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C Boyer-Neumann

Publications and source records attributed to C Boyer-Neumann.

42 records · Page 3Linked to original sources

Factors affecting the stability of tPA and PAI-1 during storage and handling of human plasma for in vitro studies: implications in the determination of tPA and PAI-1 activities.

Factors that influence the physico-chemical conditions of plasma (e.g. pH, dilution, freezing, storage) and thereby the stability of tPA and PAI-1 activities, have been studied and optimized using a solid-phase fibrin-tPA activity assay. Optimal recovery of tPA activity was at a pH of 6.8 +/- 0.2, while at the pHs usually found in thawed plasma, i.e. pH 7.6-8.2, the activity was lower and showed great variability. Free tPA activity was tested in undiluted plasma, while plasma diluted 1:20 was used to recover maximal tPA activity. The corrected value for the diluted plasma and the value for the euglobulin suspensions were similar. In both cases the pH optimum was 7.4. PAI activity levels were tested in undiluted plasma and showed no variations after venous occlusion. Our results indicate that the in vitro determination of tPA activity is directly related to the pH of thawed plasma and not to the freezing procedure or the temperature of storage. Therefore, thawed plasma should be tested at a pH giving the maximal recovery of tPA activity in a particular assay method.

Adult↗

Purification and further characterization of antithrombin III Milano: lack of reactivity with thrombin.

The functional abnormality of Antithrombin III "Milano", a previously described variant with monomeric and dimeric forms of abnormal AT III, has been further characterized. Affinity chromatography on heparin-Sepharose led to the separation and purification of two distinct fractions: fraction I is identical to normal AT III; fraction II (abnormal AT III) reproduces the abnormalities of the AT III "Milano", i.e. lack of thrombin inhibition, increased mobility by two-dimensional immunoelectrophoresis in the absence of heparin and migration as two bands with molecular weights of 60 K and 120 K by sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE). The interaction of both fractions with purified alpha-thrombin was studied by the formation of complexes as well as by affinity chromatography on thrombin-Sepharose. No thrombin-AT III complexes could be demonstrated with either the monomeric or dimeric forms of purified variant AT III at both concentrations of thrombin used. Similarly, no binding to thrombin-Sepharose was observed, thus indicating that the molecular defect of AT III Milano is related to its absence of reactivity with thrombin.

Antithrombin III↗

[Antithrombin III].

The in vivo regulation of coagulation is mainly controlled by plasma inhibitors in which antithrombin III (AT III) plays an importance role. AT III is a glycoprotein which inhibits all serine proteases, except factor, VIIa, generated during the coagulation process. The proteases are inactivated by formation of an equimolecular complex and this reaction is greatly enhanced in the presence of heparin. A similar catalytic process could occur in vivo, involving heparin-like substances present on the surface of the surface of the endothelial cell. The physiological importance of AT III is clearly demonstrated by the high incidence of thromboembolic disease in patients with congenital AT III défficiency.

Antithrombin III↗