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Biomedical subjects

R A Marlar

Publications and source records attributed to R A Marlar.

At least 19 recordsLinked to original sources

Thrombomodulin gene defects in families with thromboembolic disease--a report on four families.

It has been suggested that an impaired thrombomodulin (TM) function could constitute an abnormality leading to thromboembolic disease (TED). The TM gene from 51 unrelated American patients with TED and 100 American blood donors was screened for mutations. Four heterozygous point mutations in the TM gene were detected. The mutations are distributed throughout the TM gene and predict amino acid changes 1) Pro483 to Leu, 2) Gly61 to Ala, 3) Asp468 to Tyr (earlier described) and 4) a silent mutation not predicting any amino acid change at Glu163. Family studies reveal that the occurrence of the different TM mutations is associated with a history of TED, but there are indications of multiple risk factors and no perfect co-segregation of the TM defects and TED. Among the controls. three individuals carried heterozygous TM variants predicting either a Pro477-Ser mutation (two cases) or an Asp468-Tyr mutation. Our results thus demonstrate that a previously undocumented abnormality in the protein C anticoagulant pathway, a defect in the TM gene, to a certain extent co-segregates with familial thrombophilia. Further studies are needed to prove the causality of these TM mutations.

Adolescent

Minimum specimen volume requirements for routine coagulation testing: dependence on citrate concentration.

We evaluated the effect of sample volume and citrate concentration on results of routine coagulation assays (prothrombin time [PT] and activated partial thromboplastin time [APTT]). The study was performed on samples obtained from healthy persons and patients receiving oral anticoagulant therapy. Standard evacuated tubes (3.2% and 3.8% sodium citrate) were filled to varying total sample volumes ranging from 3.0 to 5.0 mL, and results of routine coagulation tests were compared. Underfilling may significantly affect the APTT and PT, resulting in artifactual prolongation of results. This effect is most pronounced in samples drawn into 3.8% citrate. By using 3.8% citrate, there is a statistically significant difference in the results of PT assays in the samples less than 80% filled compared with those that are 100% filled. For APTT assays performed on samples drawn into 3.8% citrate, a statistical difference occurred at less than 90% filled. This effect was less pronounced when samples were drawn into 3.2% sodium citrate. We found no statistically significant difference in PT results from a 3.2% citrate tube between fill volumes of 60% and 100% and none for APTT results between fill volumes of 70% and 100%. This study further supports the recommendation to use 3.2% sodium citrate concentration, because 60% of the optimum filled volume for PT and 70% of the optimum filled volume for APTT are acceptable.

Anticoagulants

The effect of time and temperature variables on routine coagulation tests.

This study evaluates the effects of time and temperature variables on routine coagulation assays [Prothrombin Time test and Activated Partial Thromboplastin Time (APTT) test]. Four different groups were studied: healthy volunteers, hospitalized patients not receiving anticoagulants, patients receiving oral anticoagulant therapy and patients receiving unfractionated heparin therapy. Samples were subjected to one of four conditions: (1) centrifuged immediately and stored at room temperature (20-22 degrees C); (2) centrifuged immediately and stored on ice (4 degrees C); (3) stored as whole blood without centrifugation, at room temperature and (4) stored without centrifugation, on ice. Coagulation tests were performed as soon as possible after phlebotomy and at specified times up to 24 h. Our data demonstrate that prothrombin time results are stable for up to 24 h, remaining constant regardless of storage conditions. APTT assays are stable for up to 8 h, except for patients receiving unfractionated heparin therapy. Heparinized samples, when stored uncentrifuged at room temperature, demonstrate a clinically significant shortening of the APTT and individual samples demonstrate a greater than 50% decrease in ex-vivo heparin levels at 4 h.

Anticoagulants

Effect of 3.2% vs 3.8% sodium citrate concentration on routine coagulation testing.

