reveals that the neural mechanisms underlying both the positive and aversive properties of SA drugs are the same and at the same time different from the neural mechanisms underlying the induction of CTA by emetic agents. Finally, we discussed the relevance of this interaction between the positive and aversive properties of SA drugs in the context of their abuse liability and the control they exert on drug-oriented behavior.

Animals↗