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Biomedical subjects

H M Rinder

Publications and source records attributed to H M Rinder.

At least 37 records · Page 2Linked to original sources

Nitroprusside inhibition of platelet function is transient and reversible by catecholamine priming.

BACKGROUND: The time course and reversibility of sodium nitroprusside's in vivo inhibition of platelet function are unclear. METHODS: Platelet aggregation and P-selectin expression as measures of platelet dense and alpha-granule release, respectively, were examined before and after administration of sodium nitroprusside (18 mg) to human volunteers and in in vitro studies. Hypotension occurring with sodium nitroprusside administration was treated with intravenous crystalloid and/or phenylephrine. RESULTS: Compared with preinfusion studies, platelet aggregation to epinephrine was significantly inhibited immediately and 4 min after discontinuation of the sodium nitroprusside infusion but returned to baseline at 8 and 12 min after discontinuing sodium nitroprusside. However, both dense and alpha-granule release to adenosine diphosphate after in vivo sodium nitroprusside were never significantly inhibited even at the time when sodium nitroprusside infusion was maximal. In contrast to our in vivo findings, in vitro incubation of platelet-rich plasma with sodium nitroprusside resulted in significant inhibition of dense and alpha-granule release to adenosine diphosphate. These in vitro inhibitory effects of sodium nitroprusside were reversed by pretreatment with epinephrine but not phenylephrine. CONCLUSIONS: In normal volunteers, sodium nitroprusside inhibits platelet aggregation to epinephrine but not adenosine diphosphate; inhibition was reversed within 8-12 min after discontinuing sodium nitroprusside. Sodium nitroprusside in vitro inhibition of platelet function to adenosine diphosphate was reversed by epinephrine pretreatment. Because of the rapid reversibility of its antiplatelet effect, sodium nitroprusside may be clinically useful even when there is the potential for impaired coagulation.

Adenosine Diphosphate↗

Blockade of C5a and C5b-9 generation inhibits leukocyte and platelet activation during extracorporeal circulation.

Complement activation contributes to the systemic inflammatory response induced by cardiopulmonary bypass. At the cellular level, cardiopulmonary bypass activates leukocytes and platelets; however the contribution of early (3a) versus late (C5a, soluble C5b-9) complement components to this activation is unclear. We used a model of simulated extracorporeal circulation that activates complement (C3a, C5a, and C5b-9 formation), platelets (increased percentages of P-selectin-positive platelets and leukocyte-platelet conjugates), and neutrophils (upregulated CD11b expression). to specifically target complement activation in this model, we added a blocking mAb directed at the human C5 complement component and assessed its effect on complement and cellular activation. Compared with a control mAB, the anti-human C5 mAb profoundly inhibited C5a and soluble C5b-9 generation and serum complement hemolytic activity but had no effect on C3a generation. Additionally, the anti-human C5 mAb significantly inhibited neutrophil CD11b upregulation and abolished the increase in P-selectin-positive platelets and leukocyte-platelet conjugate formation compared to experiments performed with the control mAb. This suggests that the terminal components C5a and C5b-9, but not C3a, directly contribute to platelet and neutrophil activation during extracorporeal circulation. Furthermore, these data identify the C5 component as a site for therapeutic intervention in cardiopulmonary bypass.

Antibodies, Monoclonal↗

Noninvasive measurement of platelet kinetics in normal and hypertensive pregnancies.

