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The effect of dialyser membrane material on intradialytic changes in platelet count, platelet aggregation, circulating platelet aggregates and antithrombin III.

Blood surface interaction during hemodialysis leads to impairment of platelet function and decrease in platelet number, which besides heparinization, may cause or exacerbate bleeding in risk patients. Furthermore, antithrombin III has been shown to increase during dialysis, probably due to vascular endothelial injury caused by infusion of activated platelets into the patient. 23 patients were examined during two successive dialyses, using membranes based on regenerated cellulose (RC) and cellulose acetate (CA). In 12 of the patients, platelet aggregation induced by ADP, circulating platelet aggregates and immunological AT III and AT III activity were determined. Irrespective of the membrane used, hemodialysis was associated with deterioration of platelet function, reflected by a decrease in platelet aggregation with return to predialysis values at the end of dialysis. However, the decline in platelet count and the increase in circulating platelet aggregates were membrane dependent, with RC causing greater changes than CA. No changes in threshold concentration of ADP inducing secondary platelet aggregation or in either immunological AT III or AT III activity were seen during dialysis.

Adolescent

Leukocyte removal filtration of platelet concentrates. A study of platelet loss using 111In-labelled platelets and dynamic gamma camera scintigraphy.

111In labelled platelets and gamma camera scintigraphy were used for the study of the platelet loss during leukocyte removal filtration of stored platelets. Two different filters were examined, Imugard IG500 and Pall PL100, and platelet pools containing varying number of platelet concentrates were filtered. It was found that a sizeable amount of the platelets was trapped within the filter. Some of the trapped platelets could be recovered by rinsing the filters with normal saline. The most appropriate rinsing volume to recover lost platelets seemed to match with the "dead space" volume within the filter. It is concluded that radiolabelled platelets and gamma camera scintigraphy appears to be an excellent method to investigate the dynamic events of platelet loss during leukocyte removal filtration. This technique should be well applicable for the study of technological advances in filter construction.

Blood Platelets

Detection of platelet isoantibodies by (3H)serotonin platelet release and its clinical application to the problem of platelet matching.

The detection of platelet isoantibodies by the release of (3H)serotonin from platelets has been evaluated. The conditions for optimal release of (3H)serotonin with platelet isoantibodies using a microtechnique have been defined. A group of cardiac surgery patients were followed pre- and post-transfusions, with 48percent developing a positive serotonin release assay. Of these patients, 16percent also had a platelet complement-fixing and/or lymphocytotoxic isoantibody. There was variation in the degree of correlation between (3H)serotonin release and lymphocytotoxicity using individual National Institutes of Health typing serum. The matching obtained between family members by both techniques showed a close correlation when each technique was evaluated separately using the same NIH typing serum. The detection of iso-antibodies in patients with hematological malignancies correlated with the unresponsiveness to unmatched platelet transfusions in 15 out of 17 cases. The use of the patient's isoantibody to matched platelets of family members by (3H)serotonin release correlated well with the clinical response to transfusion with these platelets. The data suggest that (a) platelet isoantibodies can be detected with increased frequency by (3H)serotonin release; (b) (3H)serotonin release is a specific reaction depending on the surface antigen of the platelet; and (c) the method can be used to match compatible family members for platelet transfusions.

Blood Donors

Platelet turnover and kinetics in immune thrombocytopenic purpura: results with autologous 111In-labeled platelets and homologous 51Cr-labeled platelets differ.

Mean platelet survival and turnover were simultaneously determined with autologous 111In-labeled platelets (111In-AP) and homologous 51Cr-labeled platelets (51Cr-HP) in ten patients with chronic immune thrombocytopenic purpura (ITP). In vivo redistribution of the 111In-AP was quantitated with a scintillation camera and computer-assisted image analysis. The patients were divided into two groups: those with splenic platelet sequestration (spleen-liver 111In activity ratio greater than 1.4), and those with diffuse sequestration in the reticuloendothelial system. The latter patients had more severe ITP reflected by pronounced thrombocytopenia, decreased platelet turnover, and prominent early hepatic platelet sequestration. Mean platelet life span estimated with 51Cr-HP was consistently shorter than that of 111In-AP. Platelet turnover determined with 51Cr-HP was thus over-estimated. The difference in results with the two isotope labels was apparently due to greater in vivo elution of 51Cr. Although the limitations of the techniques should be taken into account, these findings indicate that platelet turnover is not always normal or increased in ITP, but is low in severe disease. We suggest that this may be ascribed to damage to megakaryocytes by antiplatelet antibody. The physical characteristics in 111In clearly make this radionuclide superior to 51Cr for the study of platelet kinetics in ITP.

