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M Livio

Publications and source records attributed to M Livio.

At least 19 recordsLinked to original sources

Long gamma-ray bursts and core-collapse supernovae have different environments.

When massive stars exhaust their fuel, they collapse and often produce the extraordinarily bright explosions known as core-collapse supernovae. On occasion, this stellar collapse also powers an even more brilliant relativistic explosion known as a long-duration gamma-ray burst. One would then expect that these long gamma-ray bursts and core-collapse supernovae should be found in similar galactic environments. Here we show that this expectation is wrong. We find that the gamma-ray bursts are far more concentrated in the very brightest regions of their host galaxies than are the core-collapse supernovae. Furthermore, the host galaxies of the long gamma-ray bursts are significantly fainter and more irregular than the hosts of the core-collapse supernovae. Together these results suggest that long-duration gamma-ray bursts are associated with the most extremely massive stars and may be restricted to galaxies of limited chemical evolution. Our results directly imply that long gamma-ray bursts are relatively rare in galaxies such as our own Milky Way.

Journal Article↗

Gravitational microlensing by low-mass objects in the globular cluster M22.

Gravitational microlensing offers a means of determining directly the masses of objects ranging from planets to stars, provided that the distances and motions of the lenses and sources can be determined. A globular cluster observed against the dense stellar field of the Galactic bulge presents ideal conditions for such observations because the probability of lensing is high and the distances and kinematics of the lenses and sources are well constrained. The abundance of low-mass objects in a globular cluster is of particular interest, because it may be representative of the very early stages of star formation in the Universe, and therefore indicative of the amount of dark baryonic matter in such clusters. Here we report a microlensing event associated with the globular cluster M22. We determine the mass of the lens to be 0.13(+0.03)(-0.02) solar masses. We have also detected six events that are unresolved in time. If these are also microlensing events, they imply that a non-negligible fraction of the cluster mass resides in the form of free-floating planetary-mass objects.

Journal Article↗

Defective platelet aggregation in response to platelet-activating factor in uremia associated with low platelet thromboxane A2 generation.

The bleeding tendency associated with uremia is likely due to a qualitative platelet dysfunction. So far the data available on platelet aggregation are conflicting. Since platelet-activating factor (PAF) plays a role in primary hemostasis, we studied platelet aggregation in response to PAF in 40 patients with chronic uremia on regular hemodialysis and 12 control subjects. Our results showed that in 28 of 40 uremics, platelet aggregation response to PAF was normal, whereas in the remaining 12 it was defective in that no second wave of aggregation was elicited even if the PAF concentrations were increased by a factor of 10,000. This abnormal response was peculiar to PAF and only partially related to factor(s) of plasma origin. The number of platelet PAF receptors and their affinity for the agonist were comparable in controls and "PAF-unresponsive" patients. The defective platelet aggregation in response to PAF was associated with a statistically significant reduction (P less than 0.01) in thromboxane A2 (TxA2) generation in platelet-rich plasma (PRP) challenged with PAF (10 and 100 nmol/L). When PRPs from PAF-unresponsive patients were preincubated with a stable analogue of prostaglandin endoperoxides/TxA2 U-46619, an irreversible platelet aggregation in response to PAF was obtained. Thus in a subpopulation of uremics, platelet aggregation in response to PAF is selectively abnormal as a consequence of a reduced TxA2 generation.

Adult↗

Differential inhibition by aspirin of platelet thromboxane and renal prostaglandins in the rat.

Aspirin (ASA) beside inhibiting platelet thromboxane A2 (TxA2) can suppress the formation of renal prostacyclin (PGI2) and prostaglandin E2 (PGE2) which play a crucial role in the control of renal hemodynamics. Previous studies based on urinary PG measurements have suggested that p.o. ASA can spare renal cyclooxygenase. We wanted to establish by direct measurement whether p.o. ASA has a renal sparing effect and to establish to which extent changes in renal cyclooxygenase activity can be predicted measuring urinary excretion of 6-keto-PGF1 alpha and PGE2. Our results showed that in normal rats 10 mg/kg of ASA given p.o. partially inhibits platelet TxA2 formation (measured as serum TxB2) and does not inhibit glomerular and medullary PGI2 and PGE2 synthesis. Higher doses of ASA (30-200 mg/kg) effectively and completely inhibit platelet TxA2 independently if given p.o. or i.v., and also inhibit glomerular and medullary PG synthesis. The kinetics of the effect of ASA on platelet vs. renal cyclooxygenase is different: the inhibition being irreversible in platelets, but rapidly reversible in glomeruli and medulla. Six hours after the administration of 10 and 30 mg/kg i.v. and 30 mg/kg p.o., kidney cyclooxygenase activity recovers completely. This transient inhibition of renal cyclooxygenase is not reflected by urinary excretion of 6-keto-PGF1 alpha and PGE2 (6- and 24-hr collection periods). In conclusion our present results indicate that doses of ASA enough to inhibit platelet TxA2, transiently inhibit glomerular and medullary PGI2 and PGE2. Although the inhibitory effect on platelets is long lasting, the effect on renal cyclooxygenase is transient and rapidly reversible.(ABSTRACT TRUNCATED AT 250 WORDS)

