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S Heptinstall

Publications and source records attributed to S Heptinstall.

At least 37 records · Page 2Linked to original sources

Differential effects of three radiographic contrast media on platelet aggregation and degranulation: implications for clinical practice?

We have determined the effects of three radiographic contrast media on platelet aggregation and degranulation in vitro. Aggregation was measured as loss of single platelets, and degranulation was measured as P-selectin expression using flow cytometry. Iopamidol added to hirudinized blood induced aggregation directly and also potentiated that induced by weak platelet agonists such as adenosine diphosphate (ADP). Iodixanol also potentiated platelet aggregation, but ioxaglate inhibited it. Iopamidol also caused marked platelet degranulation. The pro-aggregatory effect of iopamidol was evident in non-anticoagulated blood as well as in hirudinized blood, but not in citrated blood. In platelet-rich plasma (PRP) prepared from hirudinized blood neither iopamidol nor iodixanol directly induced platelet aggregation, but they rendered platelets hypersensitive to ADP. ADP antagonists inhibited the platelet aggregation and degranulation induced by iopamidol in whole blood, whereas aspirin, an inhibitor of thromborane A2 synthesis, did not. These data are consistent with clinical reports of increased thromboembolic risk with non-ionic low-osmolar media, and raise concerns about the routine use of these contrast media during diagnostic and interventional arteriographic procedures. Routine use of citrate in previous experiments may have masked a pro-aggregatory effect of some contrast media.

Adenosine Diphosphate↗

Activation of leukocytes in whole blood samples by N-formyl-methionyl-leucyl-phenylalanine (FMLP) enhances platelet aggregability but not platelet P-selectin exposure and adhesion to leukocytes.

Adhesion of platelets to neutrophils and monocytes is believed to play an important role in intercellular communication. Evidence has been provided that such heterotypic cell-cell contacts via adhesion molecules may be directly involved in intercellular signal transduction as well as facilitate the action of soluble signal transmitters, e.g. cathepsin G, PAF or nitric oxide. With respect to platelet activation, stimulatory and inhibitory effects of leukocytes have been reported, and the results obtained seem to be influenced by the experimental conditions. We investigated the effect of leukocyte stimulation on platelet behaviour in samples of human citrated whole blood. Adding the chemotactic peptide FM LP, which stimulates neutrophils and monocytes but not lymphocytes and platelets, to stirred whole blood samples resulted in a significant enhancement ( P < 0.01) of spontaneous as well as ADP-induced platelet aggregation (25 vs 33% and 66 vs 69% , respectively). In contrast stirring-induced as well as ADP-induced increase of P-selectin exposure (33 and 107% , respectively) was not affected by FMLP. In unstirred whole blood samples, about 10 to 20% of neutrophils and monocytes had bound platelets to their surfaces, and the number of these heterotypic conjugates was enhanced about twofold during spontaneous platelet aggregation. Addition of FMLP significantly reduced the stirring-induced formation of platelet-neutrophil conjugates but not of platelet-monocyte conjugates. These results indicate that neutrophil and/or monocyte activation in whole blood may enhance platelet aggregation, but not secretion (CD62P exposure) and formation of heterotypic platelet-leukocyte conjugates.

Journal Article↗

GPIIb-IIIa antagonists cause rapid disaggregation of platelets pre-treated with cytochalasin D. Evidence that the stability of platelet aggregates depends on normal cytoskeletal assembly.

