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Hemostatic variables, carbohydrate metabolism and lipid profile in women with low body mass index.

The aim of this study was to evaluate hemostatic variables in women according to different body mass index (BMI) values, and then correlate them with some metabolic parameters - fasting insulin and glucose, total cholesterol, high-density lipoprotein (HDL)-cholesterol, low-density lipoprotein (LDL)-cholesterol and triglycerides. Eighty-four female patients aged 18-39 years were recruited, and agreed to participate in the study. The study group was divided into three subgroups according to BMI: low BMI (BMI < 18.5 kg/m2; n = 43), normal-weight (control) (BMI 18.5-24.99 kg/m2; n = 21) and overweight/obese (BMI > 25 kg/m2; n = 20). BMI was calculated, and the following measurements were taken: International Normalized Ratio, antithrombin III, tissue plasminogen activator (t-PA) activity, t-PA-antigen, plasma fibrinogen level, factor VII, Plasminogen activator inhibitor (PAI)-1 activity and antigen and metabolic parameters: fasting insulin and glucose, total cholesterol, HDL-cholesterol, LDL-cholesterol and triglycerides. The results were statistically analyzed. In the low BMI group, a negative correlation between fasting insulin and PAI-1 activity, and a positive correlation between fasting glucose and PAI-1 antigen were observed. Also, a strong negative correlation between PAI-1 activity and insulin/glucose index was found. Plasma insulin levels were significantly lower in the low-BMI women than in the overweight/obese group (p < 0.001) and with no difference compared to the control group. We did not find any difference in fasting glucose level between all groups. HDL-cholesterol showed the highest levels in the normal BMI group and was significantly higher than in the low BMI and obese groups (p < 0.05 and p < 0.01, respectively). PAI-1 activity in the low BMI women revealed increased activity in comparison to control and overweight/obese women (p < 0.001 and p < 0.05, respectively). Lower antigen levels were also shown as compared to both these groups (p < 0.001 and p < 0.001, respectively). Similar results were obtained with t-PA antigen levels (p < 0.001 and p < 0.001, respectively). There were no differences in activity of t-PA in all groups. Obese women showed significantly higher fibrinogen levels than other BMI groups (p < 0.001 and p < 0.001 respectively). Analysis of hemostatic variables in women with a low BMI testify to the impaired fibrinolysis in this group, also showing a strong correlation with carbohydrate metabolism.

Adolescent↗

Modulation of endothelial cell hemostatic properties by tumor necrosis factor.

Tumor necrosis factor/cachectin (TNF) is a mediator of the septic state, which involves diffuse abnormalities of coagulation throughout the vasculature. Since previous studies have shown that endothelial cells can play an active role in coagulation, we wished to determine whether TNF could modulate endothelial cell hemostatic properties. Incubation of purified recombinant TNF with cultured endothelial cells resulted in a time- and dose-dependent acquisition of tissue factor procoagulant activity. Concomitant with enhanced procoagulant activity, TNF also suppressed endothelial cell cofactor activity for the anticoagulant protein C pathway; both thrombin-mediated protein C activation and formation of functional activated protein C-protein S complex on the cell surface were considerably attenuated. Comparable concentrations of TNF (half-maximal affect at approximately 50 pM) and incubation times (half-maximal affect by 4 h after addition to cultures) were required for each of these changes in endothelial cell coagulant properties. This unidirectional shift in cell surface hemostatic properties favoring promotion of clot formation indicates that, in addition to leukocyte procoagulants, endothelium can potentially be instrumental in the pathogenesis of the thrombotic state associated with inflammatory and malignant disorders.

Animals↗

Laparosonic coagulating shears: alternative method of hemostatic control of unsupported tissue.

Ultrasonic energy is now available as a hemostatic tool to aid dissection during surgery. A new device, the Laparosonic Coagulating Shears (LCS-Ethicon/Ultracision, N. Smithfield, RI), has been developed to allow hemostatic coagulation and division of tissue. We describe the mechanism of action and its effects in the porcine model. In addition, we compare this modality with conventional electrosurgery.

Animals↗

Molecular markers of hemostatic activation and inflammation following major injury: effect of therapy with IFN-gamma.

