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Inhibition of platelet thrombus formation by chlorpromazine acting to diminish haemolysis.

There is increasing evidence that the sudden, unpredicatable event initiating myocardial infarction is fissuring of an atherosclerotic plaque. The resulting haemorrhage into the arterial wall produces obstructive platelet thrombi, just as arterial haemorrhages elsewhere produce haemostatic platelet plugs. It has been suggested that such platelet aggregation depends on ADP originating in red cells which are subjected to excessive haemodynamic stress at the site of haemorrhage. The release of ADP from red cells has been demonstrated in vitro in equivalent condtions of shear stress; and other mechansims, such as activation by collagen, cannot account for the rapidity with which the platelets react. One of us (G.V.R.B.) has suggested that drugs capable of counteracting haemolysis might diminish the activating effect of erythrocytes on platelets and so inhibit their aggregation as thrombi. Thus, chlorpromazine, added to human blood at concentrations which diminish haemoylsis but do not directly affect platelet aggregation, prolonged the 'bleeding time' from small holes in artificial vessels where extravasation is terminated, as in living arterioles, by aggregated platelets. The bleeding time was also prolonged by apyrase, consistent with the conclusion that the chlorpromazine acted through decreasing plasma ADP. We show here that this occurs through the anti-haemolytic action of chlorpromazine.

Adenosine Diphosphate

Axoplasmic free magnesium levels and magnesium extrusion from squid giant axons.

The free magnesium concentration in the axoplasm of the giant axon of the squid, Loligo pealei, was estimated by exploting the known sensitivity of the sodium pump to intracellular Mg2+ levels. The Mg-citrate buffer which, when injected into the axon, resulted in no change in sodium efflux was in equilibrium with a Mg2+ level of about 3--4 mM. Optimal [Mg2+] for the sodium pump is somewhat higher. Total magnesium content of axoplasm was 6.7 mmol/kg, and that of hemolymph was 44 mM. The rate coefficient for 28Mg efflux was about 2 X 10(-3) min-u for a 500-mum axon at 22-25degreesC, with a very high temperature coefficient (Q10=4-5). This efflux is inhibited 95% by injection of apyrase and 75% by removal of external sodium, and seems unaffected by membrane potential or potassium ions. Increased intracellular ADP levels do not affect Mg efflux nor its requirement for Na+/o, but extracellularl magnesium ions do. Activation of 28Mg efflux by Na+/o follows hyperbolic kinetics, with Mg2+/o reducing the affinity of the system for Na+/o. Lanthanum and D600 reversibly inhibit Mg efflux. In the absence of both Na+ and Mg2+, but not in their presence, removal of Ca2+ from the seawater vastly increased 28Mg efflux; this efflux was also strongly inhibited by lanthanum. A small (10(-14) mol cm-2) extra Mg efflux accompanies the conduction of an action potential.

Action Potentials

Specific interaction of HLA antibodies (eluates) with washed platelets.

The mechanism of complement-independent action of HLA-A2 antibodies (eluates) on washed platelets was investigated. HLA-specific alteration was confirmed by serological (platelet micro-complement fixation), morphological (platelet spreading) and functional parameters (platelet aggregation, inhibition of collagen-induced platelet aggregation, [14C]serotonin release). In the presence of fibrinogen and calcium ions, HLA antibodies induced instantaneous platelet aggregation and release. Although no morphological (spreading) and functional changes (collagen-induded aggregation) were seen, these platelets did not aggregate or release when fibrinogen was subsequently added. When platelets--in the presence of fibrinogen--were incubated with antibody concentrations too low to induce platelet aggregation or release, specific reduction of platelet reactivity was observed by subsequent collagen aggregation. HLA-specific action of antibodies on washed platelets was inhibited by apyrase and acetyl-salicylic acid, indicating an active participation of platelets in HLA antibody-induced platelet alteration.

Antibodies

The utilization of nucleotides by animal cells.