The effects of 3.2% and 3.8% sodium citrate concentration on the results of routine coagulation assays (prothrombin time [PT] and activated partial thromboplastin time [aPTT]) were evaluated by means of two sets of reagents, one responsive and the other nonresponsive. Five groups were entered in the study: healthy volunteers; outpatients receiving stable oral anticoagulant therapy; and hospitalized patients receiving intravenous (i.v.) heparin therapy, both i.v. heparin and oral anticoagulant therapy, or no anticoagulant therapy. With use of nonresponsive PT and aPTT reagents, varying the citrate concentration has little clinical significance except in patients receiving i.v. heparin therapy. In contrast, when responsive PT and aPTT reagents are used, the concentration of sodium citrate anticoagulant has a significant effect on assay results. Eighteen percent of samples from patients receiving stable oral anticoagulant therapy demonstrated a change of less than 0.7 INR (International Normalized Ratio) units between citrate concentrations. Nineteen percent of patients receiving i.v. heparin therapy had a greater than 7-second difference when aPTT results were compared. These data demonstrate that citrate concentration affects the results of coagulation tests. On the basis of these data, it is recommended that 3.2% citrate be used for all coagulation tests.

Anticoagulants

A laboratory approach to the evaluation of hereditary hypercoagulability.

The concept of hypercoagulability and especially its evaluation in the clinical laboratory has changed dramatically during the last few years. The genetic basis and the mechanisms of the various factors responsible for hypercoagulability are briefly reviewed with emphasis on the most common genetic deficiencies. The major thrust of this review centers on the cost-effective approach to examining patients with a personal or family history of venous thrombosis. Several new concepts dealing with thrombotic risk are presented with a focus on the theory that multiple factors cause thrombosis in affected patients. A proposal for a cost-effective sequential testing scheme for the accurate diagnosis of hereditary hypercoagulability is discussed. The knowledge of thrombotic risk factors is evolving rapidly, requiring the clinical laboratory to remain flexible. Ultimately, the clinical laboratory must take a leading role in the diagnosis of hereditary thrombotic disease by serving as the consultant to the primary caregiver by providing an up-to-date and cost-effective evaluation.

Antithrombin III

Thrombomodulin gene variations and thromboembolic disease.

Thrombomodulin (TM) is the endothelial cell cofactor for protein C activation. Since deficiencies of other protein C system proteins are known to cause thrombotic disease, then defects in the gene coding for TM could be responsible for inherited thrombophilia. We have searched for mutations in the TM gene among healthy controls as well as patients with thrombophilia and identified eight patients heterozygous for TM mutations that are distributed throughout the TM gene. We have shown that the respective TM mutation co-segregates with thromboembolic disease (TED) in four families. Moreover, we have demonstrated that the C allele in a common C/T dimorphism in the TM gene is significantly more frequent among survivors of premature myocardial infarction (MI) than in matched controls. We suggest that TM defects should be added to the list of risk factors in TED, and after further evaluation possibly be included in a routine laboratory evaluation of thrombophilia.

Genetic Predisposition to Disease

Coagulation and fibrinolytic profiles in patients with severe pulmonary hypertension.

STUDY OBJECTIVES: Although in situ thrombosis is a prominent finding in lung vessels from patients with primary and secondary pulmonary hypertension, to our knowledge, plasma coagulation factors that might contribute to a hypercoagulable state have not been fully investigated. We hypothesized that the local coagulation environment in the lung vasculature is important to progression if not initiation of pulmonary hypertension. DESIGN: Quasi-experimental cross-sectional design with concurrent controls. SETTING: Referral clinics and inpatient services of a University Hospital and a Veterans Administration Medical Center. PARTICIPANTS: To investigate the role of plasma coagulation factors in severe pulmonary hypertension, we sampled plasma from patients with primary pulmonary hypertension, patients with pulmonary hypertension secondary to a discernible etiology, and normal adult control subjects. RESULTS: We detected abnormalities of the thrombomodulin/protein C anticoagulant system, evidenced by a decrease in soluble thrombomodulin, in patients with primary pulmonary hypertension. In the patients with primary pulmonary hypertension, we found impaired fibrinolytic activity, with a rise in the fibrinolytic inhibitor plasminogen activator 1 and elevated euglobulin lysis time. Lower fibrinolytic activity correlated with high mean pulmonary artery pressure. In contrast, in patients with secondary pulmonary hypertension, von Willebrand factor antigen and fibrinogen levels were increased, and fibrinolytic activity decreased. CONCLUSIONS: Different patterns of coagulation and fibrinolytic abnormalities are apparent in plasma from patients with primary and secondary pulmonary hypertension. Although we are unable to address causality with this study, we speculate that abnormalities of these coagulation mechanisms may initiate or play a role in perpetuation of pulmonary hypertension.

