Search PubMed⌕ Search

Biomedical subjects

M Nash

Publications and source records attributed to M Nash.

At least 55 records · Page 3Linked to original sources

Acute postobstructive pulmonary edema.

Acute postobstructive pulmonary edema may occur after airway obstruction. A decrease in intrathoracic and intraalveolar pressures causes an increased blood flow into the pulmonary vasculature and favors the development of pulmonary edema. Two mechanisms for the development of acute postobstructive pulmonary edema are proposed: type 1 follows acute airway obstruction, and type 2 follows relief of chronic airway obstruction.

Acute Disease↗

Metabolism and disposition of 14C-granisetron in rat, dog and man after intravenous and oral dosing.

1. The disposition and metabolic fate of 14C-granisetron, a novel 5-HT3 antagonist, was studied in rat, dog, and male human volunteers after intravenous and oral administration. 2. Complete absorption occurred from the gastrointestinal tract following oral dosing, but bioavailability was reduced by first-pass metabolism in all three species. 3. There were no sex-specific differences observed in radiometabolite patterns in rat or dog and there was no appreciable change in disposition with dose between 0.25 and 5 mg/kg in rat and 0.25 and 10 mg/kg in dog. Additionally, there were no large differences in disposition associated with route of administration in rat, dog and man. 4. In rat and dog, 35-41% of the dose was excreted in urine and 52-62% in faeces, via the bile. Metabolites were largely present as glucuronide and sulphate conjugates, together with numerous minor polar metabolites. In man, about 60% of dosed radioactivity was excreted in urine and 36% in faeces after both intravenous and oral dosing. Unchanged granisetron was only excreted in urine (5-25% of dose). 5. The major metabolites were isolated and identified by MS spectroscopy and nmr. In rat, the dominant routes of biotransformation after both intravenous and oral dosing were 5-hydroxylation and N1-demethylation, followed by the formation of conjugates which were the major metabolites in urine, bile and plasma. In dog and man the major metabolite was 7-hydroxy-granisetron, with lesser quantities of the 6,7-dihydrodiol and/or their conjugates.

Administration, Oral↗

Do electrolyte-containing beverages improve water imbalance in hyponatremic schizophrenics?

BACKGROUND: To determine if ready access to a sodium-containing beverage ameliorates life-threatening water imbalance, we compared Gatorade to water in an ABA design. METHOD: Four male chronic schizophrenic inpatients with symptomatic hyponatremia drank water for 1 week, Gatorade plus water for 3 weeks, and then water again for 1 week. Afternoon plasma osmolality and morning serum sodium levels were used to estimate hydration status, and morning and afternoon urine creatinine concentrations were used to estimate fluid intake. RESULTS: During the baseline phase, subjects were mildly polydipsic and mildly overhydrated in the morning and severely overhydrated in the afternoon. All subjects stated they preferred Gatorade and appeared to consume large quantities of it. Indices of fluid intake and hydration status did not differ between the two control phases, nor between the treatment phase and the other two phases. Frequency of severe hypo-osmolemia was also unaffected. CONCLUSION: Substitution of electrolyte-containing beverages is not likely to prevent water intoxication.

Adult↗

Serotonergic, 5-HT2, receptor-mediated phosphoinositide turnover and mobilization of calcium in cultured rat retinal pigment epithelium cells.