We have extended our studies on the toxicity of several arabinosyl nucleotides to L cells. In contrast to a short-term toxic effect of 9-beta-D-arabinofuranosyladenine (araA), both 9-beta-D-arabinofuranosyladenine 5'-phosphate (araAMP) and 9-beta-D-arabinofuranosyladenine 3',5'-cyclic phosphate produced sustained killing of the fibroblasts. 9-beta-D-Arabinofuranosyladenine 2',5'-cyclic phosphate and 9-beta-D-arabinofuranosyladenine-N1-oxide-5'-phosphate were not toxic, whereas 9-beta-D-arabinofuranosylhypoxanthine 5'-phosphate and adenosine 3',5'-cyclic phosphate had relatively slight effects on cell growth. 2',3'-Dideoxyadenosine 5'-phosphate was lethal to L cells, whereas 2',3'-dideoxyadenosine inhibited growth only slightly. The survival time of mice bearing Ehrlich ascites carcinoma was prolonged beyond controls equally well by treatment with either araAMP or araA. To explore the mechanism of nucleotide toxicity, we studied the metabolism of exogenous [3H, 32P]-araAMP. The double-labeled compound entered the cells very slowly and accumulated in both acid-soluble and acid-insoluble materials. 32P and 3H were associated with the adenine nucleotide fractions in ratios similar to that of the exogenous compound. After dephosphorylation of the acid-soluble fraction, greater than 85% of the 3H was associated with araA. Following degradation of the adenine-containing triphosphates with apyrase, all of the 32P and 97% of the 3H were associated with araAMP. Only small quantities of each label were associated with RNA and DNA. Following enzymatic degradation of DNA to 5'-monophosphates, most of both 3H and 32P were associated with the dAMP fraction in a ratio that was similar to that of the exogenous araAMP. After dephosphorylation of the 5'-monophosphates, greater than 90% of the 3H was contained in arabinosyl nucleosides. DNA was also enzymatically degreded to 3'-monophosphates. 3H was found primarily in the 3'-adenine nucleotide fraction with a slight amount in the nucleoside, whereas 32P was distributed among all the 3'-mononucleotides. After dephosphorylation of the 3'-monophosphates, 93% of the 3H was associated with araA. These results indicate that a small amount of araAMP penetrated the cell as the intact nucleotide, was phosphyorlated to the triphosphate and was subsequently incorporated within DNA.

Adenosine

Factors responsible for ADP-induced release reaction of human platelets.

Extensive aggregation of human platelets can be induced by ADP without secondaryaggregation or release of granule contents. This occurs with washed platelets in Tyrode solution containing 0.35% albumin, human fibrinogen, and apyrase, and in platelet-rich, heparin- or hirudin-plasma. Conditions that caused release during ADP-inducedaggregation were-citrate as the anticoagulant in platelet-rich plasma; addition of citrate (11-15 mM) to a suspension of washed platelets, or to hirudin-plasma or heparin-plasma; suspension of platelets in a medium containing magnesium but no calcium;and the presence of trace amounts of thrombin or aggregated gamma globulin in the platelet suspensions. Acetylsalicylic acid, phenylbutazone, or sulfinpyrazone inhibited secondary aggregation and release in all these circumstances. Heparin or hirudin inhibited ADP-INDUCED SECONDARY AGGREGATION AND RELEASE PROMOTED BY TRACES OF THROMBIN. Although fibrinogen is required for ADP-induced primary aggregation, it does not support secondary aggregation and release, provided that it has no clot-promoting activity. The main agent responsible for ADP-induced secondary aggregation and release in human, citrated, platelet-rich plasma appears to be sodium citrate. Suspending washed human platelets in a medium without calcium mimics the effect of citrate.

Adenosine Diphosphate

Activation of rabbit platelets by platelet-activating factor derived from IgE-sensitized basophils. Characteristics of the aggregation and its dissociation from secretion.

Platelet-activating factor (PAF) is liberated from antigen-stimulated, IgE-sensitized rabbit basophils and induces aggregation of platelets and secretion of their content of vasoactive amines. Experiments were performed to determine the relationship between these two platelet responses to this stimulus.(a) Aggregation was initiated by appreciably lower concentrations of PAF than were required to produce even minimal release of constituents. PAF-induced aggregation was also resistant to agents which destroy ADP, such as creatine phosphate/creatine phosphokinase or apyrase, and occurred with platelets made unresponsive (refractory) to ADP. It was concluded that PAF can induce aggregation by a mechanism which is distinguishable from the release reaction and from the aggregating effect of ADP.(b) Secretion can probably occur independently of aggregation because incubation without agitation resulted in secretion without detectable aggregation.(c) Despite the suggestion that the two platelet responses can be independent, they may be induced by the same stimulus. This was indicated by experiments in which platelets specifically desensitized to PAF-induced secretion were also found to be unresponsive to PAF-stimulated aggregation. Moreover, identical levels of inhibition and identical inhibition profiles were obtained for both responses with serine esterase inhibitor, diisopropylphosphofluoridate, and with amino acid esters. It was concluded that the same stimulus-specific activable protease (esterase) was most likely involved in PAF-induced aggregation and secretion.

Adenosine Diphosphate

Adenosinetriphosphate, calcium and temperature requirements for the final steps of exocytosis in Paramecium cells.

