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D S Wood

Publications and source records attributed to D S Wood.

At least 19 recordsLinked to original sources

Modeling the survival of Escherichia coli O157:H7 in uncooked, semidry, fermented sausage.

The data collected from studies to monitor inactivation of Escherichia coli O157:H7 in uncooked fermented salami were used to develop models to describe survival of the organism. Three models were developed that included different variables to best describe E. coli O157:H7 reduction. Model A included the variables water activity (a(w)), pH, time, and quadratic variables pH and time. Model B separated the processing stages into fermentation and drying. The fermentation included the variables pH and temperature x time (ttarea) and interaction between the two variables. The drying stage was modeled using the variables time and a(w) and interaction between the two. Model C looked at variables a(w) and the time at pH 5.3 to achieve a 2-D log reduction of E. coli O157:H7 and the interaction between the variables. The variables selected for inclusion in all the models were significant at the P < 0.0001 level. The predicted values for all models correlated well to the observed values with R2 of 0.888, 0.828, 0.836, and 0.818 for models A. Bferm, Bdrying, and C, respectively. The models were validated using data from a trial not used to develop the model. In general the predicted reduction in E. coli O157:H7 count in uncooked fermented salami was greater than for the observed E. coli O157:H7 log reductions for all models, but the relation between the two was linear. The results demonstrate that modeling can be a useful tool in assessing manufacturing practices for uncooked fermented salami processes.

Animals↗

Inuit and non-Inuit alcohol consumption in the Baffin Region, NWT, Canada.

Stereotypes about Inuit drinking would have us believe they are much more likely to be users of alcohol compared to other segments of the population. As with many other stereotypes, however, this belief is primarily rooted in fiction and selective observation. As revealed in a number of self-report surveys regarding alcohol use, a smaller proportion of Inuit in the Northwest Territories (NWT) have reported drinking when compared to the non-aboriginal of the territory. The data presented here serve to further confirm the notion of comparatively less prevalent alcohol use among NWT Inuit. Rather than using survey data, however, this paper looks to alcohol use indicators derived from territorial liquor commission mail order invoices to show that the volume of alcohol consumed by Baffin Region Inuit is much less than that of non-Inuit in and outside the territory.

Alcohol Drinking↗

The utility of neuropsychological tests in evaluation of Attention-Deficit/ Hyperactivity Disorder (ADHD) versus depression in adults.

A comparison was made between adults with depression and with Attention-Deficit/Hyperactivity Disorder (ADHD) on a battery of cognitive tests of attention span and memory. Both the ADHD and depression groups were subdivided with regard to comorbid depression in the ADHD group and developmental learning disorder in both groups. Utilizing Discriminant Function Analysis, it was found that variables derived from the California Verbal Learning Test, the Paced Auditory Serial Addition Test, and the Stroop Test discriminated among the various subgroups at a level significantly exceeding chance. However, although the great majority of the ADHD participants were correctly classified, there were numerous misclassifications among the depressed groups. It was concluded that the tests used were highly sensitive to ADHD, but were also sensitive to a subgroup of depressed individuals.

Adult↗

Transmembrane calcium movement in 20,25-diazacholesterol myotonia.

An abnormality in myoplasmic Ca2+ regulation has frequently been proposed in 20,25-diazacholesterol (20,25-D) myotonia. We report here the results of several studies of transmembrane Ca2+ movement in this animal model. (i) Physiologic Ca2+ release by intact sarcoplasmic reticulum (SR) was examined in chemically skinned single muscle fibers preloaded in EGTA-buffered Ca2+ solutions (pCa2+7.0 to 6.4). Isometric tension development and Ca2+ release thresholds in response to Cl- or caffeine showed no differences between control and 20,25-D fibers at any pCa2+. (ii) The kinetics of energy-dependent Ca2+ accumulation in purified SR vesicles were followed spectrophotometrically using Ca2+-sensitive dyes. The apparent rate for ATP-dependent Ca2+ uptake and Ca2+ sequestering capacity were unchanged in SR from 20,25-D animals vs. controls. (iii) Surface membrane Ca2+ATPase activity was measured in red blood cell ghosts and sarcolemma. Enzyme Vmax was decreased by 25 to 50% in both membranes in the 20,25-D-treated animals with a compensatory increase in the number of Ca2+ATPase molecules. In general, the SR handling of Ca2+ appears normal in 20,25-D myotonia, although the activity of Ca2+ATPase in membranes with high sterol content may be altered in response to changes in the lipid environment in this model.

Adenosine Triphosphate↗

Tetraphenylboron causes Ca2+ release in isolated sarcoplasmic reticulum and in skinned muscle fibers.

The lipophilic anion tetraphenylboron (TPB-) but not the lipophilic cation tetraphenylarsonium (TPA+) inhibited ATP-dependent Ca2+ accumulation by isolated sarcoplasmic reticulum. TPB- did not inhibit ATP hydrolysis but did induce Ca2+ release from preloaded vesicles. It did not appear to disrupt lipid bilayers or to act as a Ca2+ ionophore since it had no effect on the Ca2+ content of phospholipid vesicles. TPB- also induced Ca2+ release from sarcoplasmic reticulum in chemically skinned muscle fibers causing tension development. In contrast to other Ca2+-releasing agents such as caffeine, proton ionophores, or quercetin, the rise to peak tension was slow and tension was sustained, suggesting that Ca2+ release channels, once opened by TPB-, were held open as long as the compound was present in the membrane. Ca2+ uptake was re-established upon removal of TPB- or addition of TPA+. TPB- or TPA+ would probably distribute within the membrane, altering surface charges on both sides of the membrane. The fact that only a negatively charged ion brought about opening of Ca2+ release channels suggests that specific surface charges control Ca2+ release channels in sarcoplasmic reticulum. Although we have not been able to prove that TPB- acts exclusively on physiologically relevant Ca2+ release channels, we have shown that TPB- does not release Ca2+ from proteoliposomes reconstituted with the Ca2+ + Mg2+ ATPase. Thus TPB- does not induce Ca2+ release through channels formed by the ATPase molecule.