6-Ketoprostaglandin F1 alpha↗

Selective inhibition of platelet thromboxane generation with low-dose aspirin does not protect rats with reduced renal mass from the development of progressive disease.

Rats with extensive renal mass reduction develop hypertension, proteinuria and progressive glomerulosclerosis. Previous studies have demonstrated that these changes are associated with an increased urinary excretion of thromboxane compared with normal rats and that the administration of a thromboxane synthetase inhibitor prevents glomerulosclerosis and progressive renal function deterioration. On this basis it has been speculated that the thromboxane synthetase inhibitor, by inhibiting platelet thromboxane, reduces platelet aggregation and prevents the generation of substances that can influence glomerular functional properties. Because the thromboxane synthetase inhibitor also inhibits thromboxane synthesis by resident glomerular cells and lowers blood pressure in these animals, the question of whether platelet thromboxane is indeed the factor implicated in the development of renal disease after renal ablation remains unanswered. To address this issue the authors administered at different time intervals from the surgical procedure a low-dose of oral aspirin (ASA) to rats with remnant kidney. This approach resulted in selective inhibition of platelet cyclooxygenase leading to an almost complete prevention of platelet thromboxane generation. Low-dose ASA spared renal cyclooxygenase as documented by a lack of significant inhibition of glomerular and urinary 6-keto-PGF1 alpha and did not lower blood pressure. Renal function studies showed that low-dose ASA, despite inhibiting platelet aggregation, had no effect on proteinuria and progressive renal insufficiency irrespectively if administered late (ie, 80 days after surgery) and given daily for all the observation period (ie, 20 days) or earlier in the course of the disease (ie, 40 and 10 days after surgery). Histologic data showed that the degree of glomerulosclerosis and tubulo-interstitial damage was not significantly different in rats with reduction of renal mass alone compared with rats with remnant kidney given low-dose ASA. In conclusion, the present findings indicate that inhibition of platelet aggregation and thromboxane formation does not prevent the progressive glomerulosclerosis that develops in rats with surgical reduction of renal mass. It is suggested that the beneficial results obtained previously in the same model by the use of a thromboxane synthesis inhibitor must be attributed either to an effect on resident glomerular cell thromboxane synthesis or to lowering systemic blood pressure.

Animals↗

Enhanced glomerular thromboxane A2 mediates some pathophysiologic effect of platelet-activating factor in rabbit nephrotoxic nephritis: evidence from biochemical measurements and inhibitor trials.

Previous studies have shown that platelet-activating factor (PAF) receptor blocking has a protective effect on rabbit nephrotoxic nephritis (NTN). We examined whether arachidonic acid (AA) metabolism is altered in NTN and whether a PAF receptor antagonist has any influence on such changes. Rabbits injected with anti-glomerular basement membrane antiserum in the heterologous phase had a markedly increased glomerular thromboxane B2 (TxB2) production level, whereas no changes have been detected in glomerular 6-keto-prostaglandin F1 alpha (6-keto-PGF1 alpha) and prostaglandin E2 (PGE2). During the autologous phase of the disease, the glomerular TxB2 level was even higher than in the heterologous phase. The level of 6-keto-PGF1 alpha was significantly lower than normal, and the level of PGE2 was unchanged in respect to the basal values. The use of L-652,731 (a specific PAF receptor antagonist) reversed the abnormal generation of AA metabolites at glomerular level both in the heterologous and autologous phase of the disease. The effect of L-652,731 on AA metabolism is likely to be an indirect result of the PAF receptor blocking, because L-652,731 given to normal rabbits had no direct effect on glomerular AA metabolism. To assess whether the beneficial effect of L-652,731 in NTN is at least in part mediated by its capability of suppressing the excessive intrarenal synthesis of thromboxane A2 (TxA2), we compared the effect of L-652,731 with that of a selective TxA2-synthase inhibitor (FCE-22178). FCE-22178 ameliorated the morphologic expression of rabbit NTN and reduced function deterioration. The protective effect of L-652,731 on proteinuria in the autologous phase and on glomerular filtration rate in both phases was superior to that of FCE-22178. We conclude that an excessive intraglomerular synthesis of TxA2 occurs in rabbit NTN that can play a role in renal function deterioration. Both a specific PAF receptor antagonist and a TxA2-synthase inhibitor reduced the exaggerated TxA2 synthesis and favorably influenced the evolution of the disease.