Interferon-gamma (IFN-gamma) has shown promise in treatment of injured patients. However, reactive states marked by immunologic and inflammatory responses constitute a potential deleterious effect of IFN-gamma administration. IFN-gamma therapy has been associated with high levels of tumor necrosis factor-alpha (TNF-alpha), with potential enhancement of coagulopathy after injury. This study evaluated TNF-alpha production and markers of hemostatic activation in patients receiving IFN-gamma therapy. Seventy-three patients, part of a larger multicenter trial, with severe injuries were randomized to IFN-gamma (100 microg/day s.c. for 21 days) or placebo treatment. Enrollment criteria included injury severity score (ISS) > or = 25 or significant bacterial contamination with ISS > or = 20. TNF-alpha and other cytokine production was assessed at baseline and on days 3, 8, and 22 following injury. Markers of coagulation activation and fibrinolysis were also evaluated. Plasma TNF-alpha and interleukin-6 (IL-6) levels were higher in IFN-treated relative to placebo-treated patients before and after IFN administration. Markers of coagulation and fibrinolysis were elevated at all times studied following injury in both treatment and control groups but did not differ between patients receiving IFN and those receiving placebo. Activation of coagulation and fibrinolysis diminished in a time-related manner following injury. We conclude that (1) IFN-gamma therapy at the dose employed was not associated with a significant increase in TNF-alpha or other inflammatory cytokine production beyond that seen in patients receiving placebo, (2) coagulation and fibrinolytic markers were increased following injury but decreased significantly in surviving patients, and (3) no changes in coagulation and fibrinolytic parameters were noted in relation to IFN-gamma therapy. These findings support previous observations that trauma is associated with hemostatic activation and that treatment of patients at the dose of IFN-gamma studied is safe in the setting of injury.

Adult↗

Hemostatic factors and blood lipids in young Buddhist vegetarians and omnivores.

A comparison was made between the hemostatic and lipid profiles of 55 young Chinese Buddhist vegetarians (23 men, 32 women) and 59 Chinese medical students (20 men, 39 women) aged 20-30 y. The modern Buddhist vegetarian diet is high in carbohydrate (63% of energy in men, 58% in women) and has a high polyunsaturated-saturated fatty acid ratio, with moderate fat content (25% for men, 30% for women). Rice and soybean proteins are the major protein sources. This study demonstrated that the major beneficial effects of a modern Buddhist vegetarian diet are on blood concentrations of cholesterol, the ratio of apolipoprotein A-I to apolipoprotein B, glucose, and uric acid, but not on most hemostatic factors studied, which included fibrinogen, factor VIIc, factor VIIIc, and plasminogen. Vegetarian men had significantly higher concentrations of antithrombin III than nonvegetarian men.

Adult↗

Alpha-linolenic acid and marine long-chain n-3 fatty acids differ only slightly in their effects on hemostatic factors in healthy subjects.

The effects of alpha-linolenic acid (ALA, 18:3n-3), eicosapentaenoic acid (EPA, 20:5n-3), and docosahexaenoic acid (DHA, 22:6n-3) on hemostatic factors were compared. Healthy subjects (29 women and 17 men aged 20-44 y) received either linseed oil (average ALA intake: 5.9 g/d) or fish oil plus sunflower oil (average EPA + DHA intake: 5.2 g/d) for 4 wk. The supplemented amount of fat was 1.19 mg/kJ (1 g/200 kcal) calculated energy expenditure. Stability of habitual diets was monitored. Blood samples were collected at baseline, at the end of the experimental period, and after a 12-wk follow-up period. Different changes in the study groups were seen only in serum cholesterol and triacylglycerols, platelet fatty acid composition, and ADP-induced platelet aggregation. The treatments did not differ in their effects on collagen-induced platelet aggregation and thromboxane production, aggregation to the thromboxane A2 mimic I-BOP, urinary excretion of 11-dehydro-thromboxane B2 and beta-thromboglobulin, bleeding time, plasma fibrinogen concentration, antithrombin III activity, factor VII coagulant activity, or activity of plasminogen activator inhibitor 1. The results indicate that supplemented ALA from vegetable oil and EPA and DHA from a marine source have largely parallel effects on hemostatic factors.

Adult↗

Moderate intakes of intact soy protein rich in isoflavones compared with ethanol-extracted soy protein increase HDL but do not influence transforming growth factor beta(1) concentrations and hemostatic risk factors for coronary heart disease in healthy subjects.

