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H L Messmore

Publications and source records attributed to H L Messmore.

At least 19 recordsLinked to original sources

Activation of platelets by heparin-induced thrombocytopenia antibodies in the serotonin release assay is not dependent on the presence of heparin.

The serotonin release assay (SRA) tests for antibodies responsible for heparin-induced thrombocytopenia (HIT). By definition, SRA-positive antibodies cause platelet serotonin release in vitro, in the presence of low concentrations of heparin, but not with excess heparin. Many SRA-positive sera activate platelets in the presence of saline without drug, either as a result of residual heparin in the specimen, or because of intrinsic features of the HIT antibodies. The present experiments show that neither exhaustive heparinase treatment, nor chromatographic removal of heparin abrogates the spontaneous platelet activation caused by these HIT antibodies. This is the first study to systematically demonstrate that in vitro activity of HIT antibodies can be independent of heparin. In addition, T-gel chromatography demonstrated differences among fractions of enzyme-linked-immunosorbent assay (ELISA)-positive HIT antibodies within individual specimens. Certain ELISA-positive fractions had SRA activity while others did not, and the SRA activity was not proportional to HIT antibody ELISA titer. These data suggest that antibodies formed as a result of heparin treatment are heterogeneous, and that some can contribute to the pathogenesis of HIT even when heparin is no longer present.

Antibodies↗

Studies comparing low molecular weight heparin with heparin for the treatment of thromboembolism: a literature review.

The use of heparin for the prophylaxis and treatment of venous and arterial thrombosis had been the standard of care for clinicians until 1982. At that time the introduction of depolymerized heparin for the prophylaxis of deep vein thrombosis in surgical patients was introduced. A number of such products, low molecular weight heparins (LMWH) were patented and introduced as new drugs during the ensuing of 20 years. Each LMWH had to be given a clinical trial against standard heparin for the several thromboembolic disorders for which heparin was the standard of care. By definition LMWH had to have unequal factor Xa and IIa inhibitor potency, expressed as a Xa-IIa ratio of greater than 1. They also had a molecular weight reduction to about one third that of heparin. A major advantage of LMWH over heparin was the subcutaneous route of injection for treatment of thrombotic disorders in contrast to the intravenous route for heparin. They had greater bioavailability than heparin by the subcutaneous route, a longer half-life and better predictability of dose response. It was found that routine laboratory monitoring was unnecessary. When given a trial against heparin, LMWH was equally safe and effective for most venous and arterial disorders. A new synthetic version of (pentasaccharide) both heparin and LMWH has been at least if not more effective than one LMWH (enoxaparin).

Animals↗

Influence of different anticoagulant agents on fibrinopeptide a generation.

The purpose of this study was to determine the in vitro effects of different anticoagulant drugs on fibrinopeptide A (FPA) generation inhibition and to identify whether there is any correlation between FPA generation, Hemochron ACT, global clotting assays, and chromogenic assays. Unfractionated heparin is a conventionally used anticoagulant. New anticoagulant drugs such as low molecular weight heparins (LMWHs), pentasaccharide, and antithrombin drugs are now approved for various indications. Anti-Xa drugs are in various phases of clinical development. The influence of different anticoagulant agents has been studied on fibrinopeptide A generation, Hemochron celite ACT, global clotting assays, and chromogenic anti-Xa and anti-IIa assays. Different LMWHs (Clivarin, Dalteparin, Enoxaparin, and Tinzaparin), anti-Xa agents (Pentasaccharide, DX-9065a and unfractionated heparin), and anti-IIa agents (PEG-Hirudin, Hirudin, Efegatran and Argatroban) were studied. The blood from healthy volunteers (n=4) was drawn for each drug. Imuclone FPA enzyme-linked immunosorbent kit assay, Hemochron celite ACT assay, global clotting assays (PT, APTT, Heptest-HI, thrombin time), and Loyola chromogenic anti-Xa and anti-IIIa assays were studied. Pentasaccharide demonstrated minimal effects on the whole blood clotting time such as ACT and on inhibition of FPA generation (IC50 > 25 microg/mL). DX-9065a exhibited a significant prolongation of ACT and marked inhibition of FPA generation (IC50 = 4.12 microg/mL). Unfractionated heparin showed a marked inhibition of FPA generation (IC50 = 5.16 microg/mL). Pentasaccharide, DX-9065a and UFH showed a marked correlation between ACT and inhibition of FPA generation. LMWHs demonstrated concentration-dependent inhibition of FPA generation. LMWHs studied showed good correlation between FPA generation inhibition and ACT test. Similar correlation was seen between FPA generation inhibition and the APTT, anti Xa (heptest-HI assay) and anti-IIa activity. Anti-IIa drugs demonstrated concentration-dependent inhibition of FPA generation. Their FPA generation inhibition potency is correlated with the ACT assay. A strong correlation between Hemochron ACT and FPA generation inhibition was observed. Based on this significant correlation, the FPA generation inhibition can be predicted by point-of-care ACT assay.