OBJECTIVE: Our purpose was to determine platelet kinetics in pregnancy by means of noninvasive reticulated platelet counts and to examine in a pilot study whether increased reticulated platelet values were associated with preeclampsia and pregnancy-induced hypertension. STUDY DESIGN: Nulliparous women had blood samples drawn at enrollment (first prenatal visit) and at 28 and 36 weeks' gestation. The percent of reticulated platelets (an index of marrow platelet release correlating with increased thrombopoiesis), platelet-associated immunoglobulin, and serum antiplatelet antibody were measured and correlated with the clinical course for each patient. RESULTS: In 31 normal pregnancies the percent of reticulated platelets was never significantly higher than the values for normal nonpregnant women (5.8% +/- 2.2%) in spite of a significant decrease in platelet count by 36 weeks. By contrast, the percent of reticulated platelets in four women with preeclampsia rose significantly to 13.9% +/- 11.2% at 28 weeks, before the onset of clinical signs. No women had evidence of immune platelet destruction. CONCLUSION: In normal pregnancy the decline in platelet count is not accompanied by an increase in marrow platelet production, suggesting that the platelet decrease is dilutional without a compensatory thrombopoietic response or alternatively that thrombopoiesis is down-regulated during normal pregnancy. However, platelet production does increase before the onset of symptoms in a small number of women in whom preeclampsia or pregnancy-induced hypertension subsequently develops. These findings may justify a larger prospective study to determine whether noninvasive serial measurement of the percent of reticulated platelets can predict those pregnant women at risk for hypertension and preeclampsia.

Adolescent↗

In vitro characteristics of white cell-reduced single-unit platelet concentrates stored in syringes.

BACKGROUND: Platelet concentrates (PCs) for premature infants may be subjected to filtration, centrifugation, and various storage conditions before transfusion. STUDY DESIGN AND METHODS: As there are few data on the cumulative effect of these procedures on PCs, platelet properties (including biochemical and functional in vitro assays) were evaluated after the processing of single units of PCs through a 1-unit-capacity high-efficiency white cell (WBC)-reduction filter followed by syringe storage at either 22 or 37 degrees C for 6 hours. Two- and 5-day-old PCs, volume-reduced PCs, and prestorage WBC-reduced PCs were evaluated. RESULTS: WBC filtration consistently resulted in a 3 to 4 log10 reduction in WBCs, with less than 15-percent platelet loss. No adverse effects of platelet function or evidence of increased platelet activation as determined by the percentage of P-selectin positivity were noted. A decrease in pH associated with increased lactate production and consumption of glucose was observed following syringe storage under all conditions tested. Such changes were most pronounced, however, with volume-reduced PCs stored at 37 degrees C (pH 6.31 +/- 0.15, lactate 23.0 +/- 3.06 mmol/L). All pH levels at the end of storage were above the minimum Food and Drug Administration requirement (pH 6.0). CONCLUSION: The in vitro data suggest that single units of PCs can undergo WBC filtration followed by syringe storage for up to 6 hours and still maintain acceptable storage characteristics. The practice of maintaining volume-reduced PCs in syringes for 6 hours at 37 degrees C in isolettes during transfusion should, however, be avoided.

Blood Component Removal↗

Platelet alpha-granule release in cocaine users.

BACKGROUND: Cocaine use has been associated with arterial occlusion resulting from platelet-rich thrombi and with an accelerated, often atypical atherosclerotic lesion that could be ascribed to platelet activation and platelet alpha-granule release. METHODS AND RESULTS: Using a flow cytometric method to quantitate the percent of circulating activated platelets in whole blood (those that express the alpha-granule membrane protein P-selectin), we found that 5 of 25 samples from 12 long-term cocaine users had a baseline level of circulating activated platelets > 3 SD (range, 19% to 60%) above the mean (4.4 +/- 3.7%, mean +/- 1 SD) for 85 nonusers (sample n = 130). This subset resulted in a significantly higher mean baseline level of circulating activated platelets (11.8 +/- 14.4%) for all cocaine users (P = .01). By contrast, cocaine and its metabolites, at concentrations documented as obtainable during in vivo cocaine use (10(-7) to 10(-5) mol/L), had no effect on in vitro platelet activation or aggregation, either directly or in concert with platelet agonists. However, in experiments in which cocaine users received blinded infusions of placebo or cocaine, the mean percent of circulating activated platelets rose significantly (P < .05) after infusion of either placebo (peak 77 +/- 31%) or cocaine (peak 65 +/- 28%), the latter at doses resulting in peak plasma cocaine levels averaging < 10(-6) mol/L. CONCLUSIONS: Long-term cocaine use in some subjects is intermittently associated with high basal levels of circulating platelets that have undergone alpha-granule release. The inability of cocaine and its metabolites at concentrations of 10(-7) to 10(-5) mol/L to cause platelet P-selectin expression in vitro in this study, coupled with the acute increase in circulating activated platelets observed in vivo after either cocaine or placebo infusion, suggests that in vivo platelet alpha-granule release associated with cocaine use may occur through indirect rather than direct effects of the drug.