Platelet activation is accompanied by changes in the composition of the platelet cytoskeleton with rapid incorporation and displacement of certain proteins. Here we have inhibited cytoskeletal assembly by pretreating platelets with cytochalasin D (CyD) and investigated the effect on the stability of the aggregates that form. The experiments were performed in both citrated and hirudinized platelet-rich plasma (PRP) and aggregation was induced by adenosine diphosphate (ADP), collagen, the TXA2-mimetic U46619 and adrenaline. Platelets in the aggregates that formed, underwent rapid disaggregation on addition of EDTA or a GpIIb-IIIa antagonist such as MK-852 and GR144053F, all of which are agents that interfere with the ability of fibrinogen to interact with GpIIb-IIIa. This was the case irrespective of the aggregating agent used and occurred in both citrated and hirudinized PRP. In contrast, the rate of disaggregation brought about by some other agents, iloprost and ARL 66096, appeared to be unaffected by CyD. Information was also obtained on the effects of CyD on the cytoskeletal changes brought about by ADP and the effects on the cytoskeleton of subsequent addition of M K-852. The results show that CyD retards the incorporation of certain proteins (actin, myosin, alpha -actinin, actin binding protein and a 66 K protein) into the cytoskeleton and that subsequent addition of MK-852 results in rapid displacement of some of these with re-incorporation of a 31 K protein. The results suggest that the early changes in the cytoskeleton following platelet activation contribute to the stability of the aggregates that form, and that interference with these early changes results in aggregates that are easily disassembled by agents that interfere with GpIIb-IIIa-fibrinogen complex formation.

Journal Article↗

Role of GPIIb-IIIa in platelet-monocyte and platelet-neutrophil conjugate formation in whole blood.

Platelets in stirred whole blood can be induced to form aggregates and also to form heterotypic platelet-monocyte (P/M) and platelet-neutrophil (P/N) conjugates. Here we have investigated the effects of three GPIIb-IIIa antagonists (GR144053F, MK-852 and Reopro, a CD62P-blocking antibody, GA6, and EDTA on the conjugate formation that occurs on stirring whole blood and in response to adding ADP and PAF. We have confirmed the identities of the conjugates by light microscopy after cell sorting. Platelet aggregation was measured by platelet counting. Monocytes, neutrophils, P/M and P/N were detected and quantitated using immunofluorescence and flow cytometry. Stirring whole blood resulted in both platelet aggregation and formation of P/M but not P/N. Adding ADP or PAF to whole blood caused rapid platelet aggregation and generation of both P/M and P/N. All of the GPIIb-IIIa antagonists studied had similar effects: inhibition of stirring-induced platelet aggregation and P/M formation, and inhibition of ADP-induced platelet aggregation and P/N formation. In contrast, they accelerated ADP induced-P/M conjugate formation and PAF-induced formation of both P/M and P/N. Both EDTA and GA6 completely inhibited P/M and P/N, which is commensurate with CD62P being involved in platelet-leucocyte conjugate formation. The results of these investigations suggest that GPIIb-IIIa has a dual role in determining the interaction between platelets and leukocytes.

Journal Article↗

Measurement of platelet activation and adhesion to leukocytes during haemodialysis.

In this study we used fluorescent-labelled antibodies to measure the extent of platelet adhesion to polymorphonuclear leukocytes (PMNLs), monocytes and lymphocytes. The activation of platelets, PMNLs and monocytes were also measured during the course of haemodialysis treatment using flow cytometric techniques established in our laboratory. Twenty patients were treated with either a cellulose membrane (TFU) or a polycarbonate filter (Pro 500). Blood samples were taken from the output line of the dialyser 2, 15, 30 and 180 min after commencing dialysis and just before starting treatment. Compared with the pre-dialysis sample, there was a marked increase in platelet-PMNL conjugate formation at 2 min, followed by a decrease in conjugates at 15 and 30 min, and a slight increase at 180 min. During extracorporeal circulation PMNLs become activated as measured by a CD11b upregulation at 15, 30 and 180 min, but not at 2 min. Platelet binding to monocytes was increased above 15 min after starting dialysis, and monocyte activation was slightly increased above basal levels during the same period. The activation state of circulating free platelets, as measured by surface P-selectin exposition, initially decreased slightly, but then returned to basal levels over the 3-h period. Changes in cell counts were also detected: there was a massive decrease in circulating PMNLs and monocytes, and a small decrease in circulating platelets, at 15 and 30 min. These reverted to basal values by the end of the 3-h period. There was no change in the number of circulating lymphocytes or erythrocytes. These results show that flow cytometric studies on whole blood samples may provide important information on the behaviour of circulating blood cells, which could supplement conventional clinical measurements, to give a better insight into changes that occur in the circulation during haemodialysis.