Cultured rat retinal pigment epithelium cells are shown to contain serotonergic, 5-HT2, receptors associated with phosphoinositide turnover and mobilization of intracellular calcium. Serotonin at a concentration of 10 microM induced a 2.5-fold increase in [3H]-inositol phosphates (more than 75% is in the form of [3H]-inositol-1-phosphate) accumulation within 30 min in cells preincubated in [3H]-myo-inositol and exposed to 5 mM lithium chloride. The EC50 value of serotonin was approx. 0.9 microM and the saturation concentration was 100 microM. Serotonin analogues like tryptamine, 5-methoxytryptamine, alpha-methyl-serotonin and the 5-HT2 agonists quipazine and DOI (1-[2,5-dimethoxy-4-iodophenyl]-2-aminopropane) all stimulated InsPs accumulation to some degree. Carbachol, noradrenaline, isoproterenol, dopamine, tryptophan, 5-hydroxytryptophan, 8-hydroxy-2(di-n-propyl-amino) tetralin, 2-methyl-serotonin and NECA (5'-[N-ethyl]-carboxamidoadenosine) were inactive. The serotonin-induced response was blocked most effectively by ketanserin and methysergide but not by 5-HT3 or 5-HT1 antagonists. The serotonin response was attenuated by the active phorbol ester, 4 beta-phorbol 12-myristate 13-acetate and this was attenuated by the non-selective protein kinase C inhibitor, staurosporine. Pertussis toxin failed to influence the serotonin-mediated phosphoinositide turnover. Addition of serotonin to cultures loaded with Fura-2 showed a transient increase in calcium concentrations in most of the cells. This change in calcium was independent of external calcium and the serotonin response was attenuated by ketanserin but not by the 5-HT3 antagonist granisetron.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

On the origin of Alzheimer's disease: a hypothesis.

There is no unifying hypothesis to account for the anatomical distribution of neuropathology, the involvement of beta-amyloid precursor protein (beta APP) and the role of increasing age in triggering the Alzheimer disease process. We report here that layer II pre-alpha neurones in transentorhinal and entorhinal cortex contain more beta APP immunoreactivity than other cortical neurones in normal individuals. This immunoreactivity increased in the early stages of Alzheimer's disease and was lost as the disease progressed. These neurones are known to undergo genetically programmed re-sprouting and synaptogenesis during the fifth and sixth decades of life. We hypothesize that these phenomena are related and that the Alzheimer's disease process originates in entorhinal cortex neurones due to the enhancement of their normally high content of beta APP during age-related resprouting.

Adult↗

Epidermal growth factor potentiates the transmitter-induced stimulation of C-AMP and inositol phosphates in human pigment epithelial cells in culture.

Salbutamol, isoproterenol and dopamine stimulate C-AMP production in human retinal pigment epithelium (RPE) cells by activation of beta 2-type receptors. Epidermal growth factor (EGF) in contrast does not alter basal levels of C-AMP but elevates in an apparently dose-dependent manner the isoproterenol-induced stimulation of C-AMP. EGF also potentiates the forskolin-induced stimulation of C-AMP but has no effect on the elevation of C-AMP caused by NECA (5'-[N-ethyl]-carboxamido adenosine), an adenosine A2-receptor agonist. EGF, isoproterenol and NECA have no effect on basal levels of inositol phosphates (InsPs) in human RPE cells, but EGF specifically elevates the carbachol-induced stimulation of InsPs. The carbachol effect on InsPs is attenuated by the phorbol ester PMA (4 beta-phorbol 12 myrisate 13-acetate). PMA did not, however, affect the stimulation of C-AMP caused by isoproterenol. The interaction of EGF and C-AMP is further demonstrated in experiments where the incorporation of [3H]thymidine into RPE cells was studied, as an index for proliferation. EGF stimulates RPE cell proliferation while isoproterenol and dibutyryl C-AMP nullify the EGF effect. Dibutyryl C-AMP has a negative effect on RPE cell proliferation while isoproterenol is ineffective. The data presented here suggest that after stimulation of EGF receptors, tyrosine-kinase-activated products can influence secondary messenger products produced from activation of beta 2-type (linked with C-AMP formation) and muscarinic (linked with InsPs production) receptors in RPE cells. We could find no evidence of an interaction between receptors associated with C-AMP and InsPs/diacylglycerol production.

Adolescent↗

The transcervical approach to the superior mediastinum.