In Paramecium cells a synchronized discharge of trichocysts (which involves only the final exocytosis steps of membrane fusion, content discharge and membrane resealing) was achieved with ATPase-blockers, Ca2+-ionophores, lipid solvents (including lysolecithin), polyethyleneglycol, anaesthetics (Dibucain) and cationic detergents (cetyltrimethylammonium bromide (CTMAB) and cetylpyridinium chloride (CPC). Only Dibucain--and to some extent cationic detergents--can trigger exocytosis independently of extracellular Ca2+, possibly by mobilizing intracellular Ca2+. The internal free [Ca2+] necessary for exocytosis can be estimated to be greater than 10(-6) to 10(-4) M. Membrane-free trichocyst contents were isolated by density gradient centrifugation; they are converted from the contracted to the expanded state by Dibucain, CTMAB and CPC, and also by exogenous ATPase (Apyrase). Thus, it is possible to de-couple the discharge (stretching) process from membrane-related phenomena. Since only the latter are inhibited by low temperature (0 degrees C), membrane lipids probably have to be in a fluid state for exocytosis to occur. At least 2 steps appear to be involved: when membrane fusion is initiated, an independent matrix-bound system is activated for the synchronized stretching process. The energy requirement for one discharge event is estimated to be about 14 X 10(6) ATP molecules.

Adenosine Triphosphate

Studies on gel-filtered human platelets: isolation and characterization in a medium containing no added Ca2+, Mg2+, or K+.

We have adapted the gel filtration technique for separation of human platelets from the plasma constituents to permit use of an eluant containing no added Ca2+, Mg2+, and K+, and hence allow direct determination of the intracellular concentrations of these ions in the isolated platelets. The eluant employed is modified Ca2+-free Tyrode's buffer which contains Sr2+ (0.2 mM) as a substitute for Mg2+ and lacks added K+. The functional metabolic, and morphological properties of these isolated platelets have been determined ael-filtered platelets (GFP) to low concentrations of ADP and adrenaline was qualitatively similar to that of platelet-rich plasma (PRP). However, a slower response was observed for the GFP. This rate difference was partially or completely reversed by addition of apyrase to the medium. Analysis of the total adenine nucleotide content and the pattern of 14C incorporation into the metabolic adenine nucleotide pool indicated that isolation in this medium caused to significant change in the ATP and ADP contents or in the adenylate energy change in comparison with the PRP. However, a significant increase in the extent of hypoxanthine production from ATP was noted in GFP isolated in media lacking Mg2+. Inclusion of Mg2+ in the elution media prevented this increased hypoxanthine production. The intracellular concentrations of Ca2+, Mg2+, and K+ of the GFP as determined by atomic absorption analysis were in good agreement with the values obtained for platelets separated from plasma by high-speed centrifugation. Platelet Ca2+ and Mg2+ levels remained stable despite the lack of significant extracellular levels of these ions. However platelet K+ fell to about 30 per cent of its initial value after incubation of 90 minutes at 23 degrees C. and a coincident increase was observed in extracellular K+ concentration. This procedure for platelet isolation may be of particular value for studies on the role of Ca2+, Mg2+, and K+ in platelet physiology and metabolic processes.

Adenine

Properties of washed human platelets.

We have shown previously that washed human platelets resuspended in Tyrode solution containing albumin and apyrase maintain their disc shape and their ability to aggregate upon the addition of low concentration of ADP, providing fibrinogen is added to the suspending medium. We have now examined their responses to other aggregating and release-inducing agents. Collagen, arachidonate, thrombin, immune serum globulin, the ionophore A23, 187 and phytohaemagglutinin from Phaseolus vulgaris caused aggregation and release of granule contents. The response to adrenaline was variable. Serotonin caused the platelets to change shape but no aggregation or release occurred. Addition of a small amount of plasma was necessary for ristocetin-induced aggregation. Polylysine caused immediate platelet-to-platelet adherence with little or no release of granule contents. Responses to collagen or thrombin were greater in a modified medium containing magnesium but no calcium; in this medium, aggregation caused by ADP or polylysine was followed by the release of granule contents whereas these agents caused aggregation without release in a medium with both calcium and magnesium. When protein was omitted from the suspending medium, platelet aggregation in response to ADP was variable. In this medium, collagen and thrombin caused more extensive release than in the albumin-containing medium. Aggregation by polylysine was accompanied by release and extensive lysis in the protein-free medium. Thus, the composition of the final resuspending medium has a major effect on the responses of washed human platelets to aggregating agents.

Arachidonic Acids

Endotoxin-induced changes in human platelet membranes: morphologic evidence.

Interaction between human platelets and bacterial endotoxin was studied in vitro with transmission and scanning electron microscopy. Washed human platelets, whose aggregation was blocked with apyrase, were incubated in a plasma-free medium containing crude endotoxin that had previously been complexed with copper. Thirty minutes of incubation resulted in adherence of endotoxin particles to the platelet surface, breaks in the platelet plasma membrane with apparent attempts at repair, pseudoped formation, and centralization of platelet organelles. Copper appeared to potentiate these phenomena, since neither Cu2+ at low concentrations nor endotoxin alone altered the morphology of the platelet membrane. This platelet-endotoxin interaction may be an intermediary step in the detoxification and clearance of endotoxin from the plasma.