Anticoagulants↗

Day-night variations in blood levels of nitric oxide, T-TFPI, and E-selectin.

Circadian (8/24 hours) variations in serum nitric oxide (NO), total tissue factor pathway inhibitor (T-TFPI). and E-selectin levels were studied in healthy adults and in subjects with type II diabetes. We postulated a possibility a functional relationship between them because vascular endothelium is the primary site of their synthesis and functions. NO is released by the action of eNO synthase isoform and modulates physiologic responses (e.g., vascular dilation, relaxation, increasing blood flow, inhibition of platelet and white blood cell adhesion); T-TFPI, a coagulation inhibitor, is also released from endothelial cells, and is bound to plasma lipoproteins and to glycosaminoglycans; E-selectin is expressed on endothelial cells after activation by inflammatory cytokines (interleukin-1beta and tumor necrosis factor-alpha) and elevated levels have been reported in a variety of pathologic conditions, including diabetes. We found that obese diabetic subjects had greater mean concentrations of NO and E-selectin than healthy men, 39.25 versus 12.71 microM and 81.51 versus 26.03 ng/mL, respectively. The T-TFPI levels were essentially similar in both groups of men, 47.10 versus 48.76 ng/mL. We observed that the time of peak concentrations of T-TFPI and E-selectin was similar to the timing of NO trough levels, suggesting a possible functional relationship. It may be hypothesized, therefore, that the higher concentrations of NO, unbalanced by increases in T-TFPI and E-selectin, may result in increased vascular wall uptake of lipoproteins in diabetic subjects, who are at greater risk than healthy men for developing diffuse atherosclerosis.

Aged↗

Mechanisms of venous and arterial thrombosis in heparin-induced thrombocytopenia.

Since the reports by Weismann and Tobin in 1958 and Roberts et al. in 1964 called attention to paradoxical thrombosis in patients treated with heparin, the thrombotic aspect of the heparin-induced thrombocytopenia syndrome (HIT) has been emphasized. Yet to this day, the mechanism of thrombosis associated with HIT (HITT) is unclear. It is important to understand the etiology of HITT because of its devastating clinical consequences. We believe one rational approach to understand the mechanism underlying HITTS is to invoke Virchow's triad: stasis, vascular injury and a hypercoagulable state. A hypercoagulable state exists in all HIT patients due to platelet activation by heparin antibody binding. Thrombin generation from platelet microparticles and exposed platelet phospholipid, coupled with stasis (elderly bedridden or otherwise sedentary ill patients who comprise the majority of the HIT population), provide two risk factors that can lead to venous thrombosis. A hypercoagulable state coupled with endothelial cell dysfunction due to injury from heparin antibody, activated platelets, leukocytes, platelet microparticles, complement, atherosclerosis or medical intervention can lead to arterial thrombosis. Of patients with HIT, HITT occurs in about 25%, suggesting that a second set of patient specific risk factors, in addition to the generation of pathological heparin antibodies, determine whether HITT will develop. Interaction between activated platelets and other platelets, and with endothelial cells, leukocytes, neutrophils, monocytes and cytokines are areas of research that may provide more specific characterization of the hypercoagulable state and vascular damage. Nuances involving genetic variation in platelets, endothelial cells and immune function are also likely to be a major component of the observed variability of this disease spectrum. Virchow's triad may explain the different manifestations of HITTS.

