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S A Thomas

Publications and source records attributed to S A Thomas.

At least 19 recordsLinked to original sources

Saturation kinetics, specificity and NBMPR sensitivity of thymidine entry into the central nervous system.

It was not until the development of a technique that could measure the brain uptake of slowly moving substrates, that the saturable transport system at the blood-brain barrier (BBB) for the pyrimidine deoxyribonucleoside, thymidine, was demonstrated. The aim of this present study was to further characterize this saturable uptake system at the blood-brain and blood-CSF barriers in terms of specificity, 6-(4-nitrobenzyl)thio-9-beta-D-ribofuranosylpurine (NBMPR) sensitivity and saturation kinetics by means of the in situ brain perfusion technique in anaesthetized guinea pigs. The results indicated that the transport system identified for [3H]thymidine can also transport other pyrimidine deoxyribonucleosides (deoxycytidine) and pyrimidine ribonucleosides (uridine) and is partially NBMPR-sensitive. In addition, guanosine, monocarboxylic acids, hexoses or amino acids were not substrates for the transport system. Further studies revealed that the transport system for [3H]thymidine at the BBB has a low affinity (Km 0.20 +/- 0.06 mM), but a relatively high capacity (Vmax 1.06 +/- 0.08 nmol min(-1) g(-1)). Overall, this study is indicative of a NBMPR-sensitive (es) facilitative transport system for [3H]thymidine and the likely presence of a NBMPR-insensitive and/or sodium-dependent transport system of the N2 (cit) type at the blood-brain and blood-CSF barriers of the guinea pig.

Affinity Labels

Norepinephrine facilitates the development of the murine sweat response but is not essential.

During development, the sympathetic neurons innervating sweat glands undergo a neurotransmitter switch from noradrenergic to cholinergic between postnatal day (P) 4, when the sympathetic neurons first contact the sweat glands, and P21. Several in vitro experiments suggest that norepinephrine (NE), produced by sympathetic neurons, stimulates sweat glands to produce a factor that then induces the phenotypic switch. We tested this hypothesis in vivo using dopamine beta-hydroxylase-deficient mice (DBH -/-), which are unable to synthesize NE and epinephrine, and tyrosine hydroxylase-deficient mice (TH -/-), which are unable to synthesize any catecholamines. The cholinergic agonist pilocarpine and electrostimulation of the sciatic nerve both elicited a sweat response in adult DBH -/- mice that was indistinguishable from the response of controls, and the cholinergic antagonist atropine effectively blocked these responses. We did note, however, a 1- to 2-week delay in the acquisition of the sweat response in DBH -/- mice. Although diminished in magnitude, a sweat response to pilocarpine was also noted in TH -/- mice at P21. Immunohistochemistry demonstrated that TH and vasoactive intestinal peptide were detectable at P14 and increased to adult levels by P21 in DBH +/- and DBH -/- mice. These observations indicate that NE is not essential for the acquisition of the cholinergic phenotype, but it may facilitate its postnatal development.

Acetylcholine

Thermoregulatory and metabolic phenotypes of mice lacking noradrenaline and adrenaline.

Adrenaline and noradrenaline, the main effectors of the sympathetic nervous system and adrenal medulla, respectively, are thought to control adiposity and energy balance through several mechanisms. They promote catabolism of triglycerides and glycogen, stimulate food intake when injected into the central nervous system, activate thermogenesis in brown adipose tissue, and regulate heat loss through modulation of peripheral vasoconstriction and piloerection. Thermogenesis in brown adipose tissue occurs in response to cold and overeating (diet induced), and there is an inverse relationship between diet-induced thermogenesis and obesity both in humans and in animal models. As a potential model for obesity, we generated mice that cannot synthesize noradrenaline or adrenaline by inactivating the gene that encodes dopamine beta-hydroxylase. These mice are cold intolerant because they have impaired peripheral vasoconstriction and are unable to induce thermogenesis in brown adipose tissue through uncoupling protein (UCP1). The mutants have increased food intake but do not become obese because their basal metabolic rate is also elevated. The unexpected increase in basal metabolic rate is not due to hyperthyroidism, compensation by the widely expressed uncoupling protein UCP2, or shivering.