Blood Platelets↗

Neutrophil but not monocyte activation inhibits P-selectin-mediated platelet adhesion.

Selectins are Ca(2+)-dependent glycoprotein receptors that mediate the adhesion of activated platelets or endothelial cells to unstimulated leukocytes. Using purified cell fractions, we examined activated neutrophil adhesion to P-selectin-expressing platelets and found that phorbol 12-myristate 13-acetate (PMA), platelet activating factor C16 (PAF), and n-formyl-met-leu-phe (fMLP) pretreatment of neutrophils inhibited activated platelet adhesion. Furthermore, PMA and PAF were capable of dissociating established resting neutrophil-activated platelet conjugates. Since L-selectin is downregulated after leukocyte activation and has been postulated as a ligand for P-selectin, we preincubated resting neutrophils with Dreg-2 and Dreg-56, blocking monoclonal antibodies (MoAb) to L-selectin; these MoAb failed to inhibit activated platelet adhesion. To more closely approximate in vivo conditions of leukocyte and platelet activation, we also employed a whole blood (WB) model of leukocyte-platelet adhesion. We found that simultaneous activation of both platelets and leukocytes by PMA caused an immediate rise in the % of P-selectin-positive platelets accompanied by a rapid increase in monocyte-platelet and neutrophil-platelet conjugates; however, the % of neutrophil-platelet conjugates subsequently declined over 30-60 min to baseline levels while monocyte-platelet adhesion remained elevated over 90 min. By contrast, selective platelet activation in WB by thrombin resulted in an increase in platelet P-selectin expression accompanied by a sustained (90 min) elevation in both monocyte- and neutrophil-platelet conjugates. This increase in leukocyte-platelet conjugates after thrombin was not inhibited by preincubation of WB with Dreg-2 or Dreg-56. We conclude that neutrophil activation decreases the expression of the ligand for platelet P-selectin within 30-60 min resulting in inhibition of neutrophil-platelet adhesion and dissociation of existing neutrophil-platelet conjugates.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Adhesion Molecules↗

Aspirin does not inhibit adenosine diphosphate-induced platelet alpha-granule release.

The involvement of metabolites of arachidonic acid in platelet-dense granule secretion and secondary platelet-platelet interactions is well characterized. However, their role in heterotypic interactions dependent on alpha-granule secretion is less well understood. Using platelet-surface expression of P-selectin as a marker of alpha-granule secretion, we have shown that: (1) aspirin treatment of platelets at doses that block dense granule secretion does not inhibit alpha-granule secretion to adenosine diphosphate (ADP); (2) synergism between epinephrine and ADP in the induction of P-selectin expression is similarly unaffected by aspirin; and (3) the ability of P-selectin to mediate adhesion of activated platelets to monocytes and polymorphonuclear lymphocytes in whole blood is also unchanged by aspirin treatment. To further explore the mechanisms responsible for platelet alpha-granule secretion, we have shown that inhibition of Na+/H+ exchange by either acidification of the extracellular medium or amiloride treatment blocked ADP-induced P-selectin expression. In contrast, incubation with the platelet lipoxygenase inhibitor 5,8,11-eicosatrynoic acid, by itself and with aspirin, did not decrease ADP-induced P-selectin expression. We conclude that platelet alpha-granule secretion in response to ADP is dependent on intact Na+/H+ exchange but is independent of the lipoxygenase- and cyclooxygenase-dependent metabolites of arachidonic acid.

Adenosine Diphosphate↗

Determination of the percentage of thiazole orange (TO)-positive, "reticulated" platelets using autologous erythrocyte TO fluorescence as an internal standard.