Anticoagulants↗

Circadian interrelationships among levels of plasma fibrinogen, blood platelets, and serum interleukin-6.

Circadian (24 h) rhythms of fibrinogen, interleukin-6 (IL-6), and platelet levels were studied in 11 males ages 46 to 72 years. Since there is a known circadian rhythm for fibrinogen and IL-6, we postulated that the peak level (acrophase) of fibrinogen would follow the acrophase of IL-6, based on the fact that IL-6 is the stimulus for fibrinogen production in the liver. Platelet levels were measured to show whether there was any correlation with the IL-6 acrophase because it has been reported that IL-6 affects megakaryocytes and platelets in dogs. We found that the acrophase for IL-6 occurred at 02:03 h and the acrophase for fibrinogen occurred at 09:16 h. Platelet counts peaked at 16:56 h. Thus, there was a positive correlation between IL-6 and fibrinogen acrophases and a negative correlation of each with the acrophase for platelets. The positive linkage of IL-6 with fibrinogen in this study suggests that suppression of IL-6 production would lower those peak fibrinogen levels that occur in the morning in association with arterial ischemic events. This could result in fewer arterial ischemic events, especially in the morning.

Aged↗

Anticoagulant therapy of pregnant patients with prosthetic heart valves: rationale for a clinical trial of low molecular weight heparin.

The management of anticoagulant therapy for the prevention of thromboembolism from prosthetic heart valves in the pregnant patient is far from ideal and deserves more clinical research. Warfarin therapy given alone throughout pregnancy poses high risks to the fetus because it crosses the placental barrier. Heparin alone throughout pregnancy poses high risks to the mother, which might be lessened somewhat by more intensive therapeutic regimens and careful monitoring of the heparin level or anticoagulated state of the blood. Because of the major risk of embryopathy in the fetus during the first trimester and latter half of the third trimester, heparin therapy during those times has been recommended. In the opinion of some experts, high-risk cases may benefit from low-dose aspirin in addition to anticoagulant therapy. The fact that warfarin is contraindicated during pregnancy (according to the pharmaceutical company that markets it) poses some problems for the physician who prescribes it. For the above reason, alternative drugs are worthy of consideration and should be given clinical trials. Low molecular weight heparin has the potential for greatly reducing drug-related risk for the fetus while providing greater safety for the mother.

Anticoagulants↗

Synthetic pentasaccharides do not cause platelet activation by antiheparin-platelet factor 4 antibodies.

A synthetic selective inhibitor of factor Xa, the pentasaccharide SR90107A/Org31540 is in clinical development for the prophylaxis of postsurgical deep vein thrombosis. Another synthetic pentasaccharide with even more sustained inhibition of factor Xa, SanOrg34006, has also been developed. Both of these agents were tested in comparison to unfractionated heparin and a low molecular weight heparin (enoxaparin) for their relative platelet activation potential in heparin-induced thrombocytopenia assays. Sera from patients (n = 30) with heparin-induced thrombocytopenia were pooled and validated for heparin-dependent aggregation responses. Using heparin-platelet factor 4 Sepharose columns, antibodies to heparin-platelet factor 4 were purified from the same pool. The effects of heparin, enoxaparin, SR90107A/Org31540, and San-Org34006 were evaluated in a platelet aggregation assay using platelet donors (n = 10). At comparable concentrations, heparin and enoxaparin consistently produced platelet activation, whereas both pentasaccharides failed to produce a response at a concentration up to 100 micrograms/mL (approximately 50 microM). Similarly, in the 14C-serotonin release and flow cytometric assays, heparin and enoxaparin produced positive responses (n = 30), whereas the two pentasaccharides consistently failed to produce any effect. These observations suggest that the two pentasaccharides with highly selective anti-Xa activity are devoid of generating antiheparin-platelet factor 4 antibody, do not produce heparin-induced thrombocytopenic responses and may inhibit active heparin-induced thrombocytopenia antibody platelet activation.

