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Biomedical subjects

S Heptinstall

Publications and source records attributed to S Heptinstall.

At least 37 records · Page 2Linked to original sources

Platelet reactivity in vitro in relation to thromboxane in healthy pregnancy.

There is substantial evidence of increased platelet reactivity in vivo and in vitro during pregnancy. Previous in vitro studies suggest that platelets from pregnant women show increased sensitivity to agonists, the response to which has a thromboxane dependent component. The aim of this study was to determine whether this is due to increased activity of the thromboxane biosynthetic pathway or to increased platelet sensitivity to the effects of thromboxane. During pregnancy, platelets were more sensitive to the pro-aggregatory effects in vitro of the thromboxane mimetic U46619, in whole blood and in platelet rich plasma, compared to those from non-pregnant controls. The difference in extent of U46619-induced platelet aggregation between groups was abolished in the presence of a high concentration of the specific thromboxane antagonist ICI 192605, but not by prior incubation of blood with aspirin. Platelets from pregnant women were significantly less sensitive to inhibition of arachidonic acid induced activation by the thromboxane synthetase inhibitor dazmegrel, but there was no change in platelet cyclic AMP accumulation under these conditions. Arachidonic acid induced platelet thromboxane B2 production was similar in pregnant and non-pregnant subjects. In conclusion, platelets are more sensitive to the activating effects of thromboxane during pregnancy, but there is no change in the intrinsic reactivity of the thromboxane biosynthetic pathway.

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

Longitudinal studies of platelet cyclic AMP during healthy pregnancy and pregnancies at risk of pre-eclampsia.

1. Platelet behaviour in vitro in relation to cyclic AMP was studied longitudinally during pregnancy and in the same women when they were not pregnant. Subjects comprised a group of healthy primigravidae and a group of women deemed at risk of pre-eclampsia, on the basis of a previous history of the condition. 2. There was a progressive decline during pregnancy in sensitivity of platelets to inhibition of the arachidonic acid-induced release reaction by agents which act via cyclic AMP. This effect was maximum at 36 weeks' gestation. 3. Basal platelet cyclic AMP levels, and those in the presence of a phosphodiesterase inhibitor, did not change throughout the period of the study. 4. By contrast, platelet cyclic AMP accumulation in response to a variety of adenylate cyclase stimulators was reduced from early pregnancy, throughout the gestational period, compared with post-natally. This effect was noted when platelets were incubated with prostaglandins acting via different surface receptors or with forskolin and was most marked on co-incubation with a phosphodiesterase inhibitor. 5. Compared with healthy women, platelets from women with a previous history of pre-eclampsia tended to accumulate less cyclic AMP in response to adenylate cyclase stimulators. This was the case both during pregnancy and post-natally. Further investigation of adenylate cyclase activity in platelets in relation to pre-eclampsia is required.

Adenylyl Cyclases

ADP-induced platelet aggregation and actin polymerization. Involvement of GpIIb/IIIa and the effect of Mg2+.

We have investigated the effects of Mg2+ (added to platelet rich plasma [PRP] as 10mM MgCl2 or MgSO4) on the platelet aggregation and actin polymerization that occurs in response to adenosine diphosphate (ADP). The PRP was prepared from blood containing hirudin as anticoagulant. Mg2+ added before 1 microM ADP completely inhibited aggregation and markedly inhibited actin polymerization. Mg2+ (10mM) added before 10 microM ADP converted irreversible aggregation into a reversible response; similarly, apparently irreversible actin polymerization was converted to a reversible response in which polymerization was followed by some actin depolymerization. Mg2+ added after inducing platelet aggregation with 10 microM ADP produced parallel disaggregation of platelets and actin depolymerization. Actin polymerization occurs immediately on adding ADP to PRP (in association with shape change) and further polymerization occurs in association with platelet aggregation. When aggregation (and the actin polymerization associated with this) was prevented by adding M148, a monoclonal antibody directed at the GpIIb/IIIa complex, or simply by avoiding stirring the sample, Mg2+ had no effect on actin polymerization/depolymerization. Thus Mg2+ only affected the changes in actin that were associated with the aggregation response. This was in contrast to iloprost (which acts at the PGI2 receptor to stimulate adenylate cyclase) which induced rapid actin depolymerization when added after ADP stimulation of platelets under circumstances where platelet aggregation was avoided. These results show that Mg2+ affects actin polymerization as well as platelet aggregation, and that it affects the actin polymerization associated with aggregation but not that associated with shape change (in contrast to iloprost which inhibits both).(ABSTRACT TRUNCATED AT 250 WORDS)