Journal Article↗

Effects of gelatin-based resuscitation fluids on platelet aggregation.

Fluid resuscitation aims to maintain intravenous volume without significant effects on haemostasis. Several different types of i.v. fluid are available for use in a patient who has suffered trauma, but there is evidence that some resuscitation fluids may affect primary haemostasis. We have compared the effects of two resuscitation fluids, Haemaccel and Gelofusin, on platelet aggregation in vitro. These resuscitation fluids are both based on gelatin but Haemaccel contains a high concentration of Ca2+ whereas Gelofusin does not. Their effects on platelet aggregation in whole blood, induced by a range of different agents, were determined using a platelet-counting technique. Both Haemaccel and Gelofusin prevented platelet aggregation induced by ristocetin (P < 0.05, Mann-Whitney). In addition, Haemaccel proved to be a potent inhibitor of the platelet aggregation that occurred in response to all of the other agonists investigated: adenosine diphosphate, platelet-activating factor, collagen, a thromboxane A2 mimetic (U46619) and epinephrine. The additional inhibitory effects of Haemaccel were largely, but not completely, attributable to its high Ca2+ content. Inhibition of platelet aggregation by ristocetin may indicate a mechanism by which Haemaccel or Gelofusin may contribute to impaired haemostasis. The presence in Haemaccel of high concentrations of Ca2+, which is largely responsible for inhibition of the aggregation induced by other agents, may provide an additional means by which haemostasis could be impaired.

Gelatin↗

Pluronic F-68 inhibits agonist-induced platelet aggregation in human whole blood in vitro.

The effects have been studied of Pluronic F-68 at 0.04% (w/v) on platelet aggregation in hirudin (50 micrograms ml-1)-anticoagulated, human whole blood in vitro in response to the following aggregation agonists: (i) phorbol 12-myristate 13-acetate (PMA; 0.05, 0.1 or 0.15 microgram ml-1), (ii) collagen (0.125, 0.25 or 0.5 microgram ml-1), or (iii) ristocetin (0.3, 0.6 or 1.2 micrograms ml-1). Pluronic F-68 significantly (P < 0.05) inhibited platelet aggregation that followed the addition of all agonists at their lowest concentration tested. Pluronic F-68 had markedly less pronounced inhibitory effects on the platelet aggregation that occurred in response to 0.15 microgram ml-1 PMA, where the mean % aggregation after 8 min was 67% of control (P < 0.05). Pluronic F-68 did not alter platelet aggregation in blood treated with 0.25 or 0.5 microgram ml-1 of collagen.

Collagen↗

Evidence that adenosine diphosphate can activate adenylate cyclase via conversion to adenosine in platelet-rich plasma containing magnesium.

When adenosine diphosphate (ADP) is added to hirudinized platelet-rich plasma (PRP) in which the level of platelet cAMP has been pharmacologically elevated, there is an initial rapid fall in the level of cAMP brought about by inhibition of adenylate cyclase. This may be followed by a subsequent activation of adenylate cyclase that does not occur when citrated PRP is used in place of hirudinized PRP, and is more pronounced in the presence of added Mg2+. Here we provide evidence that a) the Mg2+-dependent activation of adenylate cyclase seen in hirudinized PRP is mediated by adenosine, b) the adenosine produced synergizes with forskolin and with DN9693 to raise the level of cAMP in platelets. but not with iloprost, c) Mg2+ does not influence directly the rate or extent of cAMP production and so is more likely to influence the rate of adenosine production, and d) activation of adenylate cyclase by adenosine can lead to inhibition of platelet aggregation. ARL 66096, a P2T purinoceptor antagonist which inhibits ADP-induced platelet aggregation, prevented inhibition of adenylate cyclase by ADP. Conversely, ARL 66096 did not appear to inhibit conversion of ADP to adenosine and subsequent activation of adenylate cyclase.

Adenosine↗

Platelet responses to several agonists and combinations of agonists in whole blood: a placebo controlled comparison of the effects of a once daily dose of plain aspirin 300 mg, plain aspirin 75 mg and enteric coated aspirin 300 mg, in man.