Antibodies↗

Heparin-induced thrombocytopenia: historical review.

Heparin-induced thrombocytopenia (HIT) and heparin-induced thrombosis (HITT), recognized as clinical entities only in the past 30 years, have become a major concern for all who work in the field of thromboembolism, its prevention, and treatment. Studies of the 1930 to 1970 era were primarily devoted to the interaction of heparin with platelets in vivo with no knowledge that such interaction could lead to serious morbidity and mortality in as many as 3-5% of patients receiving the drug. When this was recognized in the 1970s, concerns arose regarding recognition and diagnoses. Clinicians, laboratory investigators, and drug companies entered into many research collaborations. The advent of low molecular weight heparin (LMWH) and heparinoids led to studies of their interaction with the IgG antibody that was identified as the mechanism for heparin-induced thrombocytopenia of the immune type. Newer, more sensitive test systems were developed and applied to studies comparing the new low LMWHs and heparinoids. These studies showed a lower incidence of immune-mediated thrombocytopenia with LMWH. The specificity of the antibody for platelet factor 4-heparin complexes led to the development of new tests in the early 1990s. This was soon followed by experiments with antithrombin drugs such as hirudin and argatroban as replacements for heparin in the HIT-HITT syndrome. Shorter courses of heparin therapy and the use of LMWH in place of heparin had become more standard practice in the 1990s.

Fibrinolytic Agents↗

Inadequacy of current prevention strategies for heparin-induced thrombocytopenia.

Heparin-induced thrombocytopenia is one of the most difficult problems facing clinicians today. Despite recent understanding of the pathophysiology of this disorder, there are many unresolved issues about diagnosis, prevention, and treatment. In this article, difficulties physicians encounter when faced with a suspected heparin-induced thrombocytopenia patient will be reviewed as well as our experience in 113 patients with heparin-induced thrombocytopenia which highlights the failure of current preventive strategies for heparin-induced thrombocytopenia. The experience of using warfarin in 51 patients with heparin-induced thrombocytopenia will also be reviewed.

Fibrinolytic Agents↗

Soluble adhesion molecules in the HIT syndrome: pathophysiologic role and therapeutic modulation.

Heparin-induced thrombocytopenia pathophysiology is now known to be a complex process that involves platelets, vascular endothelium, and leukocytes/lymphocytes. The activation products from these sites also contribute to the activation of coagulation and fibrinolytic deficit. While many of the markers of hemostatic activation processes have been found to be increased during the acute phase of heparin-induced thrombocytopenia syndromes, the circulating levels of soluble adhesion molecules such as the P, E, and L selectins, and intracellular and vascular cell adhesion molecules have not been reported. Since the pathophysiology of heparin-induced thrombocytopenia involves the activation of platelets, endothelium, and leukocytes, it is expected that the activation products related to these hemostatic systems including soluble selectins and cellular adhesion molecules will also be increased in circulating blood. These alterations may also provide an index of the pathophysiologic process. With the availability of highly sensitive enzyme-linked immunosorbent assays for soluble P, E, and L selectins, intracellular and vascular cell adhesion molecules, it is now possible to measure these adhesion molecules in biological fluids. This study reports on the circulating levels of various adhesion molecules in patients with heparin-induced thrombocytopenia and their modulation after therapeutic interventions by the use of direct thrombin inhibitors. With the availability of recombinant hirudin, it is now possible to treat these patients with alternate antithrombin agents. However, the immunoactivation of platelets and other cells as shown here indicates the possible need for additional adjunct therapeutic approaches to suppress their participation in the thrombotic process. The reported increase in the circulating levels of the soluble adhesion molecules during the heparin-induced thrombocytopenia and heparin-induced thrombocytopenia with thrombosis syndrome suggests that the antiheparin platelet factor 4 antibody is capable of modulating their regulation. The prognostic role of these mediators in the management of heparin-induced thrombocytopenia syndrome warrants further investigation.

