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P F Sherman

Publications and source records attributed to P F Sherman.

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Role of adenosine in platelet-mediated reduction in pulmonary vascular permeability.

Previous studies have shown that platelets decrease 125I-labeled albumin permeability across confluent bovine pulmonary artery endothelial cell monolayers. In the current study, we addressed the role of platelets and platelet-derived adenosine (ADO) in vascular barrier function with cultured endothelial cells and isolated perfused lungs. Both 7 x 10(7) platelets/ml and conditioned media prepared from the same concentration of platelets reduced albumin permeability of endothelial monolayers by 37%. This activity was abolished by pretreatment of the platelets with adenosine deaminase (ADA). ADO (10(-7) M) added directly to the monolayer reduced permeability by 19%. Dipyridamole (10(-6) M), an inhibitor of facilitated ADO uptake, was used to evaluate the contribution of endothelial uptake of ADO in the platelet effect. Dipyridamole pretreatment of the endothelial monolayer did not alter the ability of platelets to decrease albumin permeability. Addition of either an A1- or A2-receptor-specific analogue of ADO to endothelial monolayers revealed that only the A1-analogue possessed permeability-decreasing activity. An isolated perfused guinea pig lung model was used to evaluate the effect of platelets on transvascular water flux as measured by the capillary filtration coefficient (Kf,c). Platelets (4.5 x 10(7) platelets/ml) added to the perfusate reduced Kf,c by 29%. Pretreatment of platelets with ADA abolished this response. The addition of ADO (10(-7) M) reduced Kf,c by 11%. Pulmonary vascular resistance was not changed by any intervention. Our results indicate that ADO is a component in platelet-mediated decreases both in albumin permeability across endothelial monolayers and of the capillary filtration coefficient in isolated perfused lungs.

Adenosine

Platelets decrease albumin permeability of pulmonary artery endothelial cell monolayers.

Since platelets may modulate endothelial cell permeability, we examined the effects of platelets on 125I-albumin permeability of cultured bovine pulmonary artery endothelial cell monolayers. The experimental system consisted of endothelial cells grown to confluence on a gelatinized polycarbonate filter. We quantified the diffusive flux of 125I-albumin from luminal chamber to the abluminal chamber. Washed human platelets added to the monolayers decreased the albumin flux in a concentration-dependent manner, with a 65% decrease occurring at the highest concentration of platelets (5 x 10(7) platelets) added to the 700-microliters luminal chamber. In contrast, neither paraformaldehyde-fixed platelets nor fresh red blood cells changed 125I-albumin permeability. Platelets had no effect on 125I-albumin permeability across the gelatinized filters without endothelial cells present. Supernatants of platelet lysates also reduced albumin flux. The effect produced by intact platelets or platelet lysate was not influenced by the presence of ketanserin (a serotonin receptor antagonist), propranolol (a beta-adrenergic receptor antagonist), or aspirin (an inhibitor of cyclooxygenase). Platelets activated by thrombin did not produce an effect that was different from the effect produced by intact platelets. The activity of the supernatant of platelet lysate remained in the aqueous phase after ether extraction. The results indicate that the platelet-mediated decrease in endothelial cell permeability to 125I-albumin is the result of a hydrophilic platelet-derived factor(s) and not secondary to mechanical obstruction of endothelial "leaks" by the platelets.

Albumins