Actins

Factors that contribute to spontaneous platelet aggregation and streptokinase-induced aggregation in whole blood.

When whole blood is stirred there is a "spontaneous" platelet aggregation (SPA) which is presumed to be caused by proaggregatory factors released from platelets and other blood cells. Adding streptokinase (SK) to stirred whole blood frequently increases the rate and extent of the platelet aggregation that occurs; this is likely to be via immune complex formation between SK and natural anti-SK antibodies leading to increased release of pro-aggregatory factors. In this investigation we have examined the effects of several inhibitors and antagonists in an attempt to identify the proaggregatory factors that contribute to both SPA and SK-induced aggregation (SKA) and to evaluate different means of inhibiting both processes. The effects of the inhibitors/antagonists were determined in vitro after adding them to citrated whole blood obtained from healthy volunteers. Platelet aggregation was measured using a platelet counting technique. Inhibition of both SPA and SKA by apyrase and by FPL 66096 (a P2T receptor antagonist) demonstrated the involvement of ADP in both processes. Inhibition by chlorpromazine indicated that the most likely source of the ADP is red cells. The effects of sulotroban (a TXA2 antagonist) indicated involvement of TXA2 in SKA but not in SPA. The lack of effect of specific antagonists at S2, alpha 2 and PAF receptors suggested lack of involvement of serotonin, catecholamines and platelet-activating factor in either SPA or SKA. Both SPA and SKA were potently inhibited by low concentrations of iloprost (a PGI2 analogue), but a high concentration of SIN-1 (a NO donor) was much less effective.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Diphosphate

Magnesium modifies the responses of platelets to inhibitory agents which act via cAMP.

This study has investigated the interaction of raised extracellular magnesium and agents which act via cAMP with respect to inhibition of platelet aggregation and effects on platelet cAMP accumulation. Iloprost (3 ng/ml) and PGD2 (0.2 microgram/ml) each caused time dependent increases in platelet cAMP which were significantly greater in the presence of 3 mM added MgSO4 (p < 0.01). Addition of ADP (5 microM) resulted in a fall in cAMP which remained higher in the presence of MgSO4 (p < 0.01). Forskolin (5 micrograms/ml) and DN9693 (100 microM) also caused increments in platelet cAMP but these responses were not influenced by added MgSO4. Addition of ADP resulted in a further increase in cAMP which was augmented by MgSO4 (p < 0.03). This increase was abolished by adenosine deaminase (1.2 U/ml). These experiments show that MgSO4 can modify the cAMP responses produced by iloprost and PGD2 and by forskolin and DN9693 when ADP is present. It appears that as well as inhibiting, ADP can also stimulate cAMP production under certain experimental conditions. This appears to be due to breakdown of ADP to adenosine.

Blood Platelets

Effects of ticlopidine administered to healthy volunteers on platelet function in whole blood.