Adolescent

VIP elevates platelet cyclic AMP (cAMP) levels and inhibits in vitro platelet activation induced by platelet-activating factor (PAF).

Platelet-activating factor (PAF), a potent endogenous phospholipid released by a variety of mammalian cells, induces platelet activation in vivo and in vitro. Little is known, however, about the physiological modulation of its actions. We have examined the ability of two naturally occurring compounds which stimulate cAMP production, vasoactive intestinal peptide (VIP) and prostacyclin (PGI2), to inhibit PAF-induced platelet aggregation and secretion in vitro. Washed, [3H]serotonin-labeled, rabbit platelets were incubated 60 sec in the presence of VIP, PGI2 or 3-isobutyl-1-methylxanthine (IBMX) and subsequently stimulated with PAF. In separate studies, cAMP levels were determined in similar aliquots of platelets incubated for 30 sec with VIP, PGI2 or IBMX. VIP, PGI2 and IBMX inhibited platelet aggregation and secretion in a dose-dependent manner. Fifty percent inhibition was achieved at final concentrations of 1.7 X 10(6) M VIP, 3.6 X 10(6) M PGI2 and 6.5 X 10(5) M IBMX. IBMX potentiated the inhibitory effects of VIP and PGI2 on PAF-induced platelet activation. VIP and PGI2 elevated platelet cAMP levels four-fold and 50-fold, respectively, in the presence of 10(3) M IBMX. These findings demonstrate that VIP inhibits PAF-induced platelet activation, with a potency comparable to that of PGI2.

1-Methyl-3-isobutylxanthine

The relationship of insulin antibodies, platelet-fixing immune complexes and platelet-associated IgG to in vitro platelet aggregation and thromboxane B2 synthesis in childhood type 1 (insulin-dependent) diabetes mellitus.

The relationship of insulin antibodies, platelet-fixing soluble immune complexes and platelet associated IgG to in vitro platelet aggregation and thromboxane B2 synthesis was studied in a group of children with type 1 (insulin-dependent) diabetes mellitus. Insulin antibodies, through the formation of insulin anti-insulin platelet-fixing immune complexes, seem to increase the levels of platelet associated IgG and both insulin immunity and increased platelet associated IgG are associated with the highest degree of platelet aggregation and thromboxane synthesis. These data suggest a possible role of immune factors in the platelet disfunction of diabetic subjects. Both platelet abnormalities and immune factors have been thought to play a role in the pathogenesis of the late diabetic complications. In this paper data concerning a possible interaction between these two factors are presented.

Adenosine Diphosphate

Expression of coagulant activity in human platelets: release of membranous vesicles providing platelet factor 1 and platelet factor 3.

The relationship between the appearance of membrane-associated factor V-like activity (platelet factor 1, PF1) and phospholipid-like catalytic activity (platelet factor 3, PF3) has been examined, in vitro, in collagen-stimulated, human platelets. Both activities increased 7 fold upon collagen treatment relative to stirred controls. After sedimentation of stimulated platelets, 31% of total PF1 and 41% of PF3 remained in the supernatant fraction. PF1 eluted from a Sepharose CL-4B column in the same void volume fractions as PF3, phospholipid, and vesicular particles. These fractions had roughly 100 fold (lipid basis) or 1000 fold (protein basis) enhanced specific activity when compared to the stimulated platelet suspension. Freeze-fracture electron microscopy demonstrated that these void volume fractions contain two populations of membranous vesicles (80-200 nm and 400-600 nm in diameter). Upon centrifugation of the void volume fractions, PF1 and PF3 activities, phosphate-containing material, and ultraviolet-absorbing material all sedimented at the same rate, indicating that PF1 and PF3 are activities associated with one or both of the platelet-derived vesicle populations. Finally, we examined the effects of inhibitors on the appearance of PF1, PF3, platelet factor 4, total intrinsic factor V activity, and serotonin as well as on platelet aggregation. These studies suggest that the collagen-stimulated release of PF1 and PF3 is not coupled to either platelet aggregation or PF4 release but is probably a separate phase of the release reaction.

Blood Coagulation Factors

In-vitro platelet sensitivity to collagen-induced aggregation and in-vitro platelet deterioration rate during storage, are both inversely proportional to the in-vivo blood platelet concentration in normal individuals: preliminary documentation of these theoretically predictable relationships.