Determination of the percentage of thiazole orange (TO)-positive or "reticulated" platelets by flow cytometry has been advocated as an aid in the diagnosis of thrombocytopenic disorders. However, a reproducible method for determining control fluorescence and setting threshold values on a routine clinical basis has not been described. We used erythrocyte TO fluorescence in whole blood as an internal standard to set threshold markers for TO fluorescence of autologous, purified platelets. Since platelets have approximately a threefold higher TO fluorescence than erythrocytes, multiplying the erythrocyte threshold marker by 3 allowed a determination of the percentage of "reticulated" platelets in 29 normal controls. This value was 3.64% +/- 2.10% (S.D.) in men and 5.79 +/- 2.22% (S.D.) in women; there was a significant (P < 0.05) difference between normal men and women for this measurement. Applying this method to our earlier studies of normals and patients with immune thrombocytopenic purpura confirmed its ability to discriminate between these populations with similar sensitivity and specificity as previously reported. This method controls for fluctuations in TO labeling and fluorescence and does not require daily determination of a new normal control value.

Adult↗

Activation in stored platelet concentrates: correlation between membrane expression of P-selectin, glycoprotein IIb/IIIa, and beta-thromboglobulin release.

By using two distinct measurements of alpha-degranulation (surface P-selectin [alpha-granule membrane protein-140] expression and beta-thromboglobulin [beta-TG] release) and quantitation of glycoprotein (GP) IIb/IIIa surface density, stored platelet concentrates were evaluated to determine a) which method of measuring platelet alpha-granule release was more sensitive in detecting early platelet activation; b) whether Day 1 levels of activation predicted the extent of activation or cell lysis on Day 5 of storage; and c) whether changes in surface GPIIb/IIIa density were primarily dependent on platelet activation. By using samples from paired and unpaired units stored for 1, 3, and 5 days, four observations could be made. 1) A flow cytometric assay for the percentage of P-selectin-positive platelets was more sensitive for early detection of platelet activation than was measurement of beta-TG release. This finding was most likely due to enhanced sensitivity in detecting platelets that had undergone partial alpha-granule release. 2) Total P-selectin expression correlated with beta-TG release, which indicated that the extent of alpha-granule membrane fusion with the external platelet membrane was proportional to the amount of alpha-granule contents released into the supernatant. 3) All of the activation measurements on Day 1 predicted the activation values, but did not predict the degree of cell lysis (measured by lactate dehydrogenase discharge), on Day 5 of storage. 4) Surface GPIIb/IIIa density was increased on the subset of P-selectin-positive platelets as compared with the P-selectin-negative subset at all times during storage, but, within each subset, GPIIb/IIIa surface density did not significantly increase over the time of storage.

Antigens, CD↗

Reticulated platelets in the evaluation of thrombopoietic disorders.

The laboratory diagnosis of immune platelet destruction has relied predominantly on the presence or absence of megakaryocytes in bone marrow. Recently, examination of peripheral blood platelets for high RNA content (reticulated platelets) or for elevated levels of platelet-associated IgG have been suggested as less invasive diagnostic tests. We used thiazole orange fluorescence labeling to determine the percentage of circulating reticulated platelets and two antibodies with different specificities directed against human IgG to measure platelet-associated IgG by flow cytometry in 59 patients with either immune thrombocytopenic purpura (n = 23) or chemotherapy-induced thrombocytopenia (n = 36). The percentage of reticulated platelets in patients with immune thrombocytopenia was significantly increased (38.6% +/- 27.4% [mean +/- 1 SD]), compared with patients receiving chemotherapy and normal subjects (7.2% +/- 3.3% and 2.9% +/- 2.2%, respectively). However, 17% of patients with immune thrombocytopenia had reticulated platelet values in the range observed for normal subjects and for patients with chemotherapy. Although one third of patients with immune thrombocytopenia had very high platelet IgG levels, the majority could not be distinguished from patients receiving chemotherapy solely on this basis. Combining the reticulated platelet determination with the IgG data did not improve the sensitivity or specificity of the reticulated platelet determination alone. We conclude that a flow cytometric assay for reticulated platelets is a better discriminant than flow-measured platelet IgG for diagnosing immune platelet destruction. We further postulate that the subset (17%) of patients with immune destruction who have relatively low percentages of reticulated platelets may represent patients with an inappropriately low thrombopoietic response.

Adult↗

Cardiopulmonary bypass induces leukocyte-platelet adhesion.