Adipose Tissue

Disruption of the metallothionein-III gene in mice: analysis of brain zinc, behavior, and neuron vulnerability to metals, aging, and seizures.

Metallothionein-III (MT-III), a brain-specific member of the metallothionein family of metal-binding proteins, is abundant in glutamatergic neurons that release zinc from their synaptic terminals, such as hippocampal pyramidal neurons and dentate granule cells. MT-III may be an important regulator of zinc in the nervous system, and its absence has been implicated in the development of Alzheimer's disease. However, the roles of MT-III in brain physiology and pathophysiology have not been elucidated. Mice lacking MT-III because of targeted gene inactivation were generated to evaluate the neurobiological significance of MT-III. MT-III-deficient mice had decreased concentrations of zinc in several brain regions, including hippocampus, but the pool of histochemically reactive zinc was not disturbed. Mutant mice exhibited normal spatial learning in the Morris water maze and were not sensitive to systemic zinc or cadmium exposure. No neuropathology or behavioral deficits were detected in 2-year-old MT-III-deficient mice, but the age-related increase in glial fibrillary acidic protein expression was more pronounced in mutant brain. MT-III-deficient mice were more susceptible to seizures induced by kainic acid and subsequently exhibited greater neuron injury in the CA3 field of hippocampus. Conversely, transgenic mice containing elevated levels of MT-III were more resistant to CA3 neuron injury induced by seizures. These observations suggest a potential role for MT-III in zinc regulation during neural stimulation.

Aging

Bone mass and bone turnover in power athletes, endurance athletes, and controls: a 12-month longitudinal study.

Strain magnitude may be more important than the number of loading cycles in controlling bone adaptation to loading. To test this hypothesis, we performed a 12 month longitudinal cohort study comparing bone mass and bone turnover in elite and subelite track and field athletes and less active controls. The cohort comprised 50 power athletes (sprinters, jumpers, hurdlers, multievent athletes; 23 women, 27 men), 61 endurance athletes (middle-distance runners, distance runners; 30 women, 31 men), and 55 nonathlete controls (28 women, 27 men) aged 17-26 years. Total bone mineral content (BMC), regional bone mineral density (BMD), and soft tissue composition were measured by dual-energy X-ray absorptiometry. Bone turnover was assessed by serum osteocalcin (human immunoradiometric assay) indicative of bone formation, and urinary pyridinium crosslinks (high-performance liquid chromatography) indicative of bone resorption. Questionnaires quantified menstrual, dietary and physical activity characteristics. Baseline results showed that power athletes had higher regional BMD at lower limb, lumbar spine, and upper limb sites compared with controls (p < 0.05). Endurance athletes had higher BMD than controls in lower limb sites only (p < 0.05). Maximal differences in BMD between athletes and controls were noted at sites loaded by exercise. Male and female power athletes had greater bone density at the lumbar spine than endurance athletes. Over the 12 months, both athletes and controls showed modest but significant increases in total body BMC and femur BMD (p < 0.001). Changes in bone density were independent of exercise status except at the lumbar spine. At this site, power athletes gained significantly more bone density than the other groups. Levels of bone formation were not elevated in athletes and levels of bone turnover were not predictive of subsequent changes in bone mass. Our results provide further support for the concept that bone response to mechanical loading depends upon the bone site and the mode of exercise.

Adolescent

Disruption of the dopamine beta-hydroxylase gene in mice suggests roles for norepinephrine in motor function, learning, and memory.