This preliminary study documents two new functional relationships for platelets obtained from normal subjects, whose individual blood platelet concentrations (IBPCs) are in the normal range. Firstly, platelets from subjects (or donors) with high-normal IBPCs are the least sensitive to collagen-induced aggregation (a significant inverse correlation). This may be of importance in determining the likely efficacy of fresh platelet transfusions obtained from donors with different IBPCs within the normal range. Secondly, platelets from subjects/donors with high-normal IBPCs deteriorate less rapidly during storage (a significant inverse correlation), perhaps due to differences in platelet biochemical activity between individuals. Such measurements of platelet deterioration rate were based upon the development of a new experimental technique, in which sterile test-PRP was incubated at 37 degrees C with continuous (quarter-hourly) indirect measurements of changes in platelet morphology. This tube-based method is described in detail. The functional relationships observed do have a theoretical basis within the work of others, which is appopriately outlined. Particular discussion pivots around the possibility of using the deterioration rate relationship to predict how therapeutic platelet concentrates prepared from a given donor of know IBPC, may retain their morphological integrity during routine blood bank storage.

Adolescent

[Efficacy of leukocyte-depleted platelet concentrates for prevention of HLA-alloimmunization in patients with frequent platelet transfusions: a prospective multi-institutional study using a polyester platelet filter].

A prospective multi-institutional study was conducted to assess the efficacy of leukocyte-depleted platelet concentrates, prepared by a method using a newly developed polyester filter, in the prevention of HLA-alloimmunization in patients with hematological disorders. Patients who were expected frequent platelet transfusions, were assigned into two groups, receiving either standard platelet concentrates (control group) or leukocyte-depleted platelet concentrates prepared through a polyester platelet filter, Sepacell-PL (filtered group). All patients received leukocyte-depleted red cell products. Of III patients enrolled, 72 were evaluable, 23 in the control and 49 in the filtered group. Both groups were comparable according to age, sex ratio, underlying disorders, previous exposure to alloantigens by transfusion and/or pregnancy. There was no statistically significant difference in the number and duration of transfusion in the two groups. There were significant differences in HLA-alloimmunization rate (9 cases out of 23, 39% in the control group versus 4 cases out of 49, 8% in the filtered group; p less than 0.01) and refractoriness to platelet transfusion from random donors (6 cases out of 23, 26% in the control group versus 2 cases out of 49, 4% in the filtered group; p less than 0.05). These results indicated that leukocyte-depleted platelet concentrates prepared through the polyester platelet filter are beneficial to reduce HLA-alloimmunization in patients with frequent platelet transfusions.

Adolescent

Platelet prostanoids in interaction of platelets with collagen substrates. I. Activation of platelets by surfaces coated with different types of human collagen.

We have studied the interaction of human platelets with surfaces coated with human type I, III, IV, and V collagen (CI, CIII, CIV, and CV). It was established using scanning electron microscopy that the reactivity of the collagen substrates for platelets varies widely. On CV, only the initial attachment of platelets takes place; spreading actively goes on CIV while on CI and CIII, along with spreading, the formation of multilayer thrombi-like platelet aggregates occurs. The production of malondialdehyde induced by the interaction of platelets with CI and CIII substantially exceeds that stimulated by CIV and CV. Indomethacin practically completely inhibits the formation of thrombi-like aggregates but only by 25% inhibits platelet spreading. An ADP-scavenger creatine phosphate/creatine phosphokinase inhibits the formation of thrombi-like aggregates and platelet spreading by 25-30%. The obtained data demonstrate that: (i) the formation of thrombi-like aggregates on CI and CIII is mediated mainly by the synthesis of platelet prostanoids, and not by the ADP release; (ii) the spreading of platelets on CIV, CIII, and CI is only partially mediated by prostanoid synthesis and ADP release which suggests a participation of other mechanisms in this process.

Blood Platelets

Circulating aggregated platelets, number of platelets per aggregate, and platelet size during acute myocardial infarction.

Circulating aggregated platelets (total, reversibly and irreversibly aggregated), the number of platelets per aggregate and "big" platelets were measured by a modification of the Wu and Hoak method in 42 patients on the first, second and fifth day of acute myocardial infarction (AMI). Among them, 30 had an uncomplicated course and 12 patients had complications that occurred between the 5th and 10th day of hospitalization (7 patients had reinfarction and 5 died). In all patients the measured parameters were elevated compared with those of control subjects. There was a significant increase, especially after the first observation day, in the values of total aggregated platelets (37 +/- 11% vs 26 +/- 12%, p < 0.001), reversibly aggregated platelets (27 +/- 9% vs 17 +/- 8%, p < 0.001) and the average platelets per aggregate (8.6 +/- 0.3 vs. 2.3 +/- 0.4) in patients with versus without complications. In considering the role of platelets in the development of AMI, these findings may add information to the role of platelets in determining the course of AMI.