Platelet responses to several agonists and combinations of agonists have been measured in whole blood from healthy volunteers. We have determined the effects of once daily treatment for five days with plain aspirin 300 mg, plain aspirin 75 mg, enteric coated aspirin 300 mg or placebo. Measurements were made of platelet aggregation (using a platelet counting technique) and the release reaction (14C-5HT release from pre-labelled platelets). The extents of these responses before aspirin administration depended on the agonist used. ADP, adrenaline and PAF failed to induce any 14C-5HT release in most subjects, but combinations of these agonists acted synergistically to produce extensive 14C-5HT release. All three aspirin preparations reduced the extent of the platelet responses to most agonists: platelet aggregation induced by collagen, ristocetin and arachidonate and 14C-5HT release induced by collagen, streptokinase, and various combinations of ADP, adrenaline and PAF. None of the preparations had any effect on the aggregation that occurred in the absence of an agonist (spontaneous aggregation), but they all reduced streptokinase-induced aggregation to control (spontaneous) levels, and abolished the 14C-5HT release induced by arachidonate and by ristocetin. All three aspirin preparations were equally effective after two daily doses. No further inhibition of platelet responses was obtained after five daily doses. Plain aspirin 300 mg achieved its maximal effect after only a single dose, but enteric coated aspirin 300 mg (and sometimes plain aspirin 75 mg) produced sub-maximal inhibition after only a single dose. Parallel investigations on the effects of these aspirin regimes on gastric mucosal prostaglandin E2 synthesis and gastroduodenal mucosal injury were performed. These results will be reported separately.

Adenosine Diphosphate↗

Formation of platelet-leukocyte conjugates in whole blood.

The purpose of this investigation was to obtain information on platelet-leukocyte conjugate formation in whole blood and on factors that affect it. We also measured platelet and leukocyte activation by quantitating the expression of CD62P and CD11b. In both cases a flow cytometric approach was used. The results show that platelet-monocyte and platelet-polymorphonuclear leukocyte (PMNL) conjugate formation is enhanced by simply stirring blood, with optimum conjugate formation occurring after 10 min. In the case of monocytes,conjugate formation was enhanced by adenosine diphosphate (ADP). Both monocyte and PMNL conjugate formation was enhanced by phorbol myristate acetate (PMA), but L-formyl methionyl lysyl proline (FMLP) was either without effect (monocytes) or inhibitory (PMNL). EDTA also inhibited conjugate formation (implying involvement of divalent cations), as did dextran sulphate (implying involvement of P-selectin = CD62P). Interestingly GR144053F, which acts at GpIIb-IIIa on platelets to interfere with fibrinogen binding, and also glycyl prolyl arginyl proline (GPRP), a peptide that interferes with the interaction between CD11c on leukocytes and fibrinogen, did not inhibit platelet-monocyte conjugate formation, but did inhibit the platelet-PMNL interaction; this indicates that GpIIb-IIIa on platelets and CD11c on leukocytes and fibrinogen are involved in mediating the interaction between platelets and PMNL but not platelets and monocytes. Surprisingly arginyl-glycyl aspartyl serine (RGDS) inhibited the formation of both types of conjugate but this may be because it also inhibited both platelet and leukocyte activation as measured by CD62P and CD11b exposure and/or interferes with the binding of adhesion molecules other than fibrinogen. The results show that a flow cytometric procedure can be effective in obtaining rapid information on platelet-leukocyte conjugate formation in whole blood and on factors that are involved in its regulation. It is suggested that the technique may be applicable to the study of platelet-leukocyte conjugate formation in whole blood in disease, and also to study the effects of drugs interfering with conjugate formation.

Journal Article↗

Changes in plasma ionised calcium within 24 hours of trauma in patients infused with the calcium containing colloid Haemaccel during fluid resuscitation.