Mice unable to synthesize norepinephrine (NE) were created by targeted disruption of the dopamine beta-hydroxylase (DBH) gene. DBH-deficient (DBH -/-) mice display normal home cage activity; however, they swim more slowly than their littermates, and some drown. The mutant mice also perform less well on a rapidly rotating rod, and approximately 20% do not learn to walk when the rod begins to turn. Restoration of NE with dihydroxyphenylserine eliminated these motor deficits. DBH -/- mice exhibit normal learning and retention of a passive avoidance paradigm; however, they do not master an active-avoidance paradigm as readily as controls and exhibit more rapid extinction of the active-avoidance task. DBH -/- mice learn to find the hidden platform in the Morris water maze in spite of their slower swim speed and show normal preference for the correct quadrant in the transfer test immediately after training. However, this preference declines relative to controls during the next 2 days.

Animals

Decision polarization among rehabilitation team recommendations concerning discharge housing for stroke patients.

This study sought to identify if decision polarization effects were operating in rehabilitation teams when making discharge housing recommendations for stroke patients. Using a Social Judgment Theory approach, individual clinicians were asked to nominate discharge housing for stroke patients. Teams were then assembled and clinicians repeated the task. The research was conducted at a sample of seven in-patient rehabilitation hospitals. The subjects were 74 clinicians who formed 13 teams. All subjects were volunteers, and represented the following professions: medicine, nursing, occupational therapy, physical therapy, speech therapy, and social work. A casebook which described 50 hypothetical stroke patients in terms of eight attributes was devised for the study. Subjects made housing recommendations to these patients using a 7-point scale. When compared to individual clinicians' recommendations, it was found that team housing recommendations made by all 13 teams polarized towards both more supported and, in the other extreme, more independent types of housing. However, teams placed a stronger emphasis on supported housing when compared with individual clinician decisions. This decision polarization suggests that housing recommendations made to patients may reflect team processes as well as patient needs. Rehabilitation teams should be aware of this negative team dynamic so that steps to minimize decision polarization can be taken.

Australia

Registered nurse role changes and satisfaction with unlicensed assistive personnel.

This study examines registered nurse perceptions of changes in the role of the registered nurse and registered nurse satisfaction with the use of unlicensed assistive personnel in acute hospital care delivery systems. Six major functional areas were examined: leadership, communication patterns, health teaching, evaluation activities, care management responsibilities, and unit tasks. Moderate to profound changes were reported in areas relating to the team leader role. Registered nurses reported dissatisfaction with unlicensed assistive personnel's ability to perform delegated nursing tasks, communicate pertinent information, and provide more time for professional nursing activities.

Adult

Quantification of efflux into the blood and brain of intraventricularly perfused [3H]thymidine in the anaesthetized rabbit.

Studies using choroid plexuses incubated in vitro have led to the conclusion that pyrimidine deoxyribonucleosides, such as thymidine, enter the brain predominantly through the blood-cerebrospinal fluid (CSF) barrier across the choroid plexuses. In order to examine this hypothesis, ventriculocisternal perfusions were carried out to determine the magnitude of the passage of [3H]thymidine from the CSF into the brain and blood. These experiments demonstrated that approximately 50% of the [3H]thymidine was eliminated from the CSF perfusate, some 41.6 +/- 5.6% passing into the blood and only 7.6 +/- 0.6% to the brain. Efflux into both the blood and brain was saturable, with a Km of 17.8 microM and a Vmax of 0.46 nM min-1, and partially nitrobenzylthioinosine (NBMPR) sensitive. However, a non-saturable component did exist (Kd, 13.8 microliters min-1). Overall, the rapid removal of [3H]thymidine from the CSF and its low uptake from the CSF into the brain suggests that the choroid plexuses would be an inefficient pathway for the entry of this pyrimidine deoxyribonucleoside into the brain.

Affinity Labels

Blood-brain barrier permeability and bioavailability of a highly potent and mu-selective opioid receptor antagonist, CTAP: comparison with morphine.