Animals↗

Metabolism of arachidonic acid in isolated glomeruli from pig kidney.

Arachidonic acid metabolism in isolated glomeruli from pig kidney was investigated. Arachidonic acid metabolism via cyclooxygenase was studied by three different methodological approaches: radioimmunoassay (RIA), high-performance liquid chromatography (HPLC) and gas chromatography-mass spectrometry (GC-MS). By all these techniques, the major prostaglandins (PG) formed by pig glomeruli appeared to be 6-keto-PGF1 alpha and PGF2 alpha, the former being the most abundant. RIA and GC-MS also detected lower amounts of thromboxane B2 (TxB2) and PGE2. This emphasises the similarity with human glomeruli, in which the main cyclooxygenase product has indeed been reported to be 6-keto-PGF1 alpha. The lipoxygenase activity in isolated pig glomeruli, as studied by HPLC, generated 15-HETE, 12-HETE and 5-HETE. These data demonstrate that isolated glomeruli from pig kidney possess cyclooxygenase as well as lipoxygenase activity. Since a marked functional similarity exists between human and pig kidney, the pig can be regarded as a good model for studying the influence of arachidonic acid metabolites on glomerular pathophysiology.

Animals↗

Role of platelet-activating factor in primary hemostasis.

To determine whether platelet-activating factor (PAF) has a physiological role in the process of primary hemostasis in the rabbit, we measured skin bleeding times in animals given orally a specific PAF-receptor antagonist L-652,731. One hour after the administration of L-652,731 (20 or 40 mg/kg), a significant prolongation of bleeding time was observed. Parameters known to interfere with the process of primary hemostasis were not altered by PAF-receptor antagonist. In addition, no changes were observed in platelet count and vessel wall arachidonic acid metabolism, as revealed by serum thromboxane B2 levels, vascular 6-ketoprostaglandin F1 alpha generation, and by aspirin experiment. The fact that aspirin alone did not induce prolongation of bleeding time in rabbits is probably due to the simultaneous inhibition of platelet thromboxane A2 and vascular prostacyclin. [3H]PAF binding to washed platelets of rabbits given L-652,731 showed a significant reduction in maximum number of detectable binding sites in comparison with values found in the same animals before the L-652,731 administration. The results suggest that the bleeding-time prolongation observed after L-652,731 administration results from its ability to selectively inhibit PAF bioactivity. Thus locally released PAF appears to exert a physiological role in the process of platelet plug formation that follows a skin incision in the rabbit.

Animals↗

Platelet activating factor (PAF) as a mediator of injury in nephrotoxic nephritis.

Release of acetyl glyceryl ether phosphorylcholine, platelet-activating factor (PAF), has been demonstrated to be associated with glomerular inflammatory damage in acute serum sickness. Moreover, PAF can increase glomerular permeability to proteins and induce mesangial contraction. Thus PAF might be a good candidate as a mediator of glomerular damage. However the in vivo evidence that PAF might cause glomerular injury is lacking. To evaluate if PAF has a major role in promoting glomerular inflammatory reaction and fibrin deposition, we studied the effect of a molecule, L-652,731, which blocks the PAF receptor, on the evolution of an experimental model of anti-glomerular basement membrane (anti-GBM) glomerulonephritis (GN). GN was initiated by sheep-anti-rabbit nephrotoxic serum. A proliferative GN regularly occurred in which heavy proteinuria, intra and extracapillary proliferation of resident and inflammatory cells and fibrin deposition in Bowman's capsule were the prominent findings. Our results showed that the PAF receptor antagonist reduces the glomerular damage in anti-GBM GN, supporting the hypothesis that PAF is indeed a mediator of glomerular inflammatory reaction. PAF receptor blocking prevented renal function deterioration in the early phase of the disease, probably preserving glomerular hemodynamics. In the delayed phase of the disease the PAF receptor antagonist reduced proteinuria and prevented renal function deterioration and fibrin deposition. These effects appear to be mediated by an inhibitory action of PAF receptor blocking on macrophage accumulation and activation.

Animals↗

Aspirin prolongs bleeding time in uremia by a mechanism distinct from platelet cyclooxygenase inhibition.