Ticlopidine is thought to be a selective inhibitor of ADP-induced platelet function. Here we have investigated the effects of ticlopidine on platelet function in whole blood induced by ADP and by other platelet agonists. Whole blood was used because it was considered that ADP derived from red cells might act synergistically with other platelet agonists to enhance platelet responses, and that ticlopidine might interfere with this process. Measurements were performed using blood from 16 healthy volunteers before ticlopidine administration, after taking ticlopidine 250 mg daily for 10 days, after taking ticlopidine 250 mg twice daily for a further 10 days, and after 14 days off treatment. Ticlopidine proved to be a very effective inhibitor of the platelet aggregation induced by ADP; it was most effective in enhancing the reversibility of the aggregation response. The drug modestly but significantly reduced streptokinase, adrenaline, collagen, sodium arachidonate, PAF and U46619 - induced platelet aggregation. The drug significantly reduced the extent of the release reaction (14C-5HT release) induced by ADP, streptokinase, PAF, ristocetin and sodium arachidonate, and also reduced the extent of the synergistic 14C-5HT release induced by combinations of ADP and PAF, ADP and adrenaline and PAF and adrenaline. The various inhibitory effects of ticlopidine were evident after treatment with 250 mg daily but were more pronounced after 250 mg twice daily. All values had returned to normal after 14 days off treatment. Ticlopidine had no effect on serum thromboxane B2 production nor on several parameters of coagulation and fibrinolysis. We conclude that ticlopidine is an effective inhibitor of ADP-induced platelet aggregation and also the platelet aggregation and 14C-5HT release induced in whole blood by a number of platelet agonists and combinations of agonists. These latter effects are probably mainly via a selective effect on ADP. The inhibitory effects of the drug are dose-related.

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

Neonatal platelet reactivity and serum thromboxane B2 production in whole blood: the effect of maternal low dose aspirin.

OBJECTIVES: Concern has been expressed about possible neonatal side effects after the use of maternal anti-platelet agents in pregnancy, particularly low dose aspirin treatment. We have studied neonatal platelet behaviour using whole blood techniques, and assessed the neonatal effect of the maternal ingestion of 60 mg aspirin daily. DESIGN: Cross sectional and randomised, double-blind, placebo-controlled. SETTING: University hospital. SUBJECTS: 1. Eight normal women, studied before conception, and their infants. 2. Twenty-four infants whose mothers had been randomised to receive either 60 mg aspirin daily, or placebo, in double-blind fashion. METHODS: The Clay Adams Ultra Flo 100 whole blood single platelet counter was employed to measure platelet aggregation in response to various agonists. The platelet release reaction was also measured in whole blood, and serum thromboxane B2 (TxB2) production was measured by radio-immunoassay. Umbilical cord blood samples were obtained at delivery. RESULTS: 1. Neonatal platelet aggregation induced by adrenaline, ADP and platelet activating factor was reduced in comparison with their mothers (P < 0.01), whereas the neonatal platelet release reaction was reduced when stimulated by collagen and U46619 (a thromboxane mimetic) (P < 0.01). Serum TxB2 production was similar in mothers and babies. 2. Neonatal platelet aggregation, release reaction and serum TxB2 production were not significantly reduced in infants exposed to maternal aspirin in comparison with those neonates exposed to maternal placebo. This is in contrast to the effect on maternal platelets. CONCLUSIONS: Although only a small number of patients were studied, we interpret this as a relative sparing of neonatal platelet reactivity due to the presystemic action of low dose aspirin.

Adult

Inhibition of platelet aggregation by transdermal glyceryl trinitrate.

OBJECTIVE: To determine the optimum conditions for the demonstration of an antiplatelet effect of nitric oxide and to use these conditions to elucidate the effects of a transdermal glyceryl trinitrate patch on platelet aggregation in normal volunteers. METHODS: An open prospective crossover study. The effects of nitric oxide on platelet aggregation in whole blood and platelet rich plasma as stimulated by adenosine diphosphate and U46619 was assessed in the presence and absence of iloprost and MB22948. Optimum conditions for the demonstration of an antiplatelet effect of nitric oxide were then applied to whole blood from normal volunteers in the presence and absence of a transdermal glyceryl trinitrate patch. SETTING: University hospital. SUBJECTS: Eight normal volunteers. MAIN OUTCOME MEASURES: Platelet aggregation in the presence and absence of transdermal glyceryl trinitrate. RESULTS: The optimum conditions for the demonstration of an antiplatelet effect of nitric oxide in whole blood were collecting blood into a tube containing MB22948 and citrate and stimulating platelet aggregation with adenosine diphosphate in the presence or absence of iloprost. Using this method a significant effect of transdermal glyceryl trinitrate on platelet aggregation was shown (P < 0.03) in the presence and absence of iloprost. CONCLUSIONS: These results are consistent with an inhibitory effect on platelet aggregation of nitric oxide liberated by transdermal glyceryl trinitrate. Optimum test conditions are needed to show this effect. The clinical significance of the antiplatelet effect of transdermal glyceryl trinitrate is unknown.