We describe our experience with the transcervical approach for the surgical treatment of nonthyroidal superior mediastinal masses. With careful patient selection, proper preoperative workup, and proper operative positioning and technique, the entire superior mediastinum may be explored, thus avoiding the significant morbidity associated with the transsternal route. The transcervical approach requires a thorough knowledge of the surgical anatomy. Nine patients underwent transcervical exploration of the superior mediastinum. The indications included parathyroid adenoma, thymoma, congenital cyst, hemangioma, adenocarcinoma, and thymectomy for myasthenia gravis. We specifically discuss the role of thymectomy in the treatment of myasthenia gravis.

Adult↗

The physical interactions between p37env-mos and tubulin structures.

The c-mos protein has been reported to be complexed with tubulin and to co-localize with microtubules in unfertilized Xenopus eggs as well as in NIH3T3 cells transformed by the Xenopus c-mos gene. We performed experiments to determine whether the viral mos protein, p37v-mos, also associates with tubulin. Both mouse c-mos and v-mos proteins synthesized in vitro co-polymerized with tubulin. Upon incubation at 37 degrees C, essentially all of the mos protein (both viral and cellular) co-polymerized with tubulin, while more than 50% of the tubulin remained in the depolymerized state. The mos-tubulin interaction was specific, as indicated by the insolubility of the v-mos protein following a second cycle of temperature-dependent depolymerization/polymerization. Beta-tubulin was shown to co-precipitate with p37v-mos and to be phosphorylated by the mos kinase in vitro. Although both v-mos and c-mos proteins co-polymerize with tubulin, p37v-mos behaved differently from p39c-mos on gel filtration columns under conditions that favor disassembly of microtubules. Like Xenopus c-mos, the bulk of the mouse c-mos protein synthesized in vitro appeared in structures that fractionate at about 500 kDa. In contrast to c-mos, the majority of the v-mos protein, either isolated from stably transformed NIH3T3 cells or synthesized in vitro, eluted in the 100 kDa fraction, co-fractionating with tubulin dimers. Therefore, the v-mos protein appears to have a higher affinity for unpolymerized tubulin than c-mos, under conditions that favor disassembly of microtubules.

3T3 Cells↗

Colonic diverticulitis in young patients with chronic renal failure and transplantation.

The association of colonic diverticulitis with chronic renal failure is well known. In those patients with "adult" autosomal dominant polycystic kidney disease, colonic diverticulitis is an especially common complication. We present two young patients (one teenager and one mid-twenties) who developed intra-abdominal abscess several years after renal transplantation. Neither patient had autosomal dominant polycystic disease nor a known history of gastrointestinal problems but both proved to have underlying, previously unsuspected colonic diverticular disease with abscess formation.

Abscess↗

v-mos protein produced by in vitro translation has protein kinase activity.

The v-mos protein, termed p37v-mos, has a closely associated serine/threonine protein kinase activity. To provide further information about its protein kinase activity, we tested the activity of p37v-mos produced in a cell-free translation system from transcripts generated from a cloned v-mos gene. Anti-mos(37-55) immunoprecipitates of in vitro-produced p37v-mos were found to possess serine/threonine protein kinase activity, whereas those obtained with anti-mos(260-271), known to block v-mos autophosphorylation, lacked kinase activity. The phosphorylated products were identical in size to p37v-mos and p43v-mos produced in protein kinase assays from Moloney murine sarcoma virus-infected cells expressing authentic p37v-mos. These results provide further proof that the protein kinase activity associated with p37v-mos is an intrinsic property of the v-mos gene product. This translation system also provides a useful experimental model to study the activation of the mos protein kinase. Thus, protein kinase assays performed on [35S]methionine-labeled p37v-mos produced p43v-mos at the expense of p37v-mos. Phosphatase treatment removed the p43v-mos species, resulting in increase of the p37v-mos-sized protein, confirming our previous interpretation that p43v-mos is a hyperphosphorylated form of p37v-mos.

Animals↗