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Biomedical subjects

E M Hammond

Publications and source records attributed to E M Hammond.

8 recordsLinked to original sources

Amplification of nitric oxide signaling by interstitial cells isolated from canine colon.

The effects of nitric oxide (NO) on intracellular Ca2+ concentration ([Ca2+]i) were studied in enzymatically dispersed interstitial cells (ICs) and smooth muscle cells (SMCs) isolated from canine colon. [Ca2+]i was monitored by using fluo-3 and video fluorescence imaging techniques. Exogenous NO caused an increase in [Ca2+]i in ICs and a decrease in [Ca2+]i in SMCs. Effects of NO on ICs were not blocked by removal of extracellular Ca2+ but were blocked by ryanodine, suggesting that NO caused release of Ca2+ from intracellular stores. When [Ca2+]i was elevated in an IC by micropressure ejection of Bay K 8644, [Ca2+]i decreased in nearby SMCs, suggesting release of a diffusible substance. The diffusible substance may be NO or an NO-related substance based on blockade of transmission by NG-nitro-L-arginine methyl ester, NG-monomethyl-L-arginine, or oxyhemoglobin. The elevation of [Ca2+]i in ICs by NO, which, in turn, might cause further release of NO and elevation of [Ca2+]i, suggests a positive feedback and amplification mechanism in these cells. Elevation of [Ca2+]i in SMCs had no effect on adjacent SMCs. Our data suggest that ICs may play a central role in amplification of NO signaling and propagation of inhibitory wave fronts.

Animals

ATP depletion causes a reversible decrease in Na+ pump density in cultured ventricular myocytes.

To examine factors contributing to impaired K+ homeostasis induced by prolonged but sublethal ATP depletion, we subjected cultured chick ventricular myocytes to metabolic inhibition with 20 mM 2-deoxy-D-glucose plus 1 mM NaCN for 2 h and then allowed myocytes to recover for 5 days in medium containing 6% fetal calf serum (FCS) or in hormone-supplemented serum-free medium. We measured spontaneous contractions (with a video motion detector), K+ content, K+ uptake, membrane potential, and Na+ pump density ([3H]ouabain binding). Exposure to metabolic inhibition for 2 h caused an acute decrease in Na+ pump site density [8.2 +/- 1.1 to 3.8 +/- 0.8 (SE) pmol/mg protein; n = 9, P < 0.02]. Compared with control cells (no metabolic inhibition, cultured for 5 days in serum-free medium), Na+ pump density remained depressed in cells recovered from metabolic inhibition in serum-free medium (3.0 +/- 0.7 pmol/mg), and this was associated with persistently depressed K+ uptake (54% of control), K+ content (67% of control), and membrane depolarization (-19 +/- 2 mV), a significant decrease in cell number (79% of control), and failure to resume spontaneous contractions. Exposure of cells inhibited for 2 h to culture medium containing 6% FCS resulted in a return of Na+ pump site density toward normal levels by 5 days, associated with recovery of K+ uptake and K+ content, preservation of cell number, and resumption of contraction.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate

Neuroblastoma--when are urinary catecholamines and their metabolites 'normal'?

The overproduction of catecholamines and their metabolites is a well recognised feature of neuroblastoma. Published data are scarce for their urinary excretion in children with neuroblastoma and in ill children in whom this diagnosis may be considered. We have determined a graphical upper reference limit for total catecholamines, total metadrenalines and HMMA in urine, expressed as a ratio to the creatinine concentration, for a group of 174 children with neuroblastoma and 704 hospitalised children with other disorders. This graph has been determined by examining the overlap region between the results for the two groups of children and avoids the irregularities caused by statistical outliers. The sensitivity and specificity of the individual tests indicate that total catecholamines is marginally the best single test to perform when trying to diagnose neuroblastoma, with the best clinical sensitivity being achieved by examining both total catecholamines and HMMA. Only two of the 174 children with neuroblastoma would not have been detected using these two tests. Total metadrenalines did not appear to add any further information and could be dropped from the repertoire in favour of the other two measurements.

Adolescent

Urinary catecholamines and their metabolites in management of neuroblastoma.

Measurements of urinary total catecholamines expressed as dopamine (TC) and their metabolites, total metadrenalines (TM) and 3-methoxy-4-hydroxy mandelic acid (HMMA) were made on 24-h urine collections from 56 previously untreated children with neuroblastoma. All results were expressed as a ratio to the creatinine excretion and were compared with "smoothed" age-related reference ranges derived from results in 704 children with other illnesses. Urinary catecholamines/metabolites excretion was elevated in 55 of the 56 patients, the exception being a baby with opsomyoclonus. TC was raised in 47, HMMA in 41, and TM in 37. Eleven patients had elevations of one parameter (TC in 10, HMMA in 1), 15 had 2 elevated levels, and 29 had elevations of all three. The TM level was the least contributory, as in no patient was it the only parameter elevated. Serial measurements were performed in 40 children, and the results correlated closely with the clinical progress of the disease and in some children permitted early detection of recurrence.

Catecholamines

Serum dopamine beta hydroxylase in children with neuroblastoma.

Serum dopamine-beta-hydroxylase (DBH) activity has been reported to be raised in some patients with neuoblastoma but this has been challenged. We have studied serum DBH levels on 26 children with neuroblastoma and 58 age-matched controls. Only in 2 patients were the levels higher than in the controls, and then only transiently. In both, the rise in DBH levels could be accounted for by the transfusion of adult blood. Serum DBH levels in children with neuroblastoma were unrelated to the response of this neoplasm to treatment or to urinary catecholamine output and thus are unlikely to have any value in diagnosis or as a marker of tumour activity.

Age Factors