Adenosine Diphosphate

A study of the use of the thromboxane A2 antagonist, sulotroban, in combination with streptokinase for local thrombolysis in patients with recent peripheral arterial occlusions: clinical effects, platelet function and fibrinolytic parameters.

In peripheral thrombolysis adjuvant anti-platelet therapy may help to lyse otherwise resistant thrombus, thereby increasing the number of patients successfully treated and reducing the "time to lysis". If continued after lysis it may help to prevent early rethrombosis. In this pilot study 21 patients undergoing peripheral thrombolysis with streptokinase were randomised to receive the thromboxane receptor antagonist sulotroban or placebo. The dose of sulotroban given was 2 mg/min (four patients), 4 mg/min (five patients) or 8 mg/min (four patients), eight patients received placebo. The clinical and laboratory effects of the treatment were monitored. Thrombolysis was achieved more quickly in patients receiving sulotroban, however, there was no difference between groups in the number of patients in whom recanalisation was achieved (six of eight receiving placebo and eight of 13 receiving sulotroban) or in the number of cases of early rethrombosis. During lysis there was an increase in plasma beta-thromboglobulin with similar levels being found in patients receiving sulotroban and streptokinase and those receiving streptokinase alone. No other major changes in platelet function during lysis were seen in patients receiving streptokinase alone. Sulotroban significantly reduced platelet aggregation and 14C-5HT release in response to several platelet agonists. With the thromboxane mimetic U46619 the degree of inhibition of aggregation and 14C-5HT release depended on the dose of sulotroban used. High levels of inhibition were associated with an excess of haemorrhagic complications especially in combination with a low plasma fibrinogen level. We conclude that the use of low dose sulotroban in combination with streptokinase merits further study and may hve a role in accelerating lysis.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged

Changes in G-actin after platelet activation in platelet rich plasma.

We have used the DNase I inhibition assay to study changes in G-actin after platelet activation in platelet-rich plasma (PRP) induced by ADP. Because of problems associated with depolymerization of F-actin after lysis of ADP-activated platelets in the presence of plasma, G-actin was measured using a lysis buffer that contained formaldehyde to prevent any depolymerization of F-actin. Different patterns of response were seen depending on the concentration of ADP used, and these were modified by avoiding aggregation by either not stirring the sample or by adding EDTA. The results show rapid conversion of G-actin to F-actin in association with shape change, and there is a further decrease in G-actin associated with irreversible platelet aggregation. Thus evidence is presented that actin polymerization occurs in two phases after ADP stimulation.

Actins

A bioassay for inhibition of serotonin release from bovine platelets.

A bioassay was developed to study agents capable of inhibiting the release of serotonin from bovine blood platelets. It is a simple, inexpensive, and reproducible high-throughput bioassay suitable for quality control of feverfew, Tanacetum parthenium, a crude drug with proven migraine prophylactic activity that is being considered for governmental registration and regulation. The bioassay, which requires no experimental animals or human subjects, was used to assess the in vitro activity of T. parthenium samples grown from seed obtained from 10 different regions of Europe. The activity was found to vary significantly within and between samples, with no geographical correlation. Serotonin release inhibition was shown to be significantly correlated with the content of the germacranolide sesquiterpene lactone, parthenolide, although other sesquiterpene lactones from this plant and other members of the Asteraceae were also shown to be active. The activities of six other species of Tanacetum, as well as of Artemisia absinthium (wormwood) and Zingiber officinale (ginger), and two commercial drugs for migraine prophylaxis, verapamil hydrochloride and propranolol hydrochloride, were also assessed. The relevance of the bovine platelet serotonin release inhibition bioassay to antimigraine research is discussed.