D-Phe-Cys-Tyr-D-Trp-Arg-Thr-Pen-Thr-NH2 (CTAP) is a cyclic, penicillamine-containing octapeptide that is structurally similar to somatostatin and displays greater antagonist potency and selectivity for mu-opioid receptors, compared with the classical mu-selective antagonist D-Phe-Cys-Tyr-D-Trp-Orn-Thr-Pen-Thr-NH2. The aim of this study was to determine whether CTAP can enter the central nervous system (CNS) by crossing either the blood-brain barrier or the blood-cerebrospinal fluid barrier (CSF) and to characterize the mechanism of CNS entry. CNS entry of [3H]CTAP was compared with that of the vascular space marker [14C]inulin and the mu-agonist [3H]morphine. By using an in situ brain perfusion technique coupled to high-performance liquid chromatographic analysis, greater amounts of radioactivity were detected in the brain or CSF at most time points for [3H]CTAP, compared with [14C]inulin. [3H]CTAP was found to remain predominantly intact in the brain after a 20-min rat brain perfusion (62.8%). CTAP was also stable in the blood and serum of rats (T1/2 > 500 min), showing that the structure of this peptide offers enzymatic resistance. Additionally, [3H]CTAP was found to be extensively protein-bound to albumin in the perfusion medium (68.2%) and to proteins in rat serum (84.2%). Entry into the brain and CSF was not inhibited by the addition of unlabeled CTAP to the perfusion medium, suggesting that passage into the CNS is most likely through diffusion across the membranes that comprise the blood-brain barrier, rather than by saturable transport. Also, greater amounts of [3H]morphine entered both the brain and CSF after a 20-min brain perfusion, compared with [3H]CTAP. The increased CNS penetration observed for [3H]morphine, compared with [3H]CTAP, is likely due to the increased lipophilicity of morphine, as shown by its higher octanol/saline partition coefficient. Based on the pharmacokinetic profile, CTAP may be a promising mu-selective antagonist that can be used as a treatment for opiate overdose or addiction and also as a pharmacological tool to further understand opioid neurobiology.

Animals

The entry of [D-penicillamine2,5]enkephalin into the central nervous system: saturation kinetics and specificity.

The delta opioid receptor-selective, enzymatically stable peptide [D-Penicillamine2,5]enkephalin (DPDPE) has recently acquired special significance with the identification of a saturable uptake system for this analgesic into the CNS. The aim of the present study was to characterize further the entry of [3H]DPDPE into the brain and CSF by means of a bilateral in situ brain perfusion method. Initial experiments revealed a saturable [3H]DPDPE uptake into the brain that followed Michaelis-Menten type kinetics with a K(m) value of 45.5 +/- 27.6 microM, a V(max) value of 51.1 +/- 13.2 pmol x min(-1) x g(-1) and a K(d) value of 0.6 +/- 0.3 microl x min(-1) x g(-1). Uptake of [3H]DPDPE into the CSF could not be inhibited (K(d) = 0.9 +/- 0.1 microl x min(-1) x g(-1)). Entry of [3H]DPDPE into the CNS was not inhibited in the presence of 10 mM 2-aminobicyclo-[2,2,1]-heptane-2-carboxylic acid (BCH) or 50 microM ICI 174,864, which suggests that the saturable mechanism does not involve the large neutral amino acid transporter or binding to opioid receptors. It would also appear that [3H]DPDPE is not in competition with either poly-L-lysine or insulin to enter the CNS. However, both of these substances significantly increased the CNS entry of [3H]DPDPE but not that of the vascular space marker [14C]sucrose, and this may have valuable clinical implications. It is not known at present which saturable uptake mechanism is responsible for the CNS entry of [3H]DPDPE, but overall the results suggest a carrier-mediated transport system.

Animals

Structure-activity relationships of a series of [D-Ala2]deltorphin I and II analogues; in vitro blood-brain barrier permeability and stability.