OBJECTIVE: To determine the changes in ionised plasma calcium levels over a 24 h period in patients sustaining blunt trauma injuries and infused with the calcium containing colloid Haemaccel (6.25 mmol/ litre Ca2+). METHODS: The study was carried out on 24 trauma patients who attended the accident and emergency (A&E) department of the Leicester Royal Infirmary and required fluid resuscitation. Nineteen patients, with a mean injury severity score (ISS) of 14 (range 6 to 36), were given an infusion of Haemaccel; five patients in the control group with an ISS of 12 (range 6 to 19) were infused non-calcium-containing crystalloid. All types of fluids were recorded and serial plasma ionised calcium values were measured over a 24 h period. RESULTS: The mean pre-Haemaccel ionised calcium value fell to 0.71 mmol/litre following trauma. The mean values (mmol/litre) obtained in patients infused with Haemaccel were measured at 2, 4, 8, and 24 h. In the Haemaccel group these values were 1.38 (SD 0.34), 1.40 (0.44), 1.23 (0.27), and 1.18 (0.31) (at least P < 0.001 v baseline). The rise in calcium at 2 h was proportional to the volume of Haemaccel infused (r = 0.917; P < < 0.001). CONCLUSIONS: In all patients the plasma ionised calcium rose on infusion of Haemaccel and in a least one measurement 50% of patients developed hypercalcaemia (Ca2+ < 1.30 mmol/litre). The clinical significance of this is at present unclear.

Adult↗

Effects of the co-polymer surfactant, Pluronic F-68, on platelet aggregation in human whole blood.

The effects have been studied of Pluronic F-68 on platelet aggregation in human whole blood. The median spontaneous platelet aggregation in normal blood (n = 15) was 18.4% [interquartile range (IQ) = 10.5-24.2%]. Commercial grade Pluronic F-68 significantly (P < 0.05) reduced platelet aggregation at 7.3 microM (median = 8.4%, IQ = 3.9-13.4; n = 12) and almost eliminated aggregation at concentrations of > 58 microM (median = 2.0%, IQ = 0.0-3.5). Similar results were obtained with a silica gelpurified Pluronic F-68 fraction (n = 3). Pluronic F-68 also accelerated the rate of platelet dis-aggregation in blood treated with 0.3, 1.0 or 3.0 mM adenosine di-phosphate. These results suggest that the therapeutic effects of Pluronic F-68 in ischaemic injury may be due, in part, to inhibition of platelet aggregation in the microcirculation. The beneficial effects of tissue perfusion with oxygen-carrying perfluorochemical emulsions, containing Pluronic F-68, may also involve direct effects of the surfactant on platelets.

Adenosine Diphosphate↗

Contact-induced modulation of neutrophil elastase secretion and phagocytic activity by platelets.

It has been reported that platelets stimulate generation of reactive oxygen species in neutrophils and monocytes by a mechanism that requires mutual cell-cell contact and the presence of P-selectin on the platelet surface. In the present study we investigated the effect of platelet-neutrophil contacts on neutrophil elastase secretion and phagocytic activity. Non-activated or thrombin-activated platelets were fixed with formaldehyde, washed and incubated with neutrophils in the absence or presence of various neutrophil agonists. Elastase secretion was determined by measuring the enzyme activity in cell-free supernatants using a chromogenic substrate. Platelet-neutrophil adhesion and ingestion of zymosan particles by neutrophils were quantitated by light microscopy. Platelets significantly reduced elastase secretion from neutrophils but had no effect on the elastase activity in the supernatant of neutrophil lysates. When neutrophils were stimulated with the ionophore A23187 or the chemotactic peptide FMLP, thrombin-activated platelets were more potent to inhibit elastase secretion when compared with non-activated platelets. Neutrophils that were not able to bind platelets to their surface had a significantly lower phagocytic activity when compared with neutrophil with adherent platelets or neutrophils that were incubated in the absence of platelets. The results indicate that platelet-neutrophil contacts may also lead to an inhibition of neutrophil functions and that such inhibition could be due to a transient contact rather than due to a firm platelet-neutrophil adhesion.

Blood Platelets↗

Changes in the composition of the platelet cytoskeleton in response to ADP: effects of MK-852 and ARL 66096.