Adult

Developmental expression of protein C and protein S in the rat.

In order to better understand the expression of the Protein C/Protein S anticoagulant system, we have isolated and characterized cDNAs coding for rat Protein C and Protein S. These cDNAs were used in Northern analysis to determine tissue-specificity and developmental expression patterns for mRNAs coding for Proteins C and S. In rats, Protein C mRNA is expressed almost exclusively in liver with a small amount of expression in kidney, diaphragm, stomach, intestine, uterus and placenta. Protein C mRNA was not expressed in brain, heart, lung, spleen, small intestine, large intestine, ovary, or urinary bladder. In liver, Protein C mRNA is expressed at very low levels at prenatal day 18 and these levels increased to maximal levels by postnatal day 13. The size of the mRNA coding for rat Protein C is approximately 1.9 kb. Rat Protein S mRNA was expressed in all tissues examined: brain, heart, lung, diaphragm, liver, spleen, stomach, small intestine, large intestine, kidney, adrenal ovary, uterus, placenta, and urinary bladder. Interestingly, there were 4 bands hybridizing with the rat protein S cDNA that were evident in many of the tissues examined, corresponding to mRNA sizes of approximately 3.5, 2.6, 1.8, and 0.3 kb. There was a difference in tissue-specificity of each mRNA. The 1.8 kb band is generally the most prominent autoradiographic band in any tissue. From these results, it is evident that the expression of Protein C mRNA is similar to that of other vitamin K-dependent proteins. The expression of Protein S mRNA, however, is surprisingly complex and may include alternative splicing of mRNA to generate the various sizes evident on Northern analysis.

Animals

The first mutation identified in the thrombomodulin gene in a 45-year-old man presenting with thromboembolic disease.

Thrombomodulin (TM) is the anticoagulant endothelial cell membrane-bound protein cofactor in the thrombin-mediated activation of protein C (PC). It has been clearly demonstrated that the anticoagulant and profibrinolytic functions of the PC system are important for the prevention of a thromboembolic disease. Patients with PC, protein S, or PC "'cofactor"' deficiency and/or dysfunction develop thromboembolic diseases. However, the molecular abnormality in at least 20% to 30% of thrombophilic patients cannot be identified by hitherto recognized defects. A putative pathologic lesion in the TM gene could be one of several candidates for these prothrombotic mutations. A directed search strategy for deletions, insertions, or point mutations in the TM gene has not been performed. Therefore, in the present study, we have analyzed the entire TM gene, including the promoter region, by polymerase chain reaction-single-strand conformation polymorphism (PCR-SSCP) in normal healthy volunteers and in patients presenting with a thromboembolic disease. We have identified a patient with a thromboembolic disease and a TM point mutation. In a 45-year-old Hispanic man with a documented pulmonary embolism, PCR-SSCP showed an aberrant band pattern and subsequent DNA sequence analysis showed a heterozygous substitution for G1456 to T. This substitution predicts an Asp468 to a Tyr change in the amino acid sequence that is located between the transmembrane domain and the sixth epidermal growth factor-like domain. The Asp468 to Tyr change would probably lead to significant structural changes not allowing the expression of the TM protein or to a conformational change that is not functional.

Adult

Heparin levels to guide thromboembolism prophylaxis during pregnancy.