Animals↗

Studies of Ca2+ release from sarcoplasmic reticulum.

Our studies of Ca2+ release have shown that three classes of compounds--quercetin, which inhibits Ca2+ release by reversal of the Ca2+ pump, H+ ionophores and DCCD, which affect proton gradients, and lipophilic anions, which act to oppose a separation of membrane surface charges--all have potential in probing the mechanism of Ca2+ release from sarcoplasmic reticulum.

Animals↗

Adenylate kinase deficiency and malignant hyperthermia.

In a report of two patients who died of malignant hyperthermia, muscle adenylate kinase deficiency was identified in the father and brother of the deceased. To determine if this enzyme deficiency was a biochemical marker for susceptibility to malignant hyperthermia, we measured adenylate kinase in muscle of three survivors of malignant hyperthermia (MH) and five relatives of survivors of MH attacks with positive caffeine contracture tests. Neither the activity nor the electrophoretic mobility of adenylate kinase differed from four control values. The results show that muscle adenylate kinase deficiency is not a biochemical abnormality shared by all individuals susceptible to malignant hyperthermia.

Adenylate Kinase↗

A proton gradient controls a calcium-release channel in sarcoplasmic reticulum.

Sarcoplasmic reticulum vesicles from mammalian skeletal muscle have previously been shown to develop a proton gradient (alkaline inside) of 0.15-0.5 pH units during active Ca2+ uptake. We found that dissipation of this gradient by the proton ionophores gramicidin, nigericin, and carbonyl cyanide p-trichloromethoxyphenylhydrazone caused a rapid transient tension in skinned rabbit psoas muscle fibers. Increases, but not decreases, in medium pH of approximately 0.2 units over the range from pH 6.5 to pH 7.5 also elicited transient tensions. In isolated vesicles, physiological levels of Ca2+ (3.3 microM), inhibited pH-induced Ca2+ release. Dicyclohexylcarbodiimide blocked pH- and ionophore-induced Ca2+ release under conditions in which it could bind to sarcoplasmic reticulum proteins but did not inhibit Ca2+ uptake. We propose that a proton gradient generated across sarcoplasmic reticulum membranes during Ca2+ uptake maintains a Ca2+ release channel in a closed conformation and that dissipation of this gradient permits the Ca2+ release channel to open. We further propose that elevated myoplasmic Ca2+ also causes the Ca2+ channel to close, permitting Ca2+ uptake through Ca2+/Mg2+-ATPase to function effectively. As the proteolipids of sarcoplasmic reticulum bind dicyclohexylcarbodiimide under conditions in which Ca2+ release is blocked and as they have previously been shown to have Ca2+ ionophoric activity, we propose that the Ca2+-release channel either resides in the proteolipids or is controlled by H+ fluxes through the proteolipids.

Animals↗

High skeletal muscle adenylate cyclase in malignant hyperthermia.

Malignant hyperthermia occurs in humans with several congenital myopathies, usually in response to general anesthesia. Commonly, individuals who develop this syndrome lack symptoms of muscle disease, and their muscle lacks specific pathological changes. A biochemical marker for this myopathy has not previously been available; we found activity of adenylate cyclase and content of cyclic AMP to be abnormally high in skeletal muscle. Secondary modification of protein phosphorylation could explain observed abnormalities of phosphorylase activation and sarcoplasmic reticulum function.

3',5'-Cyclic-AMP Phosphodiesterases↗

Electrophysiological properties of resting secretory membranes of lamellibranch mantles. Interaction between calcium and potassium.

This study concerns the effects of ions on the shell-secreting membrane of clam mantles. The average resting potentials were --47 mV for freshwater mantles and --60 mV for marine mantles. Elevation of potassium in the absence of chloride gave a maximal slope of depolarization equivalent to 59 mV for a 10-fold change in the marine form but much less in the freshwater form. In normal potassium, a 10-fold reduction in calcium produced a hyperpolarization of 6 mV for the freshwater mantle. Neither reduction nor elevation of calcium affected the potential of marine mantles in the presence of normal potassium, but a hyperpolarization of 8 mV occurred when calcium was deleted in a low-potassium medium. Elevated calcium reduced the depolarization induced by raised potassium in both species and resulted in an increased effective membrane resistance in marine mantles. Lowered calcium enhanced the hyperpolarization caused by reduction in potassium in freshwater mantles but not in the marine species. Replacement of chloride by large anions produced transient depolarization in both freshwater and marine mantles and resulted in a maintained increased effective membrane resistance in marine mantles. The effects of sodium and magnesium on the membrane potential were not significant in normal potassium. We conclude that the secretory membrane of freshwater and marine clam mantles is permeable mainly to potassium and chloride, and that responses of the membrane potential to calcium are mediated through its effect on the permeability to potassium.

Animals↗