Animals

A randomized placebo-controlled study of the effect of low dose aspirin on platelet reactivity and serum thromboxane B2 production in non-pregnant women, in normal pregnancy, and in gestational hypertension.

OBJECTIVE: To investigate the effect of 60 mg aspirin daily on platelet reactivity and prostaglandin production in various groups of patients. Similar regimens, which are thought to act through inhibition of platelet thromboxane production, are currently undergoing clinical assessment for the prevention of pre-eclampsia and intrauterine growth retardation. DESIGN: A prospective randomized placebo controlled study. SETTING: University Hospital, Nottingham. SUBJECTS: 12 non-pregnant female volunteers, 18 normal primigravidae before 16 weeks gestation and 16 pregnant women admitted with gestational hypertension (GH) at a mean gestation of 38 weeks. INTERVENTIONS: In the non-pregnant women blood samples were taken before and after a 10-day course of 60 mg aspirin daily. The primigravidae had blood samples taken at 16 weeks and then they were randomized to receive either 60 mg aspirin daily or a matched placebo. Further blood samples were obtained at 28, 32 and 36 weeks. MAIN OUTCOME MEASURES: Changes in platelet reactivity and release reaction, and serum thromboxane production, were estimated in whole blood. RESULTS: 60 mg aspirin daily significantly inhibited cyclo-oxygenase dependent platelet aggregation, release reaction and serum thromboxane production in non-pregnant and pregnant women, and in women with GH (P less than 0.01). When adrenaline was used as the aggregating agent, the cyclo-oxygenase pathway was recruited in the increased reactivity seen in the third trimester of normal pregnancy, and was sensitive to inhibition by low dose aspirin. CONCLUSION: Low dose aspirin would appear to be an appropriate agent for the inhibition of platelet reactivity associated with hypertensive pregnancy.

Adult

Parthenolide content and bioactivity of feverfew (Tanacetum parthenium (L.) Schultz-Bip.). Estimation of commercial and authenticated feverfew products.

Three physicochemical methods (HPLC, NMR spectroscopy, and HPLC of a derivative) have been used to measure parthenolide in authenticated Tanacetum parthenium (feverfew) and in several commercial purported feverfew products. A bioassay based on inhibition of the secretory activity of blood platelets by extracts of feverfew in comparison with parthenolide was also used. Similar results were obtained for all three physicochemical assays and also for the bioassay. Thus different methodologies yield consistent values for parthenolide content of feverfew preparations. Parthenolide appears to be mainly responsible for the antisecretory effects of extracts of feverfew. Authenticated Tanacetum parthenium grown in the UK contained a high level of parthenolide in leaves, flowering tops and seeds but a low level in stalks and roots. The level of parthenolide in powdered leaf material fell during storage. The purported feverfew products varied widely in their parthenolide content and in some products parthenolide was not detected. Possible reasons for the variation in parthenolide content are discussed. Since therapeutic efficacy has only been demonstrated for preparations of feverfew that contain parthenolide, it is suggested that manufacturers of feverfew products should use measurements of parthenolide as a means of standardization and quality control.

Capsules

Interactions between prostaglandin E2 and inhibitors of platelet aggregation which act through cyclic AMP.