[D-Ala2]deltorphins are enzymatically stable, amphibian heptapeptides that have a higher affinity and selectivity for delta-opioid receptors than any endogenous mammalian compound known. This study investigated the in vitro blood-brain barrier permeability, using primary bovine brain microvessel endothelium culture, and the resistance to enzymatic degradation, in mouse 15% brain membrane homogenates and 100% plasma, of [D-Ala2]deltorphin I, [D-Ala2]deltorphin II and several analogues. Derivatives were designed with the addition of N-terminal neutral and basic amino acids or with alterations of the amino acids present within the deltorphin sequences. The results indicated that the N-terminal sequence and the amino acids in position 4 and 5 are critical to deltorphin analogue BBB permeability and biological stability, i.e., t 1/2 brain; 4.8 hr- [D-Ala2]deltorphin I; > 15 hr- [D-Ala2, Ser4, D-Ala5]deltorphin. Although, no analogue was found to increase the BBB permeability coefficient (PC; x10(-4) cm/min) of the parent compounds ([D-Ala2]deltorphin II, PC = 23.49 +/- 2.42) analogues were identified: [Arg0, D-Ala2]deltorphin II, PC = 19.06 +/- 3.73 and [Pro-1, Pro0, D-Ala2]deltorphin II, PC = 22.22 +/- 5.93; which had similar permeability coefficients, even though they had larger molecular weights and, in the case of the cationic prodrug, a significantly lower lipophilicity. These analogues provide directions in the development of future pro-drugs for the treatment of pain and this study further clarifies the structure-activity relationship of the deltorphins.

Analgesics, Opioid

Psychological factors and survival in the cardiac arrhythmia suppression trial (CAST): a reexamination.

BACKGROUND: Evaluating the independent effects of psychosocial and physiological factors on survival of cardiac patients is difficult because it requires obtaining extensive physiological and psychosocial data and long-term follow-up of high-risk patients. OBJECTIVES: To examine the independent contributions of psychosocial and physiological status to survival of patients who had had myocardial infarction. METHODS: The sample consisted of 348 patients in the Cardiac Arrhythmia Suppression Trial who had asymptomatic ventricular arrhythmias after myocardial infarction. Psychosocial status was assessed with the Social Support Questionnaire-6, Social Readjustment Rating Scale, State-Trait Anxiety Inventory, Self-Rating Depression Scale, Jenkins Activity Survey, and Expression of Anger Scale. Physiological data included measurement of left ventricular ejection fraction; history of previous myocardial infarction, congestive heart failure, and diabetes; and results of Holter monitoring. RESULTS: At the first follow-up, after the effect of the physiological predictors was controlled for, psychosocial factors were significant independent predictors of survival. Among men in the nonactive medication group (n = 263), higher state anxiety, lower anger outward, more past life events, and lower expectations of future life events were predictors of mortality. Data suggested that the relationship of anger to mortality might differ for men and women. Increases in past life events and depression from baseline to first follow-up were greater among those who died than among those who lived. CONCLUSION: Among patients who had asymptomatic ventricular arrhythmias after myocardial infarction, psychological status during the period after infarction contributed to mortality beyond the effect of physiological status. The results reaffirm the critical interrelationship between mind and body for cardiovascular health.

Adult

The passage of azidodeoxythymidine into and within the central nervous system: does it follow the parent compound, thymidine?

The transport of azidodeoxythymidine (AZT) into and within the central nervous system (CNS) has special clinical significance due to the ability of AZT to alleviate certain neurological symptoms associated with the acquired immunodeficiency syndrome (AIDS). AZT was thought to be similar to its parent compound, thymidine, in that it entered the CNS via the choroid plexuses (blood-CSF barrier) and could not cross the blood-brain barrier (BBB). However, a saturable transport system for thymidine at the BBB has recently been identified. The aim of this study was to test the hypothesis that AZT follows its physiological counterpart in its mode of entry into and movement within the CNS. Initial experiments using the in situ brain perfusion technique indicated that the blood-to-CNS transfer constants for [3H]AZT (blood-to-cerebrum; 0.95 +/- 0.12 microl/min/g) were significantly lower than those determined for [3H]thymidine. Also, [3H]AZT entered the CNS purely by a diffusive process. The movement of [3H]AZT within the CNS was further investigated by a ventriculocisternal perfusion technique and indicated that the majority of intraventricularly perfused [3H]AZT remained within the ventricles (79.9%), with little escaping to blood (14.1 +/- 3.1%) or brain (6.0 +/- 1.3%). Overall, these results suggest that the choroid plexus/CSF pathway was unlikely to be solely responsible for the levels of [3H]AZT observed in brain and that the BBB plays a significant role in the brain entry of this analog. However, in contrast to thymidine, AZT enters the CNS purely by a diffusional process.