We reported that aspirin (ASA) abnormally prolongs bleeding time (BT) in uremia. The present study was designed to investigate whether the abnormally prolonged post-ASA BT in uremia is due to different ASA pharmacokinetics and bioavailability that might be a consequence of uremic condition, platelet cyclooxygenase is peculiarly sensitive to ASA in uremia, and ASA affects primary hemostasis in uremia by a mechanism independent of cyclooxygenase inhibition. Our results showed that in patients with uremia, but not in normal subjects, ASA markedly prolongs the BT. This effect is transient and depends on the presence of ASA in the blood. The observed differences in ASA kinetic parameters are not an explanation of the exaggerated effect of ASA on primary hemostasis in uremia. The sensitivity of platelet cyclooxygenase to ASA inhibition is comparable in uremics and in normal subjects. The temporal dissociation between ASA-induced prolongation of BT and the effect on platelet thromboxane A2 generation suggests that ASA inhibits platelet function in uremia by a mechanism distinct from cyclooxygenase blocking. This possibility is strengthened by the observation that ibuprofen at a dose that fully inhibits platelet cyclooxygenase activity does not significantly prolong BT.

Acetylation↗

Conjugated estrogens for the management of bleeding associated with renal failure.

Bleeding is a major complication of uremia. Both cryoprecipitate and desmopressin effectively shorten the prolonged bleeding time and favorably influence clinical bleeding, but the former carries the risk of transmitting blood-borne infectious diseases, and both cryoprecipitate and desmopressin have a short duration of action. Preliminary evidence has suggested that estrogens may be useful, and we therefore performed a randomized, double-blind, crossover trial comparing the effect of conjugated estrogens with that of placebo on hemorrhagic tendencies and the bleeding time in six patients with uremia who were on maintenance hemodialysis. Five daily infusions of placebo or conjugated estrogens were administered at the beginning of one-month trial periods. Estrogen shortened the bleeding time in all six patients. The effect was detectable six hours after the first infusion, reached its maximum in all patients between days 5 and 7, and lasted for 14 days. By day 16 after the last infusion, the bleeding time had returned to base line in four of the six patients. No side effects were noted during or after estrogen infusion. Estrogens did not influence the circulating level of von Willebrand factor or change its multimeric structure. Moreover, the defective platelet aggregation and thromboxane formation observed in the patients were not corrected by estrogens. We conclude that conjugated estrogens are an adequate alternative to cryoprecipitate or desmopressin for the treatment of bleeding associated with renal failure, especially when a longer duration of action is needed and immediate onset of the effect is not essential. The mechanism of action of estrogens remains to be clarified.

Adult↗

Moderate doses of aspirin and risk of bleeding in renal failure.

Uraemic patients have a bleeding tendency thought to be due to platelet functional abnormalities, but haemodialysis paradoxically exposes patients to the thrombotic complications of arteriovenous shunts. Possible treatments of the latter have been debated. The effect of 100 mg/m2 aspirin on haemostatic function was studied in 29 uraemic patients on chronic haemodialysis who had normal or only slightly prolonged bleeding times. Aspirin did not significantly affect bleeding time in healthy controls but prolonged it in uraemic patients. In 12 of the 29 uraemic patients, the bleeding time after aspirin was longer than 15 min. Aspirin completely abolished thromboxane A2 generation by both control and uraemic platelets, indicating that its effect in uraemic patients is not due to differential inhibition of platelet cyclo-oxygenase. Products of lipoxygenase enzyme and factor VIII von Willebrand factor did not seem to have a role. A careful risk-benefit evaluation is necessary before giving aspirin to uraemic patients on haemodialysis to prevent thrombosis of the arteriovenous shunt.

Adolescent↗

Inhibition of human platelet aggregation by parathyroid hormone. Is cyclic AMP implicated?

Parathyroid hormone (PTH) is a polypeptide which in different in vitro systems raises intracellular cyclic AMP (cAMP) levels via adenyl cyclase activation and stimulates Ca2+ transport across cell membranes. We tested whether, on the basis of this mechanism, PTH would inhibit human platelet aggregation. The latter was tested in vitro by a photometric technique. Platelet aggregation induced by the calcium ionophore A 23187 was inhibited by PTH at concentrations (0.5-3 USP U/ml) similar to those effective in other in vitro systems. Higher concentrations of PTH were required to prevent aggregation initiated by adenosine-5'-diphosphate, arachidonic acid, or platelet-aggregating factor. The terminal synthetic fragment 1-34 b PTH was ineffective against all aggregation stimuli. The antiaggregating effect of PTH was potentiated by verapamil and theophylline and was additive to that of PGI2. However, PTH did not appear to increase platelet cAMP levels and was not counteracted by an inhibitor of platelet adenyl cyclase. It is therefore unlikely that PTH inhibits platelet aggregation through an adenyl cyclase stimulated increase of cAMP. Since PTH levels are markedly increased in uremic plasma, it might contribute to the defective platelet function and the bleeding tendency frequently occurring in uremic patients.