BACKGROUND: Soybeans contain estrogenic isoflavones that may influence plasma concentrations of transforming growth factor beta(1) (TGF-beta(1)) and plasma lipid and hemostatic risk factors for coronary heart disease. OBJECTIVE: We compared the effects of moderate intakes of soy protein containing intact phytoestrogens (high-isoflavone diet) and soy protein from which most of the phytoestrogens had been extracted (low-isoflavone diet) on active TGF-beta(1) concentrations and plasma lipid and hemostatic risk factors for coronary heart disease. DESIGN: A randomized crossover trial was conducted in 22 young, healthy, normolipidemic subjects (5 men and 17 women) who consumed diets providing 56 or 2 mg isoflavones/d for 17 d each with a 25-d washout period between treatments. Fasting blood samples were obtained on days 13 and 14 of each treatment to measure plasma isoflavone, lipid, fibrinogen, and active TGF-beta(1) concentrations and factor VII coagulant and plasminogen activator inhibitor type 1 activities. RESULTS: Plasma isoflavone concentrations were 100-999 times greater after the high-isoflavone diet than after the low-isoflavone diet (P < 0.05). Plasma HDL-cholesterol and apolipoprotein A-I concentrations were 4% (95% CI: 1%, 8%) and 6% (95% CI: 3%, 10%) higher, respectively, after the high-isoflavone diet than after the low-isoflavone diet (P < 0.01 for both). CONCLUSION: Compared with soy protein from which most of the phytoestrogens have been extracted, soy protein with intact phytoestrogens increases HDL-cholesterol and apolipoprotein A-I concentrations but does not influence LDL-cholesterol, TGF-beta(1), or fibrinogen concentrations; factor VII coagulant activity; or plasminogen activator inhibitor type 1 activity in normolipidemic, healthy subjects.

Adult↗

Hemostatic abnormalities in malignancy, a prospective study of one hundred eight patients. Part I. Coagulation studies.

A prospective study of hemostatic abnormalities in 108 cancer patients was undertken at an oncology clinic in a university teaching hospital. Tests included Quick prothrombin time, activated partial thromboplastin time, thrombin time, platelet count, modified Ivy bleeding time, fibrinogen, fibrin degradation products (FDP), euglobulin lysis time, protamine sulfate test, and factor V, VII, VIII and X assays. Ninety-eight per cent of the patients had one or more abnormal coagulation tests. The commonest abnormalities were elevated fibrin degradation products and prolonged thrombin time. Thrombocytosis occurred in 57% of patients, hyperfibrinogenemia in 46%, thrombocytopenia in 11%, and non had hypofibrinogenmia. It is suggested that platelet count, fibrinogen concentration, and serum FDP assay are the most useful tests in assessing the hemostatic abnormalities in cancer patients, although thrombin time, factor V assay, and bleeding time may also be helpful. The peripheral blood smears of 53 patients were reviewed, and only one showed microangiopathic hemolytic anemia. The data illustrate that subclinical coagulopathy is relatively frequent in patients with malignancy.

Adolescent↗

Effects of dietary selenium and fish oil (MaxEPA) on arachidonic acid metabolism and hemostatic function in rats.

This study investigated whether hemostatic function can be modified by both the consumption of fish oil and the level of dietary selenium. Male Sprague-Dawley rats were fed for 8 wk semipurified diets containing 7% corn oil (by wt) or 5.5% fish oil (MaxEPA) plus 1.5% corn oil with or without selenium supplementation. Consumption of the four diets caused no difference in weight gain, food intake or plasma malondialdehyde content. The selenium-supplemented rats had significantly higher levels of selenium and glutathione peroxidase activity in plasma. Fish oil feeding decreased ADP-induced platelet aggregation and increased bleeding time. The level of dietary selenium and type of oil interacted to influence the production of 6-keto-prostaglandin F1 alpha: more was produced when corn oil was fed in the selenium-deficient diets. These data suggest that the effect of dietary selenium on hemostatic function and the production of eicosanoids is minor.

Administration, Oral↗

Hemostatic variables in Japanese and Caucasian men. Tissue plasminogen activator, antithrombin III, and protein C and their relations to coronary risk factors.