OBJECTIVE: Our purpose was to determine the dose of heparin required in pregnant women to achieve the same heparin levels as standard doses of 5000 units given subcutaneously every 12 hours in the nonpregnant population. STUDY DESIGN: Fourteen pregnant women placed on heparin prophylaxis for a history of thromboembolism had blood drawn for 64 anti-Xa level determinations in the second and third trimesters. Heparin doses were adjusted in an attempt to achieve a midinterval or peak level of 0.05 to 0.25 U/ml, which corresponds to the range seen in nonpregnant patients given standard doses of 5000 units subcutaneously every 12 hours. RESULTS: A standard heparin dose of 5000 units given subcutaneously every 12 hours was inadequate to achieve the desired range in this pregnant population. In five of nine second-trimester pregnancies 7500 units given subcutaneously every 12 hours was inadequate to attain this range. In six of 13 third-trimester pregnancies, > 10,000 units subcutaneously every 12 hours was needed. CONCLUSIONS: Heparin requirements may increase and are highly variable in patients during pregnancy. Until appropriate clinical outcomes trials can determine optimal dosing, measuring anti-Xa activity may be useful to guide therapy.

Antibodies

Longitudinal measurement of anticardiolipin antibodies during normal pregnancy: a prospective study.

We have previously shown that elevation of anticardiolipin antibodies (aCL) at the first prenatal visit is associated with increased fetal loss in normal pregnancy. The variation in aCL levels during normal pregnancy has not been established. To examine this question we measured IgG, IgM and IgA aCL levels five times during pregnancy at weeks 5-15, 16-25, 26-35, 36-37 and at delivery. Data were analyzed to determine: (a) the within and between subject variability of aCL during pregnancy; (2) the temporal trend of aCL; and (3) the relation of serial measures of aCL with maternal complications of pregnancy. We divided our cohort of 354 subjects into two groups. Group A included those subjects with consistently normal levels of aCL and group B those subjects with at least one elevated level of aCL. In group A the within subject variability was relatively low (28-34%). In group B we found wide fluctuations in aCL levels and a within subject variability of 88-91%. Subjects in group B had no increase in maternal complications of pregnancy. The present data suggest that aCL may fluctuate significantly during normal pregnancy and there is little clinical value in measuring aCL on a serial basis during pregnancy.

Adolescent

High-affinity RNA ligands to human alpha-thrombin.

Systematic Evolution of Ligands by EXponential enrichment (SELEX) was used to isolate from a population of 10(13) RNA molecules two classes of high affinity RNAs that bind specifically to human alpha-thrombin. Class I RNAs are represented by a 24-nucleotide RNA (RNA 16.24), and class II RNAs are represented by a 33-nucleotide RNA (RNA 27.33). RNA 16.24 inhibits thrombin-catalyzed fibrin clot formation in vitro. Secondary structures are proposed for these RNAs, revealing a novel stem-loop structure for RNA 16.24, comprised of an unusually large 16-nucleotide loop. Mutants of RNA 16.24 were generated to investigate structural features critical to high-affinity binding. Phosphate modification with ethylnitrosourea identified regions of the RNAs necessary for electrostatic interactions. Competition with heparin suggests that these RNAs bind the electropositive heparin-binding site of thrombin. These ligands represent a novel class of thrombin inhibitors that may be suitable for therapeutic or diagnostic applications.

Amino Acid Sequence

Erythrocyte membrane vesicles and irreversibly sickled cells bind protein S.

Plasma levels of free protein S, a vitamin K-dependent anticoagulant, are decreased in persons with sickle cell anemia, but the etiology of the low levels is unknown. Protein S binds to phosphatidylserine-containing phospholipids in a calcium-dependent manner. Other studies have indicated that phosphatidylserine may be abnormally present on the outer surface of the membrane lipid bilayer of sickle cells and of the spectrin-depleted vesicles they shed in vivo. We studied the binding of purified, radiolabeled protein S to spectrin-depleted erythrocyte membrane vesicles and to density-separated fractions of sickle and normal erythrocytes. Calcium-dependent binding of protein S occurred with vesicles and with well-aerated dense irreversibly sickled cells, but not with well-aerated sickle discocytes or with normal erythrocytes. These data provide further evidence that phosphatidylserine is abnormally present on the outer surface of spectrin-depleted vesicles and of irreversibly sickled cells. In addition, protein S binding to such sickle membranes in vivo may be responsible, in part, for the decreased levels of free protein S in sickle cell plasma.

Anemia, Sickle Cell

Correlation of antiphospholipid antibodies and protein S deficiency with thrombosis in HIV-infected men.