Prostaglandin (PG) E2 potentiates platelet aggregation at low concentrations (10(-8)-10(-6) M). It also inhibits aggregation at a higher concentration (10(-5) M), probably by acting through cyclic adenosine 3',5'-monophosphate (cyclic AMP). The mechanism of this biphasic effect of PGE2 and its implications for thrombosis are not clearly understood. Using a sensitive cyclic AMP assay, in conjunction with platelet aggregation studies, we have examined the interactions between PGE2 and other inhibitors of platelet aggregation which act through cyclic AMP. Low concentrations of PGE2 reversed the inhibition of platelet aggregation and increase in cyclic AMP levels induced by PGI2, PGD2 and adenosine (which stimulate adenylate cyclase (AC) through separate and specific platelet receptors). In contrast, low concentrations of PGE2 added to the inhibition of platelet aggregation and increase in cyclic AMP levels induced by forskolin (which stimulates AC directly) and AH-P 719 and DN-9693 (which inhibit cyclic AMP phosphodiesterase (PDE]. These results suggest that the biphasic effect of PGE2 may be mediated by interaction with two separate platelet receptors. Low concentrations appear to potentiate aggregation by acting at a receptor which is directly coupled to an inhibitory guanine nucleotide-binding protein (Gi), possibly the putative PG endoperoxide receptor. High concentrations of PGE2 appear to inhibit aggregation by acting at an additional receptor, probably the PGI2 receptor. The ease with which PGE2 reverses the effects of PGI2, PGD2 and adenosine, but adds to the effects of AH-P 719 and DN-9693, suggests that PDE inhibitors might offer greater potential than these AC stimulators as an anti-thrombotic strategy.(ABSTRACT TRUNCATED AT 250 WORDS)

3',5'-Cyclic-AMP Phosphodiesterases

A cross-sectional study of platelet cyclic AMP in healthy and hypertensive pregnant women.

1. Platelet activation in vivo occurs in healthy pregnant women and is more marked in women with preeclampsia. During pregnancy platelets have also been shown in vitro to be less susceptible to the inhibitory effects of prostacyclin. The cyclic nucleotide cyclic AMP has a key role as an inhibitory second messenger in platelets and mediates the inhibitory effects of prostacyclin. 2. We have studied cyclic AMP in relation to platelet behaviour in healthy pregnant women in the third trimester and in women with pregnancy-induced hypertension and pre-eclampsia. Non-pregnant young women were used as controls. 3. Pharmacological agents which increase levels of cyclic AMP were significantly less effective as inhibitors of platelet activation during pregnancy, but there was no difference between the healthy and hypertensive pregnant subjects. 4. Basal platelet cyclic AMP levels were the same in all three groups. However, the production of cyclic AMP in response to a range of adenylate cyclase stimulators was reduced during pregnancy, but again there was no difference between healthy and hypertensive pregnant subjects. 5. The reduction in platelet cyclic AMP levels in pregnancy occurred not only with those adenylate cyclase stimulators which operate via surface receptors, but also on direct stimulation of the enzyme with forskolin. 6. The most likely explanation of these observations is a reduction in the ability of the platelet adenylate cyclase enzyme to respond to stimulation of the third trimester of pregnancy. The consequent reduction in formation of the inhibitory second messenger cyclic AMP may in part be responsible for platelet activation in vivo during pregnancy. There does not appear to be a further difference in platelet cyclic AMP production in hypertensive pregnant women.

Adenylyl Cyclases

Platelet reactivity and serum thromboxane B2 production in whole blood in gestational hypertension and pre-eclampsia.

OBJECTIVE: To determine the nature and extent of changes in platelet reactivity in gestational hypertension and pre-eclampsia (using whole blood techniques which may be more physiological than those previously employed). DESIGN: Cross-sectional observational study. SUBJECTS: 8 normal primigravidae, 16 women with gestational hypertension and 12 women with pre-eclampsia, studied at around 36 weeks gestation. RESULTS: Platelet reactivity (aggregation and release reaction) induced by stimulation with adrenaline was decreased in the pre-eclamptic group. Serum thromboxane B2 production was unchanged in both hypertensive groups compared with the control group. CONCLUSIONS: In the context of evidence of platelet activation in pre-eclampsia, our findings are interpreted as reflecting platelet exhaustion.

Adult