Mortality rates of coronary heart disease are much lower in Japan than in the United States. The authors' previous report on coagulation factors showed that population levels of plasma fibrinogen and factor VII activity parallel this mortality difference. To investigate other hemostatic variables, the authors assessed indicators of fibrinolytic activity (tissue plasminogen activator antigen) and coagulation inhibition (antithrombin III activity and protein C) in 136 men aged 34-55 years in four different samples: rural Japanese, urban Japanese, Japanese Americans, and Caucasian Americans. Mean tissue plasminogen activator antigen was higher in Caucasians and Japanese Americans than in rural and urban Japanese (p less than 0.01), while a contrasting trend in mean antithrombin III activity was suggested (p = 0.10). No significant differences were observed in mean levels of protein C. After controlling for known coronary risk factors, mean levels of tissue plasminogen activator antigen remained significantly different across the four samples (p less than 0.01); mean antithrombin III activity was not different (p = 0.23). Population differences in tissue plasminogen activator antigen parallel the coronary heart disease mortality difference between Japan and the United States. Although no definite evidence is available showing that tissue plasminogen activator antigen is a risk factor for coronary heart disease, the present study suggests a positive ecologic association between this hemostatic factor and coronary heart disease mortality.

Adult↗

Hemostatic abnormalities associated with monoclonal gammopathies.

To confirm and expand previous observations about the association of monoclonal gammopathies with hemostatic defects, a prospective evaluation was made in 42 patients with lymphoplasmacytic disorders. The incidence of bleeding complications was low, despite the diversity of abnormal hemostatic tests observed in these patients. Patients with myeloma frequently had abnormal coagulation tests, including thrombin time (64%), fibrin degradation products (32%), platelet aggregation tests with different agonist (30% to 55%), and bleeding time (22%). The lack of platelet response to ristocetin and normal ristocetin cofactor activity in four patients with myeloma may suggest a Bernard-Soulier-type defect. Serum viscosity was negatively correlated with platelet aggregation with collagen, ristocetin, and adenosine diphosphate. In patients with immunoglobulin myeloma, there was a positive correlation between an increased viscosity and a prolonged thrombin time. This study demonstrates the wide variety of coagulation abnormalities in lymphoplasmacytic disorders, usually without significant clinical implications.

Adult↗

Hemostatic factors and replacement of major blood loss with plasma-poor red cell concentrates.

The purpose of this study was to assess the change of platelet and fibrinogen concentrations and the change of activities of prothrombin and factors V and VII when major surgical blood loss was replaced with plasma-poor red cell concentrates (RCCs) and colloid plasma substitutes. Sixty patients were studied. The average blood loss was 65% +/- 41% of the calculated blood volume (CBV). Blood loss was monitored carefully and replaced without delay to ensure stable blood volume. Blood samples were obtained at the induction of anesthesia and at the end of the recovery room period, or before the patient was given fresh frozen plasma. In addition, a platelet count was determined after each 20% blood loss. The results were converted to relative values, and simple linear regression with logarithmic transformation was applied. The initial platelet concentration was 257 +/- 89 x 10(3)/mm3 and the extrapolation of the regression line intercepted the critical level of 50 x 10(3)/mm3 at 230% (confidence interval 169%-294%) blood loss. The initial fibrinogen concentration was 3.7 +/- 1.1 g/L and the hemostatically significant level of 1.0 g/L was already reached at 142% (117%-169%) blood loss (r2 = 0.90). Activities of prothrombin and coagulation factors V and VII reached their critical levels at 201% (160%-244%), 229% (167%-300%), and 236% (198%-277%) blood loss, respectively. We conclude that deficiency of fibrinogen develops earlier than any other hemostatic abnormality when plasma-poor RCCs are used for the replacement of major blood loss.

Albumins↗

Antithrombin III during cardiac surgery: effect on response of activated clotting time to heparin and relationship to markers of hemostatic activation.