Cardiopulmonary bypass (CPB) has been demonstrated to activate platelets, producing an increased number of circulating platelets that have undergone alpha-granule release and express granule membrane protein-140 (GMP-140) on their surface. In vitro, GMP-140 mediates activated platelet adhesion to neutrophils (PMN) and monocytes, causing the formation of leukocyte-platelet conjugates. Using a newly developed assay that measures the percentage of circulating leukocyte-platelet conjugates in whole blood, we studied 17 patients undergoing CPB and have determined that (1) monocyte-platelet conjugates increased significantly during CPB, from 18% +/- 1.5% to 44% +/- 4.5% (mean +/- SEM) by the end of CPB, while PMN-platelet conjugates increased only slightly and lymphocyte-platelet conjugates decreased; (2) the time course of the increase in monocyte- and PMN-platelet conjugates paralleled that of the increase in circulating activated platelets, as determined by the presence of surface GMP-140; and (3) monocyte activation, as assessed by increased surface expression of CD11b, showed a gradual increase similar to the increase in monocyte-platelet conjugates, while PMN surface CD11b peaked immediately after the start of CPB. We conclude that CPB, through increased platelet GMP-140 expression, causes formation of monocyte-platelet, and to a lesser extent, PMN-platelet conjugates. The activation of monocytes and PMN on CPB, as evidenced by CD11b expression, occurs with differing time courses.

Blood Platelets↗

The significance of platelets with increased RNA content (reticulated platelets). A measure of the rate of thrombopoiesis.

Direct flow cytometric measurement of nucleic acid content in individual platelets is possible using the fluorescent dye Thiazole Orange (Becton-Dickinson, San Jose, CA). When applied to studies of thrombocytopenic patients, platelets with elevated nucleic acid content ("reticulated platelets") can be identified and quantitated. Labeling of these platelets is saturable and is abolished by treatment with RNAse. It has been suggested that, similar to the erythrocyte reticulocyte response to anemia, the number of these platelets appearing in the circulation may provide an estimate of the rate of thrombopoiesis. The authors studied 229 thrombocytopenic patients, measuring both reticulated platelets and platelet-associated immunoglobulin. The results show that for the subset of patients with normal levels of platelet-associated immunoglobulin, the average absolute number of reticulated platelets is independent of platelet count and remains in the normal range. For those with elevated levels of platelet-associated immunoglobulin, the absolute number of reticulated platelets increases in patients who are moderately thrombocytopenic (60 to 100 x 10(9)/L) but decreases to normal or subnormal levels as thrombocytopenia worsens. The latter finding has been duplicated in studies of mice made thrombocytopenic by injection of anti-platelet antiserum. These results are consistent with the hypothesis that reticulated platelets are subject to peripheral destruction at the same rate as mature platelets, and that in the severely thrombocytopenic patient their level may decrease despite an appropriate marrow thrombopoietic response.

Animals↗

Activation of platelet concentrate during preparation and storage.

This review will discuss how stored platelets become activated and will examine their ability to function and survive in vivo, posttransfusion. Experimental methods which have been shown to alter platelets during storage will be detailed. Using beta-thromboglobulin (beta-TG) and surface adhesion receptors as markers, investigators have examined the activation changes in platelet concentrates during preparation and storage. Resuspension of the platelet pellet after isolation of platelet-rich plasma appears to play a major role in producing platelet activation and beta-TG release during preparation. However, there is a significant amount of interdonor variability in platelet activation even at this early stage of storage. Over 5 days of storage, platelets release approximately 50% of their beta-TG contents. Furthermore, between 40% and 60% of the platelets express the alpha-granule membrane protein, P-selectin (GMP-140), during storage, which is also indicative of platelet activation. These activation changes correlate to some degree with platelet recovery posttransfusion but clearly do not explain the full lesion of platelet storage. The surface density of two platelet membrane receptors, glycoproteins (GP) Ib and IIb/IIIa, also change with activation, although in opposite directions. Platelet surface GPIb decreases initially with storage and then recovers, perhaps due to its relocation to the platelet surface from an intracellular pool. In contrast to GPIb, mean platelet surface GPIIb/IIIa increases slightly during storage, probably as a consequence of platelet activation and release of alpha-granule GPIIb/IIIa to the surface. Some hypotheses are offered regarding how these activated platelets can continue to circulate after transfusion. Further exploration of the platelet storage lesion will hopefully provide needed answers and thus permit better treatment of hemostatic disorders in the future.