Antiphospholipid antibodies (aPL) and free protein S (PSF) deficiency have been associated with clinical thrombosis. Previous reports described a high prevalence of these abnormalities in HIV-infected individuals, but suggested there was little associated clinical thrombosis. A cohort of 74 HIV-infected men were studied for aPL, PSF deficiency and the development of thrombosis. aPL, predominantly anticardiolipin antibodies (aCL), were detected in 86% and PSF deficiency in 33%. While 42% of men with aPL also had low PSF levels, there was no correlation between aCL titres or most measures of aPL and PSF levels. However, a strong correlation was noted between a subset of aPL that reacted to phosphatidylethanolamine by hexagonal array assay and low PSF levels. There was no significant correlation between aPL, PSF deficiency and clinical features (medication use, opportunistic infection, CD4 cell count) of HIV in 60 patients for whom clinical information was available. The overall incidence of thrombosis in this group was 18%, and thrombosis developed in 6.6% of those followed prospectively over a median follow-up of 12 months. Development of thrombosis was not significantly correlated with aPL or PSF deficiency, but the high prevalence of these abnormalities may necessitate larger study groups to determine the risk associated with these coagulation changes. Study of a larger group with careful analysis of subsets of aPL, especially those associated with low PSF levels, and longer clinical follow-up could identify the HIV-infected individuals at risk for thrombosis.

Adult

Rapid preparation of plasma for 'Stat' coagulation testing.

We undertook to confirm and extend the previous work on the use of microcentrifugation (2 minutes at 11,000 g) to prepare platelet-poor plasma for assay of the prothrombin time, partial thromboplastin time, fibrinogen level, D-dimer, antithrombin III, and dilute Russell viper venom time. We compared results of routinely submitted blood samples by both high-speed and routine (15 minutes at 1800g) centrifugation. We found no significant differences in assay results and concluded that the high-speed technique is a reliable and useful option for minimizing turnaround times for these coagulation assays.

Blood

Contribution of plasma proteinase inhibitors to the regulation of activated protein C in plasma.

Activated protein C (APC), a serine protease, is regulated in plasma by protease inhibitors. This study was undertaken to determine the role of the major plasma inhibitors in regulating APC in plasma. Kinetic analysis and specific immunoassays for APC-inhibitor complexes were used to determine the inhibitors that form complexes with APC. Of the eight plasma inhibitors investigated, four interact with APC: protein C inhibitor (PCI), alpha 1-proteinase inhibitor (PI), alpha 2-antiplasmin (AP) and C1 esterase inhibitor (C1 Inh). The second order rate constants are: 1.3 x 10(4) M-1 s-1 (PCI); 15 M-1 s-1 (PI); 410 M-1 s-1 (AP); and < 6 M-1 s-1 (C1 Inh), with a relative effectiveness of each inhibitor to inactivate APC in plasma: 49:36:15: < 1, respectively. PCI, PI and AP are the major inhibitors of APC in plasma. Low concentrations of APC will be inhibited by PCI with PI and AP playing a secondary role. However, as increasing APC is generated, PI and AP begin to play more important roles as the PCI is consumed.

Enzyme Activation

Dysfunctional protein C deficiency (type II). A report of 11 cases in 3 American families and review of the literature.

A cause of recurrent venous thrombosis is discernible in about 30% of symptomatic patients. Type I protein C (PC) deficiency (concomitant decrease of activity and antigen) is a well-described cause of venous thrombosis. Dysfunctional PC or type II PC deficiency (a disproportionate decrease in activity compared with antigen), however, is less well understood. Eleven subjects from three American families had dysfunctional PC. The patient base was moderately sized. These 11 subjects are compared with the 67 patients (39 symptomatic and 28 asymptomatic) that have been reported with dysfunctional PC at this time. Dysfunctional protein C deficiency is a more common cause of venous thrombosis than previously was recognized. Protein C activity should be determined in evaluating a patient with recurrent venous thromboses or thrombosis in early adult life. If the PC activity is low, repeat PC activity and a PC antigen levels should be determined so that patients with Type II PC deficiency will be identified. Further testing must include family studies to rule out an acquired deficiency and confirm the hereditary basis of the Type II PC deficiency.

Adolescent