UNLABELLED: This study was designed to determine if, and to what extent, antithrombin III (AT) levels affect the response of the activated clotting time (ACT) to heparin in concentrations used during cardiac surgery, and to characterize the relationship between AT levels and markers of activation of coagulation during cardiopulmonary bypass (CPB). After informed consent, blood specimens obtained from eight normal volunteers (Phase I) were used to measure the response of the kaolin and celite ACT to heparin after in vitro addition of AT (200 U/dL) and after dilution with AT-deficient plasma to yield AT concentrations of 20, 40, 60, 80, and 100 U/dL. In Phase II, blood specimens collected before the administration of heparin and prior to discontinuation of CPB, were used to measure the response of the kaolin ACT to heparin (preheparin only), AT concentration, and a battery of coagulation assays in 31 patients undergoing repeat or combined cardiac surgical procedures. In Phase I, strong linear relationships were observed between kaolin (slope = 1.04 AT - 2, r2 = 0.78) and celite (slope = 1.36 AT + 6, r2 = 0.77) ACT slopes and AT concentrations below 100 U/dL. In the pre-CPB period of Phase II, only factors V (partial r = -0.49) and VIII (partial r = -0.63) were independently associated with heparin-derived slope using multivariate analysis; an inverse relationship was observed between AT and fibrinopeptide A levels (r = -0.41) at the end of CPB. Our findings indicate that the responsiveness of whole blood (ACT) to heparin at the high concentrations used with CPB is progressively reduced when the AT concentration decreases below 80 U/dL. Because AT is variably, and sometimes extensively, reduced in many patients before and during CPB, AT supplementation in these patients might be useful in reducing excessive thrombin-mediated consumption of labile hemostatic blood components, excessive microvascular bleeding, and transfusion of blood products. IMPLICATIONS: Heparin, a drug with anticoagulant properties, is routinely given to patients undergoing cardiac surgery to prevent clot formation within the cardiopulmonary bypass circuit. However, when levels are reduced, heparin is not as effective. Findings within this study indicate that administration of antithrombin III may help to preserve the hemostatic system during cardiopulmonary bypass.

Anticoagulants↗

Comparison of skin necrosis in rats by using a new microneedle electrocautery, standard-size needle electrocautery, and the Shaw hemostatic scalpel.

"Microneedle" electrocautery was compared against the standard-size needle electrocautery and the Shaw hemostatic scalpel to determine the differences in tissue necrosis when used as a cutting instrument. Incisions were made on the dorsal skin of anesthetized white rats using each of the three devices with the no. 15 scalpel as control. The specimens were submitted for histological evaluation. The microneedle caused less necrosis than the standard-size needle electrocautery (0.18 vs 0.27 mm, p < 0.01) and less necrosis than the Shaw hemostatic scalpel set at 220 degrees F (0.18 vs 0.25 mm, p < 0.05). The microneedle electrocautery was also found to be an instrument that causes very little tissue distortion during fine dissection and helps to minimize blood loss in craniofacial and neurosurgical operations.

Animals↗

Hemostatic changes after thrombolytic therapy with saruplase (unglycosylated single-chain urokinase-type plasminogen activator) and urokinase (two-chain urokinase-type plasminogen activator).

Urokinase, or two-chain urokinase-type plasminogen activator (tcu-PA), is an effective thrombolytic agent. Its single-chain precursor (scu-PA), unlike tcu-PA, is able to selectively activate fibrin-bound plasminogen. The induced clot lysis is amplified by plasmin-triggered conversion of scu-PA to tcu-PA. The aim of our study was to compare the hemostatic effects of recombinant unglycosylated scu-PA, INN saruplase, and urokinase, at doses considered optimal (80 mg saruplase and 3 million units urokinase) in patients with acute myocardial infarction, within 6 h of onset of pain. Complete sample sets from more than 230 patients in each treatment group have been analyzed. The median hemostatic changes caused by saruplase and urokinase were virtually identical indicating that saruplase is converted early in vivo to its active tcu-PA derivative with the dose regimen used. Fibrinogen degradation products were higher for saruplase with a maximum at 2h. They rose markedly after saruplase from 0.43 mg/l at 0 h to a maximum of 160 mg/l at 2 h, whereas the increase after urokinase (from 0.45 mg/l to 89.0 mg/l) was significantly smaller (P < 0.001).

Double-Blind Method↗

Thrombin activatable fibrinolysis inhibitor and hemostatic changes in patients with type I diabetes mellitus with and without microvascular complications.