Biomarkers↗

Dynamics of leukocyte-platelet adhesion in whole blood.

The dynamics of leukocyte-platelet adhesion and platelet-platelet interaction in whole blood are not well understood. Using different platelet agonists, we have studied the whole blood kinetics of these heterotypic and homotypic interactions, the relative abilities of different leukocyte subsets to participate in platelet adhesion, and the ligands responsible for adhesion. When platelet aggregation was inhibited by the Arg-Gly-Asp-Ser (RGDS) peptide, thrombin stimulation of whole blood resulted in platelet expression of granule membrane protein 140 (GMP-140) and, simultaneously, a marked increase in the percentage of monocytes and neutrophils (PMN) binding platelets, as well as an increase in the number of platelets bound per monocyte and PMN. Lymphocytes were unaffected. Monocytes bound more platelets and at an initially faster rate than PMN. This increase in monocyte and PMN adhesion to platelets was completely inhibited by the blocking monoclonal antibody (MoAb), G1, to GMP-140. When the combination of epinephrine and adenosine diphosphate (epi/ADP) was used as a less potent agonist in the presence of RGDS, GMP-140 expression per platelet was less, and while monocyte-platelet conjugates formed, PMN-platelet conjugates did not. With epi/ADP in the absence of RGDS, there was an immediate, marked decrease in the percentage of all leukocytes with bound platelets, simultaneous with an increase in the percentage of unbound platelet aggregates. As these platelet aggregates dissociated, the percentage of monocytes and PMN with adherent platelets increased, with monocytes again binding at a faster initial rate than PMN. This recovery of monocyte and PMN adhesion to platelets was also inhibited by the G1 MoAb. We conclude that: (1) monocytes and PMN bind activated platelets in whole blood through GMP-140; (2) monocytes have a competitive advantage over PMN in binding activated platelets, particularly when less potent platelet agonists are used; and (3) platelet aggregate formation initially competes unactivated platelets off leukocytes; subsequent aggregate dissociation allows the now activated platelets to readhere to monocytes and PMN through GMP-140. These studies further elucidate the dynamic interaction of blood cells and possible links between coagulative and inflammatory processes.

Adenosine Diphosphate↗

Activated and unactivated platelet adhesion to monocytes and neutrophils.

To examine the possible receptor-ligand pairs mediating adhesion of activated and "unactivated" platelets to leukocytes and the kinetics of leukocyte-platelet binding, we developed a flow cytometric assay using isolated cell fractions to accurately measure heterotypic cell adhesion, including both total leukocyte-platelet conjugate formation as well as the number of platelets bound per leukocyte. We have shown that (1) activated platelet binding to both polymorphonuclear leukocytes (PMN) and monocytes is dependent on both a specific epitope (blocked by monoclonal antibody G1) of granule membrane protein-140 (GMP-140) and the presence of divalent cations; (2) unactivated platelets bind to 87% of viable, resting monocytes but to only 34% of PMN; (3) the receptor(s) on unactivated platelets that mediate adhesion to PMN and monocytes do not require divalent cations and become nonfunctional after thrombin activation; and (4) the kinetics of platelet adhesion to monocytes and PMN indicate that monocyte adhesion is favored over neutrophil adhesion. We conclude that platelet-heterotypic cell adhesion is a dynamic process reflecting the activation status of the platelet and differential binding abilities of leukocytes.

Antibodies, Monoclonal↗

Progressive platelet activation with storage: evidence for shortened survival of activated platelets after transfusion.