Antithrombins↗

Selectins in the HIT syndrome: pathophysiologic role and therapeutic modulation.

The pathophysiology of heparin-induced thrombocytopenia (HIT) is now known to be a complex process which involves platelets, vascular endothelium, and leukocytes. The activation products from these sites also contribute to the activation of coagulation and to the fibrinolytic deficit. While many of the markers of hemostatic activation processes have been found to be at increased levels during acute phases of the HIT syndromes, the circulating levels of soluble P-, E-, and L- selectins have not been reported. Since the pathophysiology of HIT involves the activation of platelets, endothelium, and leukocytes, it is expected that activation products related to these hemostatic systems, including soluble selectins, will also be increased in circulating blood. These alterations may provide an index of the pathophysiologic process. With the availability of highly sensitive ELISAs for soluble P-, E-, and L-selectins, it is now possible to measure these adhesion molecules in biological fluids. This study reports on the circulating levels of P-, E-, and L-selectins in HIT patients and their modulation after therapeutic intervention. With the availability of recombinant hirudin, it is now possible to provide alternate anticoagulants to HIT patients. However, the immunoactivation of platelets and other cells may require additional adjunct therapeutic approaches.

Anticoagulants↗

Molecular markers of hemostatic activation. Implications in the diagnosis of thrombosis, vascular, and cardiovascular disorders.

Until recently, the diagnosis of thromboembolic disorders remained difficult to establish before the occurrence of a pathologic event. Clearly, thrombosis is the result of a progressive alteration of the blood and vasculature. Various molecular markers of hemostatic alteration are found in increased or decreased amounts predisposing to thrombosis or in increased circulating amounts during the activation process.

Biomarkers↗

Medical assessment of bleeding in the surgical patient.

The key to avoidance of hemostatic failure during surgery is to be able to identify the high-risk patient and make a diagnosis and treat the defect before surgery. A thorough history and physical examination are mandatory in this regard. A screening coagulation profile is not a substitute for the history and physical examination. Selected presurgical tests are useful in major surgical cases and in certain high-risk cases. Otolaryngologists have advised presurgical testing for patients undergoing tonsillectomy, but the subject of presurgical testing is still a matter for investigation in view of the necessity for cost containment. Knowledge of the hemostatic system combined with a knowledge of the tests available to diagnose coagulation defects permits a rational approach to therapy of the bleeding surgical patient.

Blood Coagulation Disorders↗

Evaluation of a low molecular weight heparin as an anticoagulant in a model of cardiopulmonary bypass surgery.

Heparin, the classically used anticoagulant in cardiopulmonary bypass surgery, has several disadvantages such that alternate anticoagulants are being sought. Previous reports have described questionable safety with the clinical use of low molecular weight (LMW) heparin in cardiac surgery. The dog cardiopulmonary bypass model described herein may provide a useful means to study the pharmacology of new drugs prior to clinical use. Dogs were given a single loading dose of 250 USP units/kg (1.66 mg/kg) of unfractionated heparin (control) or 250 anti-factor Xa units/kg (2.3 mg/kg) LMW heparin and placed on bypass for 60 minutes. Prior to, during, and following bypass blood samples were taken to measure coagulation and hematological parameters. The dogs remained anesthetized for 150 minutes post-bypass. Post-operative blood loss and fibrin deposition in the arterial line filters were measured. Our findings showed there was no significant blood loss (heparin 452 +/- 67 gms; LMW heparin 289 +/- 82 gms) and no significant fibrin deposition (heparin 22 +/- 3 gms; LMW heparin 28 +/- 7 gms) with the LMW heparin. These findings suggest that this LMW heparin should be safe and effective at the studied bolus dose as an anticoagulant for use in cardiopulmonary bypass surgery, and that protamine should be used to reverse the anticoagulant response after surgery.

Animals↗