Animals

Adherence and arrhythmic mortality in the cardiac arrhythmia suppression trial (CAST).

Patient adherence to therapy is essential to assess treatment efficacy, particularly in clinical trials. Active treatment usually is expected to benefit patients. The healthy adherer effect, the association or greater adherence to all health-promoting behaviors, including medication and overall concern for health, explains the improved survival of more adherent patients in both active and placebo medication groups of several clinical trials. The Cardiac Arrhythmia Suppression Trial (CAST), a placebo-controlled double-blind clinical trial of post-myocardial infarction (MI) patients with asymptomatic ventricular arrhythmias, in which active medication (encainide or flecainide) led to increased mortality, provided an opportunity to examine the relationship of adherence to survival from a different perspective. We consider whether adherence to active treatment was related to arrhythmic mortality and whether a healthy adherer effect might counteract the effect of treatment on mortality among patients taking active medication. Adherence (average pill count) at the first follow-up visit did not differ in the active treatment (92.2%, standard deviation (SD) = 11.97, n = 574) and placebo (90.8%, SD = 13.66, n = 579) groups. In a Cox proportional hazard regression model, medication adherence predicted arrhythmic mortality among the active (P < 0.0062) but not the placebo medication group. The effect of adherence on arrhythmic mortality was significant beyond the effects of ejection fraction, race, spouse, smoking status, diuretic medication, and history of MI. A 10% increase in adherence led to more than a threefold increase of risk of arrhythmic death. The design of the CAST, which included a titration phase, may have tended to select relatively adherent patients since only those whose arrhythmias were suppressed with active medication were randomized into the trial. The data do not support a strong healthy adherer effect in the CAST. There was no evidence in this study that a healthy adherer effect counterbalanced the effect of the active medication.

Anti-Arrhythmia Agents

Detection and distribution of heat shock proteins 27 and 90 in human benign and malignant prostatic tissue.

OBJECTIVE: To determine whether it is possible to predict the behaviour of prostate tumours by identifying cellular characteristics, specifically specific heat shock proteins (HSPs). MATERIALS AND METHODS: An immunohistochemical study staining for HSP 27 and 90 was undertaken on 15 benign and 13 malignant samples of freshly frozen prostatic tissue obtained from patients with a similar age range in each group (benign, mean age 71.6 years, range 61-86; malignant, mean age 72.7 years, range 58-87). Gleason scores for the tumours ranged from 2 to 8. RESULTS: Consistent patterns of cytoplasmic staining were seen in all sections of tissue from benign prostatic hyperplasia (BPH). The stroma stained strongly positive for HSP 27, but negatively for HSP 90 and glandular epithelium showed positive apical staining for both HSPs. Stromal patterns in prostatic carcinoma tissue were similar to that of BPH tissue for both HSP 27 and 90. Areas of prostatic intra-epithelial neoplasia stained as strongly as did adjacent areas of BPH. For HSP 27, there was varied staining of individual epithelial cells, suggesting cellular heterogeneity, with an apparent reduction in staining with increasing Gleason score and invasiveness. For HSP 90, this pattern was less marked, with a predominance for positive staining throughout all grades of carcinoma. CONCLUSIONS: The distribution of HSPs, primarily HSP 27, may aid in identifying different cell populations within prostatic carcinomas and thus help forecast biological behaviour.

Aged

Blood pressure.

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Blood Pressure