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P Shook

Publications and source records attributed to P Shook.

4 recordsLinked to original sources

Platelet adherence to collagen: role of plasma, ADP, and divalent cations.

The effect of varying methods of platelet preparation and the role of ADP and divalent cations in supporting platelet adherence to collagen and the release of 14C-serotonin were assessed by affinity chromatography on collagen/Sepharose to define physiological conditions for this interaction. Platelets were separated by centrifugation or gel filtration from blood anticoagulated with EDTA or citrate and suspended in native plasma or buffer. After labelling with 51Cr or 14C-serotonin, they were passed though columns of collagen covalently linked to cyanogen bromide-activated Sepharose. Adherence to collagen was less in plasma as compared to buffer, was increased by centrifuging the platelets before testing, and was unaltered by addition of ADP. Removal of ADP with CP/CPK decreased the adherence of gel-filtered citrated and EDTA platelets and washed EDTA platelets (P less than 0.001) but not EDTA platelets in plasma. Adherence and release of citrated platelets in plasma or buffer containing CP/CPK were greater than that of EDTA platelets (P less than 0.01); no difference existed with gel-filtered platelets. The addition of 1 mM Mg++ to citrate or EDTA-anticoagulated washed platelets increased adherence and release (P less than 0.01). The results indicate that the choice of experimental conditions affect the assessment of factors which influence or promote platelet interaction with collagen. Platelet-collagen adherence is enhanced by laboratory manipulations and partially inhibited by normal plasma. Maximal adherence and release occur when divalent cations, particularly Mg++, and ADP are available. Their absence reduces but does not inhibit these reactions.

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The influence of ascorbic acid on platelet structure and function.

To determine the effect on platelet behavior of transient exposure of platelets to ascorbic acid, studies of platelet function and ultrastructure were done before exposure to ascorbic acid at pH 6.5, during exposure to pH 6.5, and after restoration of pH to pre-acidification levels. The effect of ascorbic acid (A.A.) was compared to that of HCl and citric acid (C.A.). ADP- and collagen-induced aggregation of normal platelets were significantly impaired by both A.A. and C.A. but were less affected by HCl. The release of 14C-serotonin was significantly reduced by each agent. The ultrastructure of normal platelets brought to pH 6.5 by A.A. was normal. After neutralization, there was marked dilatation of the open channel system and loss of the disc shape. When platelets were brought to pH 6.5 by A.A., then neutralized, the aggregates which formed after stimulation by ADP or collagen were smaller than normal, the platelets were less closely approximated, and degranulation was less complete. The data show that exposure of platelets to ascorbic acid for short intervals impairs their function when measured after restoration of pH to levels compatible with maximal responses. Platelet survival studies using autologous platelets labelled with 51Cr in the presence or absence of ascorbic acid showed that the recovery of normal platelets was unaffected by ascorbic acid, whereas recovery of platelets from patients with idiopathic thrombocytopenic purpura, idiopathic thrombocythemia, and alcohol-related thrombocytopenia was markedly reduced. The injury resulting from the use of ascorbic acid in preparing platelets for studies of platelet survival in patients with disorders affecting platelets may impair the recovery of the cells, resulting in artifactual changes in the survival studies.

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