Platelet activation by adenosine diphosphate (ADP) results in an alteration in the composition of the cytoskeleton. Here we have determined the effects of MK-852 and ARL 66096 on the cytoskeletal changes that occur. MK-852 is a GPIIb/IIIa antagonist that inhibits aggregation by interfering with fibrinogen binding ARL 66096 is a P2T antagonist that selectively inhibits ADP-induced aggregation. Neither agent inhibits the shape change response. Experiments were performed in hirudinized platelet-rich plasma. Platelet activation led to a significant and sustained increase in the cytoskeletal content of actin binding protein (ABP), myosin, alpha-actinin, a 66K protein and actin, and a significant decrease in a 31K protein. In the presence of MK-852 there was no increase in ABP or the 66K protein and no decrease in the 31K protein. The increase in myosin and alpha-actinin became reversible but there was still incorporation of actin into the cytoskeleton. In the presence of ARL 66096 there was no increase in ABP or the 66K protein and no decrease in the 31K protein. ARL 66096 also prevented incorporation of alpha-actinin and actin. As with MK-852, myosin incorporation became reversible. The results suggest that (1) myosin is incorporated into the cytoskeleton transiently during shape change, (2) ADP interaction with the ADP aggregation receptor (but not that for shape change) is associated with alpha-actinin and actin incorporation into the cytoskeleton, and (3) further changes that occur are consequent to fibrinogen binding and platelet aggregation.

Actinin↗

Studies on the effects of agonists and antagonists on platelet shape change and platelet aggregation in whole blood.

The shape change that occurs when platelets are stimulated with an agonist can be quantitated by monitoring changes in their forward-scatter/side-scatter profile using a flow cytometer. Here we have stimulated platelets in citrated whole blood with several agonists and determined the time-course and extent of the shape change that occurs. In some experiments parallel investigations of shape change and aggregation were performed. Aggregation was measured by monitoring the fall in number of single platelets using a Whole Blood Platelet Counter. Some agents (ADP, PAF, U46619 and 5HT) produced a strong and rapid change in platelet forward-scatter/side-scatter that was maximal within 10 s. Others (A23187 and collagen) produced a strong but slower response. Adrenaline produced only a weak response that was also slow to develop, and PMA did not produce any response. The concentrations of each of ADP, PAF, U46619 and 5HT needed to induce a shape change were lower than those required for aggregation. Selective PAF, TXA2 and 5HT antagonists (WEB 2086, sulotroban and MCI-9042) clearly inhibited both the shape change and the aggregation induced by the appropriate agonist; in each case the effect of the antagonist was to move the dose-response curve to the right. These results are consistent with the shape change and aggregation brought about by each of these agonists being mediated via a single receptor. In contrast, a selective P2T purinoceptor antagonist (ARL 66096) markedly inhibited the aggregation induced by ADP but was found to have little or no effect on shape change. This is consistent with these platelet responses to ADP being mediated by different receptors, with P2T receptors mediating only the aggregation response.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

ADP-induced P-selectin expression on platelets as a predictor of successful thrombolysis.

Unlike coronary thrombolysis, the role of platelet activity in the outcome of local thrombolytic therapy for peripheral ischaemia is not well understood. In the present study ten patients undergoing local pulse spray thrombolysis (PST) with recombinant tissue-type plasminogen activator (rt-PA), six patients undergoing conventional infusion thrombolysis (CT) with rt-PA and another six patients undergoing arteriography with iopamidol were studied. Venous blood samples obtained before and after the procedure were analysed using a flow cytometric technique for detection of platelet activation after labelling platelets with VH10, a monoclonal antibody against P-selectin. In the present study no significant differences were observed in P-selectin expression before and after any of the procedures, except that P-selectin expression following ADP stimulation was reduced in patients who had received conventional thrombolysis. Unexpectedly, we observed relatively greater P-selectin expression, particularly after ADP stimulation, both before and following thrombolysis in ten patients in whom thrombolysis was successful compared with six patients in whom thrombolysis was unsuccessful. ADP-induced P-selectin expression on platelets may therefore be a useful predictor of outcome of peripheral intra-arterial thrombolysis.

Adenosine Diphosphate↗