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G J Harrison

Publications and source records attributed to G J Harrison.

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A biphasic response to adenosine in the coronary vasculature of the K(+)-arrested perfused rat heart.

Biphasic vasodilatory responses to adenosine and 5'-N-ethylcarboxamidoadenosine (NECA) were observed in the coronary vasculature of K(+)-arrested perfused rat hearts. Dose-response data for both agonists were best represented by two-site models. For adenosine, two sites with negative log ED50 (pED50) values of 8.1 +/- 0.1 (mean +/- S.E.M) and 5.2 +/- 0.1 were obtained, mediating 31 +/- 2% and 69 +/- 2% of the total response. In the presence of 8-phenyltheophylline, the vasodilatory response to adenosine remained best fitted to a two-site model with pED50 values of 7.0 +/- 0.2 and 5.4 +/- 0.2. The relative contribution of each site to the total response remained unchanged. For NECA, pED50 values of 9.6 +/- 0.1 and 6.8 +/- 0.2 were obtained, representing 48 +/- 3% and 52 +/- 3% of the sites, respectively. In contrast, ATP produced a monophasic response with a pED50 value of 8.8 +/- 0.1. These results provide evidence of adenosine receptor and response heterogeneity in the in situ coronary vasculature.

Adenosine

A method to evaluate the response of the coronary circulation of perfused rat heart to adenosine.

Exogenous adenosine causes a monophasic dilation of the coronary vessels in paced, perfused rat heart preparations. Because levels of endogenous adenosine in paced hearts may mask the presence of high potency adenosine receptors, we have developed a method to measure coronary vascular responses in a potassium-arrested heart. Hearts from adult male, Wistar rats were perfused at a constant flow rate of 10 mL/min in the nonrecirculating, Langendorff mode, using Krebs-Henseleit buffer. After 30 min, coronary perfusion pressure was 44 +/- 1 mmHg (mean +/- SEM). Hearts were then perfused with a modified Krebs-Henseleit buffer containing 35 mM potassium. Coronary perfusion pressure increased by 84 +/- 3 mmHg. Adenosine-induced reductions in coronary perfusion pressure were expressed as a percentage of the maximal increase in pressure produced by modified Krebs-Henseleit buffer from the equilibration level. A concentration-response curve for adenosine (n = 6) was biphasic and best described by the presence of two adenosine receptors, with negative log EC50 values of 8.8 +/- 0.3 and 4.3 +/- 0.1, representing 29 +/- 3 and 71 +/- 3%, respectively, of the observed response. Interstitial adenosine sampled by microdialysis during potassium arrest was 25% of the concentration found in paced hearts. Endogenous adenosine in nonarrested hearts may obscure the biphasic response of the coronary vessels to adenosine.

Adenosine

Deleterious effects of hydrogen peroxide on the function and ultrastructure of cardiac muscle and the coronary vasculature of perfused rat hearts.

OBJECTIVE: To examine the effect of hydrogen peroxide on the function and ultrastructure of cardiac muscle and the coronary vasculature in an isovolumic rat heart preparation perfused at constant flow. DESIGN: Ventricular function was monitored via a balloon placed in the left ventricle and the response of the coronary vessels to vasodilators was assessed in hearts arrested with 35 mM potassium and treated with 5 microM phenylephrine to contract the coronary resistance vessels. Changes in coronary perfusion pressure reflect changes in resistance vessel tone. SETTING/ANIMALS: This experimental study consisted of 14 heart preparations, six control and eight treated hearts. INTERVENTIONS: Hydrogen peroxide was included in the perfusate at a final concentration of 250 microM for 20 mins. MAIN RESULTS: Hydrogen peroxide reduced rate-pressure product by 42%, caused a fivefold increase in end-diastolic pressure and increased coronary perfusion pressure by 33%. Also, the response of the coronary vasculature to the endothelium-dependent vasodilator, histamine, and endothelium-independent vasodilator, sodium nitrite, was decreased by 55% and 53%, respectively. Electron microscopy of hydrogen peroxide-treated hearts showed damage to both capillaries and arterioles. Endothelial cells were distorted and contained pinocytotic vesicles, endothelial cell junctions were disrupted and blood vessels were detached from surrounding tissue. A comparatively small amount of injury was seen in the myocyte population. CONCLUSIONS: The greater amount of ultrastructural damage seen in blood vessels compared with cardiac muscle suggests that the smooth muscle and endothelial cells of the vasculature are more susceptible to oxidant injury than the myocytes.

Animals

Feather disorders.

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Animal Husbandry

Myocardial sarcocystosis in a grand eclectus parrot (Eclectus roratus) and a Moluccan cockatoo (Cacatua moluccensis).

Cardiac sarcocystosis is described in a grand eclectus parrot and a Moluccan cockatoo. Many cysts containing metrocytes were observed within cardiac muscle fibers on tissue sections stained with hematoxylin and eosin. Characteristic ultrastructural features of the cyst walls included the presence of villous projections containing microtubules. Compartmentalization of the cysts resulted from inward extensions of the cyst wall. The differential diagnosis of sarcocystosis, the life cycle of the parasite, and control measures are discussed.

Animals