Platelets are known to become activated during storage, but it is unclear whether such activation affects recovery or survival after platelet concentrate (PC) transfusion. With the use of flow cytometry to determine the percentage of platelets expressing the alpha-granule membrane protein 140 (GMP-140), a known adhesive ligand appearing on the platelet surface after activation, several studies were conducted. These investigations evaluated 1) the occurrence of significant platelet activation over time in PCs (n = 46) stored under standard blood bank conditions; 2) the correlation between platelet activation and platelet recovery in normal subjects after PC storage (n = 12), as assessed by the recovery of Indium-labeled platelets; and 3) the recovery of activated and unactivated platelets in thrombocytopenic cancer patients transfused with standard PCs (n = 11). It was determined 1) that an increasing duration of storage of PC was associated with increasing platelet activation as measured by the percentage of platelets expressing GMP-140, progressing from a mean of 4 +/- 2 percent (SD) on the day of collection to a mean of 25 +/- 8 percent by 5 days of storage: 2) that, in normal subjects, posttransfusion recovery of autologous platelets stored for 2 to 4 days and then labeled with In111 was inversely correlated with the percentage of activated platelets in the transfused PC (r = -0.55, p = 0.05); and 3) that, when thrombocytopenic patients were transfused with standard PCs, the recovery of the activated platelets in the transfused PCs averaged only 38 +/- 15 percent of the number predicted by the absolute platelet increment.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Monoclonal↗

Platelet activation and aggregation during cardiopulmonary bypass.

Increases in plasma concentrations of platelet granule products such as platelet factor 4 and beta-thromboglobulin during cardiopulmonary bypass suggest that platelets are activated during extracorporeal circulation. Subsequent circulation of these activated platelets may be responsible for the ubiquitous platelet dysfunction associated with cardiopulmonary bypass. Using flow cytometry and a monoclonal antibody directed against an alpha-granule membrane protein, granule membrane protein 140 (GMP-140), which is expressed on the platelet surface membrane after activation, we directly measured the percentage of circulating activated platelets in 41 patients before, during, and after cardiopulmonary bypass. In addition, we compared the GMP-140 expression with platelet aggregation in response to adenosine diphosphate (ADP). Cardiopulmonary bypass produced a significant increase in the percentage of GMP-140-positive platelets persisting in the circulation; the percentage peaked at a mean of 29% (range 10-58%) before separation from extracorporeal circulation. A significant percentage of these activated platelets continued to circulate in the early postoperative period. Simultaneous measurement of platelet aggregation in response to ADP demonstrated an aggregation defect that had a time course distinct from platelet activation and whose magnitude did not correlate with the degree of platelet activation in individual patients. We conclude that cardiopulmonary bypass causes a complex constellation of platelet defects, which include alpha-granule release, prolonged circulation of activated, "spent" platelets, and impaired platelet aggregation.

Adenosine Diphosphate↗

Modulation of platelet surface adhesion receptors during cardiopulmonary bypass.

Alterations in platelet receptors critical to adhesion may play a role in the pathogenesis of the qualitative platelet defect associated with cardiopulmonary bypass. Using flow cytometry, we measured changes in the following platelet surface adhesive proteins: the von Willebrand factor receptor, glycoprotein Ib; the fibrinogen receptor, glycoprotein IIb/IIIa; the thrombospondin receptor, glycoprotein IV; the adhesive glycoprotein granule membrane protein 140, whose expression also reflects platelet activation and alpha-granule release; and, as a control, the nonreceptor protein HLA, A,B,C. Glycoprotein Ib decreased during cardiopulmonary bypass (P less than 0.05) and reached a nadir at 72% (P less than 0.05) of its baseline value at 2-4 h after bypass. This decrease correlated (r = 0.76) with the magnitude of platelet activation (alpha-granule release) in any given patient, but even platelets that were not activated demonstrated a decrease in glycoprotein Ib expression. Glycoprotein IIb/IIIa also decreased in both the activated (47% of baseline, P less than 0.01) and unactivated (63% of baseline, P less than 0.01) subsets of platelets at the end of cardiopulmonary bypass. Glycoprotein IV and HLA A,B,C did not decrease, but instead increased 2-4 h after cardiopulmonary bypass (P less than 0.05). We conclude that cardiopulmonary bypass produces selective decreases in surface glycoproteins Ib and IIb/IIIa as well as in platelet activation; that these two alterations are temporally but not necessarily mechanistically linked; and that these changes have the potential to adversely affect platelet function.

CD36 Antigens↗