We investigated thrombin activatable fibrinolysis inhibitor (TAFI) and its influence on fibrinolysis by measuring pro-TAFI activity and total TAFI antigen in 38 patients with type I diabetes mellitus (18 with and 20 without microvascular complications), as well as in 20 healthy controls. The pro-TAFI levels in the two groups of patients did not differ from those in the control group. Total TAFI antigen [i.e. pro-TAFI, TAFI and inactive carboxypeptidase U (TAFIi)] tended to decrease in both the patient groups (59.7 +/- 7.2 and 73.4 +/- 8.9% with and without microvascular complications, respectively) compared with controls (91.9 +/- 12.2%) (P = 0.12). We also assessed the overall hemostatic potential (OHP) in plasma, the clot lysis time and the overall fibrinolytic potential. The OHP was significantly higher in patients with complications compared with controls (8.9 +/- 0.9 versus 6.7 +/- 0.4; P < 0.05) and also higher in the diabetics without complications (7.8 +/- 0.6), although the latter difference did not reach statistical significance. Levels of clot lysis time and overall fibrinolytic potential were similar in the two groups of patients and the controls. The increased OHP in plasma from diabetic patients with microvascular complications indicates an imbalance of the hemostatic system towards a prothrombotic state. No signs of impaired fibrinolysis were observed in patients with diabetes. Using the OHP method for estimation of overall hemostasis, it seems that TAFI does not influence either fibrinolysis or the increased thrombotic potential observed in patients with type I diabetes mellitus.

Adult↗

Increased levels of hemostatic proteins are independent of inflammation in glycogen storage disease type Ia.

OBJECTIVES: Glycogen storage disease type Ia (GSD-Ia), a congenital deficiency of hepatic glucose-6-phosphatase activity, is often associated with hyperproteinemia. To document the mechanism of hyperproteinemia, the proteins of the hemostatic system were analyzed according to their site of synthesis: hepatocyte, endothelial cell, or both. The role of inflammation was investigated by the measurement of tumor necrosis factor alpha (TNF-alpha) and interleukin-6 (IL-6) levels in plasma. METHODS: Twenty-seven patients with GSD-Ia were evaluated, as were 14 patients with other types of GSD and 30 healthy control subjects. Of the 41 patients with GSD, 15 also had hepatic adenoma (14 patients with GSD-Ia and 1 with GSD type III). RESULTS: In patients with GSD-Ia, there was a two-fold increase in all hepatocyte-synthesized proteins (i.e., factor VII, protein C, C4b binding protein) compared with control subjects and patients with other types of GSD. The proteins with mixed endothelial and hepatocyte origin (i.e., antithrombin and protein S) also were significantly increased but to a lesser extent. In contrast, the mean concentration of von Willebrand factor, which is exclusively synthesized in endothelial cells, was normal, as was the concentration of TNF-alpha and IL-6. CONCLUSIONS: These results suggest that the hyperproteinemia of GSD-Ia (including hemostatic proteins) is attributable to hepatocyte dysfunction and not related to an inflammatory process.

Adolescent↗

Hemostatic changes after early versus late intracoronary magnesium during acute myocardial infarction in swine.

There has been some debate regarding the benefit of magnesium (Mg) in the treatment of acute myocardial infarction (AMI) because of conflicting results from recent clinical trials. Several different hypotheses have been advanced to explain the cardioprotective properties of Mg, including the influence of the timing of Mg administration during AMI. This experiment was designed to assess the effect of intracoronary Mg on certain hemostatic parameters that are known to change during an AMI. Yorkshire swine underwent thoracotomy and 50 min left anterior descending artery (LAD) occlusion, followed by 3 h of reperfusion. In the early group, 250 mg of MgSO4 was delivered at the onset of reperfusion (n = 6, Mg-early group). In the second group, MgSO4 was given after 1 h of reperfusion (n = 6, Mg-late group). Six animals received saline instead of Mg and served as controls. The dynamics of plasma antithrombin-III (AT-III), protein C, total protein S, fibronectin, endothelin-1 (ET-1), as well as the stable metabolites of thromboxane (TXB2) and prostacyclin (6-keto-PGFla) were determined at baseline, twice during occlusion, and three times during reperfusion. Mg given at reperfusion onset was associated with a diminished ET-1 (32.9%), decreased fibronectin level (21.7-25.2%), and increased protein C concentrations (31.9-52.3%) when compared with both the control and late Mg group. In summary, intracoronary Mg administered at the onset of reperfusion favorably influenced hemostasis in swine. The beneficial effects of early Mg supplementation in an expanding array of clinical conditions, including AMI, may be directly related to the improved hemostatic profile in such patients.

Animals↗