Blood Platelets

A study of hemostasis in ischemic cerebrovascular disease. II. Abnormalities in platelet ADP release, platelet cyclooxygenase regeneration time and platelet factor 3 availability.

Most earlier studies of platelet function in stroke patients have been performed in the acute phase and are hampered by diagnostic insecurity. A sample of totally 67 young adults below the age of 55, with ischemic cerebrovascular disease (TIA and minor stroke) were investigated at a late stage after acute disease and compared to 20 healthy controls. Patients with atherosclerotic signs at cerebral angiography had significantly (p less than 0.05) higher platelet factor 3 availability than angionegative patients. Unexpectedly, female patients compared to male patients had significantly (p less than 0.05) larger ADP-release after stimulation with collagen in vitro. Furthermore, when female patients were compared to female controls a significantly (p less than 0.05) increased platelet factor 3 availability was found. The results indicate that platelets in female patients may have an increased tendency to aggregate in vivo. Patients had significantly (p less than 0.01) shortened platelet cyclooxygenase regeneration half times (PRT). This was correlated to high levels of factor VIII related antigen (r=0.59) and high levels of factor VIII biological activity (r=0.67), indicating that platelets may be consumed by platelet adhesion and mural thrombi formation in abnormal vessel walls. PRT appears to be a reliable method to assess platelet function in vivo and to optimize aspirin dose and dose intervals in the individual.

Adenosine Diphosphate

Deficiency of platelet membrane glycoprotein Ia associated with a decreased platelet adhesion to subendothelium: a defect in platelet spreading.

A bleeding disorder with absent collagen-induced platelet aggregation and adhesion has been described in a patient whose platelets failed to express surface glycoprotein Ia. We studied the interaction of her platelets with subendothelium in an annular perfusion chamber and the interaction with purified human collagen type III in a rectangular perfusion system under flow conditions. Platelet adherence was almost completely absent both at low and high shear rates. The few platelets which adhered remained in the contact stage without subsequent spreading and aggregate formation. Addition of a monoclonal antibody, which was directed against the von Willebrand moiety of FVIII-VWF, to the blood, completely abolished platelet adherence at high shear rates and had a partial effect at low shear rates. These data indicate that von Willebrand factor plays a role in the initial attachment (contact stage) of platelets to subendothelium. We conclude that the bleeding disorder and excessively prolonged bleeding time in our patient are caused by a new specific defect of the platelet-vessel wall interaction.

Blood Coagulation Disorders

Activation of phospholipase C is dissociated from arachidonate metabolism during platelet shape change induced by thrombin or platelet-activating factor. Epinephrine does not induce phospholipase C activation or platelet shape change.

The present study compares the molecular mechanism by which thrombin, platelet-activating factor, and epinephrine induce platelet activation. Thrombin and platelet-activating factor induce an initial activation of phospholipase C, as measured by formation of 1,2-diacylglycerol and phosphatidic acid, during platelet shape change which is independent of and dissociated from metabolism of arachidonic acid. Phospholipase C activation and shape change are independent of extracellular Ca2+ and Mg2+. Formation of cyclooxygenase products occurs subsequent to the initial activation of phospholipase C and those metabolites are associated with platelet aggregation and further activation of phospholipase C. On the other hand, epinephrine is an unique platelet stimulus since it requires extracellular divalent cations and does not induce platelet shape change or activation of phospholipase C. Our results indicate that activation of phospholipase C may be a mechanism by which physiological agonists can activate platelets independently of extracellular divalent cations.

Arachidonic Acid

Characterization of human platelet vasopressin receptor and the relation between vasopressin-induced platelet aggregation and vasopressin binding to platelets.