Blood Platelets

Enzymic preparation of adenosine 5'-[beta-2P]triphosphate.

A simple method for the preparation of adenosine 5'-[beta-32 P]triphosphate is described. When [32P]orthophosphate was incubated with polyadenylate and phosphoenolpyruvate in the presence of polynucletide phosphorylase (EC 2.7.7.8) and pyruvate kinase (EC 2.7.1.40), up to 75% of 32P radioactivity was recovered in ATP. [32P]ATP was purified to 99.5% radiochemical purity by chromatography on polyethyleneimine-cellulose thin-layer plates. Analysis of hydrolysis products of [32P]ATP with apyrase (EC 3.6.1.5) indicates that 32P in the beta-phosphate position accounts for all 32P label in ATP.

Adenosine Triphosphate

Microdetermination of plasma ATP and creatine phosphate concentrations with a luminescence biometer.

We optimized conditions for determination of adenosine-5'-triphosphate (ATP) and creatine phosphate from plasma extracted with ethanol/water (96/4 by vol). The procedures utilize the firefly luciferin/luciferase reaction, the bioluminescence being measured with a Du Pont Biometer. ATP is quantitated directly and creatine phosphate is quantitated by reaction with creatine kinase and ADP, after plasma ATP is removed by incubation with the enzyme apyrase. The method is applied to plasma from humans, rabbits, and rats, and possible clinical applications are discussed.

Adenosine Triphosphate

Involvement of mediators in the interaction of platelets and carrageenan.

Carrageenan or thrombin-induced aggregation of plasma-free rabbit platelets was inhibited by calcium and magnesium chelating agents, by N-ethylmaleimide and by drugs that increase the intra-cellular cyclic AMP content. Inhibitors of prostaglandin (PG) synthetase were only partially active, and had to be present in the platelet suspension to inhibit aggregation. Inhibition of PG synthetase, as evaluated by bioassay and by AA-induced platelet aggregation, was not reduced when inhibitors were washed from platelets. The phospholipase A2 inhibitors bromophenacyl bromide and mepacrine, the chymotrypsin inhibitor tosylphenylalaninechloromethylketone, catalase and dithiothreitol also inhibited aggregation, whereas inhibitors of trypsin failed to do so. Incubation of rabbit platelet-rich plasma with carrageenan was followed by generation of PG-like and of rabbit aorta contracting activities. Generation of these activities was inhibited by drugs effective against aggregation, and also by non-steroidal anti-inflammatory drugs. Aggregation of rabbit platelets by carrageenan and by thrombin does not appear to be dependent upon activation of PG synthetase, although PG-like substances are formed during aggregation.

Animals

Studies on isolated subcellular components of cat pancreas. I. Isolation and enzymatic characterization.

Pancreas of the cat was fractionated into its subcellular components by centrifugation through an exponential ficoll-sucrose density gradient in a zonal rotor. This enables a preparation of four fractions enriched in plasma membranes, endoplasmic reticulum, mitochondria and zymogen granules, respectively. The first fraction, enriched by 9- to 15-fold in the plasma membrane marker enzymes, hormone-stimulated adenylate cyclase, (Na+K+)-ATPase, and 5'-nucleotidase, is contaminated by membranes derived from endoplasmic reticulum but is virtually free from mitochondrial and zymogen-granule contamination. The second fraction from the zonal gradient shows only moderate enrichment of the above marker enzymes but contains a considerable quantity of plasma membrane marker enzymes and represents mostly rough endoplasmic reticulum. The third fraction contains the bulk of mitochondria and the fourth mainly zymogen granules as assessed by electron microscopy and marker enzymes for both mitochondria and zymogen granules, namely succinic dehydrogenase, trypsin and amylase. Further purification of the plasma membrane fractions by differential and sucrose step-gradient centrifugation yields plasma membranes enriched 40-fold in basal and hormone-stimulated adenylate cyclase and (Na+K+)-ATPase.

Adenosine Triphosphatases

Comments on spleen sinus enzyme equipment. A histochemical study.

Histochemical observations were made of the activities of nucleosidephosphatases splitting ATP, ADP, IDP, and AMP and exopeptidases splitting l-alanine, l-leucine and l-glycyl-proline in the spleen sinuses of man, mouse, rat, hamster, and rabbit. Of the exopeptidases, only glycylprolyl-naphthylamidase could be proved histochemically, and that only in man and rat. Nucleosidephosphatases showed only traces of activity except in the rabbit where there was highly active AMP-ase, the others being moderately active.

Acid Anhydride Hydrolases