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Biomedical subjects

W E Dale

Publications and source records attributed to W E Dale.

12 recordsLinked to original sources

Differing significance of Na(+)-Ca2+ exchange in the regulation of cytosolic Ca2+ in rat exocrine gland acini and cardiac myocytes.

In order to compare the importance of Na(+)-Ca2+ exchange in the regulation of cytosolic Ca2+ concentration (Ca2+i), acini obtained from rat pancreas and submandibular glands as well as cardiac myocytes were loaded with Na+ by inhibition of Na(+)-K+ ATPase activity then loaded with fura-2. In the exocrine tissues, incubation in K(+)-free buffer or with ouabain had no substantial effect on resting Ca2+i or on the changes in Ca2+i following exposure to carbachol as compared with acini incubated under control conditions. In contrast, rat cardiac myocytes, treated identically, showed marked changes in Ca2+i under resting and stimulated conditions as compared with controls. We conclude that the Na(+)-Ca2+ exchange systems of rat pancreatic and submandibular gland acini contribute little to the overall regulation of Ca2+i at rest during cholinergic stimulation.

Animals

Annotated list of ticks (Acari: Ixodidae, Argasidae) reported in Peru: distribution, hosts, and bibliography.

A literature review and compilation of the tick specimens found in Peru and now held in the National Tick Collection was carried out to develop a working list of the tick species likely to be found in Peru. Evidence of 44 species (29 Ixodidae, 15 Argasidae), was found; representatives of 40 species are held as reference specimens. This report adds 14 species to the previously published list.

Animals

Myocardial glucose utilization. Failure of adenosine to alter it and inhibition by the adenosine analogue N6-(L-2-phenylisopropyl)adenosine.

The effects of adenosine and the nonmetabolizable adenosine analogue N6-(L-2-phenylisopropyl)adenosine (PIA) on glucose transport or metabolism were determined in purified myocardial sarcolemmal vesicles, isolated cardiocytes, and perfused hearts. Adenosine (100 microM) did not affect hexose transport in myocytes. Also, adenosine deaminase, added to metabolize adenosine to inosine, did not alter transport of hexose into myocytes regardless of whether or not insulin was present. In contrast, PIA effectively inhibited 3-O-methyl-D-glucose uptake in myocytes even during insulin stimulation. PIA inhibited D-glucose-specific transport in both rat and bovine cardiac sarcolemmal vesicles (Ki = 26 microM at [D-glucose] = 5 mM). However, insulin did not affect glucose transport in sarcolemmal vesicles, which implies that receptor-coupled processes probably are not intact in this preparation. Thus, inhibition of PIA may not be receptor mediated. Also, PIA inhibited binding of cytochalasin B to bovine cardiac sarcolemmal vesicles, which supports the idea that PIA inhibits glucose flux by binding to the glucose transporter. To determine if adenosine altered glucose metabolism rather than transport, we measured the rate of 3H2O production from metabolism of D-[2-3H]glucose in paced rat hearts ([D-glucose] = 5.5 mM, [pyruvate] = 0.2 mM) perfused with a range of PIA or adenosine concentrations with or without 0.01 microM insulin. Adenosine (0.01-100 microM) in the presence or absence of insulin increased coronary flow but did not change glycolytic rates. Similar results were obtained with PIA (no insulin) rather than adenosine in the perfusate. However, with glucose as the only exogenous substrate, 100 microM PIA inhibited glycolysis by approximately 50%.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine

Role of cholecystokinin in intestinal phase and meal-induced pancreatic secretion.

Amylase secretion and plasma cholecystokinin (CCK) were measured in dogs in the interdigestive state and after exogenous CCK-8 and CCK-39 (12.5 to 400 pmol.kg-1.h-1), intestinal sodium oleate, tryptophan plus phenylalanine, HCl (0.74, 2.2, 6.7, 20 mmol/h), and a meat meal (20 g/kg). Interdigestive plasma CCK did not vary, although amylase output showed periodic 15-fold increases. Plasma CCK increased linearly after doubling doses of CCK-8 and CCK-39; the slope of plasma CCK-39 vs. dose was 2.8 times steeper than that of CCK-8, suggesting a longer circulating half-life. At similar plasma concentrations, CCK-8 and CCK-39 were equipotent for stimulating pancreatic secretion. Sodium oleate and tryptophan plus phenylalanine significantly increased plasma CCK and amylase secretion in a load-dependent pattern and were equipotent for both effects. HCl stimulated bicarbonate secretion but not plasma CCK or amylase secretion. Food significantly increased plasma CCK and amylase secretion. Amylase responses to intestinal stimulants and food were significantly greater than to exogenous CCK at low plasma CCK levels. Maximal amylase responses to intestinal stimulants were similar to that after CCK-39 but occurred at 10-fold lower plasma CCK levels. These results indicate that CCK and other factors interact to regulate pancreatic responses to food and intestinal stimulants in dogs.

Amylases

Storage and analysis of samples of water, fish, and mud from environments contaminated with abate.

Methods for extraction, cleanup, and analysis of samples of water, mud, and fish containing trace quantities of Abate have been developed. Water was extracted by high-speed stirring of 10 ml of hexane in a 300-ml sample. The extracts were evaporated and analyzed by gas chromatography with a limit of detection of 0.00003 ppm. Dried mud samples were extracted by shaking with acetone. An aliquot of the acetone extract was diluted with water and the Abate extracted into 10 ml of hexane by high-speed stirring. The extracts were analyzed by gas chromatography. Fish were extracted with methylene chloride, cleaned up on a silica gel column, and analyzed by gas chromatography. The limit of sensitivity of the methods for mud and fish was found to be 0.001 ppm. Fish samples were stored for 3 weeks in 10% formalin containing 5% sodium thiosulfate without significant loss of Abate residues. A biological magnification of greater than 100 was observed in fish exposed to Abate for 16 hr at concentrations of 0.02 and 0.002 ppm.

Animals

Partition chromatographic separation of pesticide residues from fats.

A simple, rapid, and efficient partitioning column consisting of acetonitrile on Florisil has been developed for the separation of pesticides from fish, beef, and butter fat. The efficiency of the cleanup column is between 97 and 100%. Nine pesticides having partition coefficients between n-hexane and acetonitrile of less than or equal to 0.05 were satisfactorily separated from fat with good recoveries. When the column was used to clean up temephos in a fish extract, 99.91% of the fat was eluted with 20 ml n-hexane with no loss of the pesticide.

Butter

Gas-liquid chromatographic determination of chlorphoxim residues in water and fish by in-block methylation.

A gas-liquid chromatographic method has been developed for the analysis of residues of chlorphoxim, 2-chloro-alpha ((diethoxyphosphinothioyl)oxy)imino)-benzeneacetonitrile, in water and fish. The method is based on the in-block methylation of chlorphoxim with 0.01M trimethylanilinium hydroxide in methanol. The derivative, O,O-diethyl O-methyl phosphorothioate, was determined quantitatively by using a flame photometric detector specific for phosphorus. The in-block reaction is 70% efficient. Water samples were extracted with hexane; fish were extracted with methylene chloride and cleaned up on an acetonitrile-hexane partition column. Recoveries from water and fish samples spiked with chlorphoxim averaged 86.3 and 80.4%, respectively. Limits of detection were 10.0 ppb for 5 g samples of fish and 0.10 ppb for 300 ml water samples.

Animals