Immunoreactive AVP was found to be much higher in platelets than in platelet-free plasma (PFP) in normal subjects (12.8 +/- 6.3 versus 1.7 +/- 0.8 fmol/ml). AVP levels in PFP were appreciably elevated in parallel with the elevation of plasma osmolality induced by the acute osmotic stimulation, while the AVP levels in platelets did not change before and after the stimulation. Binding studies on intact platelets demonstrated specific binding sites for [3H]AVP. The specific binding was time, temperature and concentration-dependent, saturable and reversible, with the maximal binding capacity (Bmax) of 169.9 +/- 14.4 sites/platelet and affinity of 4.84 +/- 1.15 x 10(8)M-1. The affinity constants for unlabelled AVP, lysine vasopressin (LVP), oxytocin (OT) and dDAVP were 9.0, 8.5, 7.4 and 6.6, respectively, and the inhibition constant for d(CH2)5Tyr(Me)AVP (V1-antagonist) was 7.7. There was a highly significant correlation between the affinity constants of AVP analogues and their relative vasopressor activities in vivo, whereas no such correlation was found between the affinity constants and antidiuretic activities. AVP caused platelet aggregation with the maximal aggregation of 48.0 +/- 25.1% at 230 nM of AVP. A significant correlation was observed between the maximal percentage aggregation and Bmax of [3H]AVP to intact platelets. These results suggest that the platelet vasopressin receptor belongs to the V1 vascular subtype and mediates platelet aggregation.

Adult

Superoxide dismutase cooperates with prostacyclin to inhibit platelet aggregation: a comparative study in washed platelets and platelet rich plasma.

The role of superoxide anions (O2-) in human platelet aggregation in Krebs' buffer or plasma was investigated. In indomethacin (10 microM)-treated washed platelets superoxide dismutase (SOD; 60 U/ml) or ferricytochrome c (FCC; 70 microM) inhibited platelet aggregation by thrombin but not that by collagen or ADP. In addition, in indomethacin (10 microM)-treated washed platelets, SOD significantly potentiated the anti-aggregatory activity of prostacyclin (PGI2) or iloprost when thrombin but not collagen was used as the aggregating agent. In platelet rich plasma, SOD (60 U/ml) did not inhibit platelet aggregation nor did it potentiate the anti-aggregatory activity of iloprost when ADP, collagen or thrombin were used as aggregating agents. Thus, O2- participate in the aggregatory activity of thrombin but not collagen or ADP and PGI2 or iloprost, by reducing the sensitivity of platelets to thrombin, co-operate with SOD to inhibit thrombin-induced platelet aggregation. The interpretation of the use of SOD in experiments involving endothelium-derived relaxing factor (NO) is discussed.

Adenosine Diphosphate

[Relation of the level of platelet membrane glycoproteins, platelet adhesion, platelet aggregation and traditional Chinese medicine syndrome patterns of coronary heart disease].

This experiment made quantitative analysis of platelet GPlb of 56 patients with coronary heart disease and with McAb SZ-2 resisting to human being platelet GP by using the method of indirect immunity fluorescence saturation, observed the changes of coronary heart patients' platelet GPlb based on TCM differentiation of the pattern, and determined the level of PAdT, PAgT. The results showed that the level of platelet GPlb of coronary heart disease was higher than normal. Among them, the acute myocardiac infarction group was the most obvious, followed by the unstable angina pectoris group and the stable angina pectoris group. The level of PAdT, PAgT of coronary heart patients was higher than those of the normal group (P less than 0.005, 0.05); the level of platelet GPlb in blood stasis syndrome group was higher remarkably than the group of having no blood stasis syndrome and the normal (P less than 0.001). These results suggested that it played an important part in the occurrence and development of coronary heart disease as manifested by abnormal increase of platelet GPlb, and enhancement of platelet's adherence and aggregation. The abnormal increase of platelet GPlb is due to pathological mechanism of blood stasis syndrome of coronary heart disease. This experiment also provided a fresh evidence to TCM differentiation of the pattern and treatment of coronary heart disease.

Adult

Platelet parameters. Part I. Platelet counts and mean platelet volume in normal and pregnant subjects.

Platelet counts and mean platelet volume (MPV) were studied in 564 normal subjects and 297 pregnant women using a Coulter Model S-Plus electronic counter. The reproducibility of these measurements both intra- and inter-sample was documented. The mean platelet count in the normal group was 283 x 10(9)/l while the mean MPV was 9.32 fl. An inverse correlation between platelet volume and platelet number was documented (r = -0.38; P less than 0.0001). By interval analysis, this inverse relationship was shown to be non-linear. In the pregnant subjects there appeared to be a progressive decrease in platelet count with advancing gestation; this reached a significant level when the first and third trimesters were compared with each other (P less than 0.05). The MPV was unchanged. The fact that the platelet count decreased in proportion to the red cell count suggested that a common factor, such as haemodilution, was in part responsible. There was again an inverse relationship between MPV and platelet number (r = -0.39; P less than 0.0001) shown to be non-linear by interval analysis.

Blood Platelets