Adenylyl Cyclases↗

Acetyl glycerylphosphorylcholine aggregates human platelets through two distinct pathways, both dependent on arachidonic acid metabolism.

Acetyl glyceryl ether phosphorylcholine (AGEPC) is a mediator of inflammation and anaphylaxis, released from IgE-sensitized basophils when exposed to antigens. Convincing evidence shows that AGEPC is synthesized by inflammatory cells, and its mechanism of action has been extensively studied with particular interest focusing on platelet stimulation, the key event initiating the inflammatory cascade. However, widely different results have been reported so that the mode of action of AGEPC in activating platelets is still largely obscure. The objective of this investigation was to elucidate whether AGEPC stimulates human platelets independently from arachidonate metabolism, as previously suggested, and to define the role of nonsteroidal antiinflammatory drugs in inhibiting AGEPC-mediated platelet activation. Irreversible platelet aggregation in vitro occurred at low AGEPC concentrations, was dose dependent, and was accompanied by thromboxane A2 formation. Aspirin inhibited irreversible aggregation induced by low AGEPC concentrations. A thromboxane inhibitor, UK-37, 248-01, failed to affect AGEPC aggregation, suggesting a crucial role for cyclic endoperoxides in AGEPC's mechanism of action. A thromboxane/endoperoxide receptor antagonist 13-azaprostanoic acid prevented irreversible platelet aggregation induced by low AGEPC concentrations. The inhibiting effect of aspirin on AGEPC aggregation could be overcome by increasing the concentration of the agonist by a factor of 10, unless a lipoxygenase inhibitor, nordihydroguaiaretic acid, or 5,8,11,14-eicosatetraynoic acid was previously added to platelet-rich plasmas. The phospholipase inhibitor, mepacrine, completely suppressed human platelet aggregation induced by AGEPC. These results indicate that AGEPC induces irreversible aggregation in human platelets by two distinct pathways, both dependent upon arachidonic acid metabolism: a cyclooxygenase-dependent one at low AGEPC concentrations and a cyclooxygenase-independent one, possibly mediated through the formation of lipoxygenase products, at high AGEPC concentrations.

5,8,11,14-Eicosatetraynoic Acid↗

Inhibition of human platelet cyclo-oxygenase activity by sulfinpyrazone and three of its metabolites.

Sulfinpyrazone and three of its major metabolites were compared in vitro for their inhibitory effect on human platelet cyclo-oxygenase activity. Sulfinpyrazone appeared to be about 15-20 times less potent than its sulfide metabolite (G25671) and 6-7 times less potent than the other two compounds, the sulfone metabolite (G31442) and p-hydroxysulfide (G33378). All four compounds were apparently competitive inhibitors of platelet cyclo-oxygenase activity. Comparison of the potency of sulfinpyrazone and its metabolites, as determined in the present study and the plasma levels previously measured in man, indicates that sulfinpyrazone and G33378 were not potent enough to be effective in man. G31442 showed inhibitory potency slightly lower than its corresponding plasma levels, whereas G25671 was effective at concentrations well below those found in human plasma. This study supports the hypothesis that sulfinpyrazone metabolites (in particular the sulfide) rather than the drug itself affect platelet function when administered therapeutically.

Arachidonic Acid↗

The metabolism of arachidonic acid by platelets in nephrotic syndrome.

The production of malondialdehyde (MDA) and thromboxane B2 (TxB2) by platelets following an arachidonic acid (AA) challenge was greater in nephrotic platelet rich plasma (PRP) than in normal PRP. The uptake of 14C-AA, and its subsequent conversion to 14C-TxB2 following a thrombin stimulus, was also greater in nephrotic than normal PRP. Normal plasma diminished the MDA production by nephrotic platelets. The addition of albumin to nephrotic PRP, or, the intravenous infusion of albumin in quantities sufficient to correct hypoalbuminemia also diminished the excessive production of prostaglandin metabolites by nephrotic platelets. The platelet aggregate ratio (PAR), which measures circulating platelet aggregates, was abnormal during the acute phase of nephrotic syndrome but reverted to normal following remission. These data indicate that hypoalbuminemia is associated with increased AA metabolism by platelets and suggest that platelet "hyperactivity" may contribute to the proclivity toward thrombosis observed in nephrotic syndrome.

Albumins↗