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Biomedical subjects

Shu He

Publications and source records attributed to Shu He.

9 recordsLinked to original sources

Platelet activity, coagulation, and fibrinolysis during exercise in healthy males: effects of thrombin inhibition by argatroban and enoxaparin.

BACKGROUND: Relationships between exercise-induced activation of platelets, blood coagulation, and fibrinolysis, and the importance of thrombin for responses to exercise are not clear. METHODS AND RESULTS: Effects of thrombin inhibition on hemostatic parameters were examined in a double-blind crossover study comparing the direct thrombin inhibitor argatroban (350 microg/kg intravenous bolus followed by 25 microg/kg per minute of infusion), the indirect thrombin inhibitor enoxaparin (0.75 mg/kg, intravenous bolus), or placebo (saline) in 21 healthy males. Measurements were made at rest, before and during/after thrombin inhibitor treatment, and immediately after exhaustive exercise. At rest argatroban abolished, and enoxaparin attenuated platelet activation by thrombin, but not by adenosine diphosphate. Argatroban and, even more so, enoxaparin decreased thrombin generation (prothrombin F1+2) and the coagulation potential, and increased the fibrinolytic potential. Exercise increased circulating activated platelets (from 5.5+/-0.3 to 9.4+/-0.9x10(9)/L; P<0.001), circulating platelet-platelet microaggregates, the platelet responsiveness to in vitro stimulation, leukocyte activation (leukocyte CD11b expression and plasma elastase), and platelet-leukocyte aggregation (P<0.01 for all). Exercise increased coagulation (F1+2; P<0.01) and fibrinolysis, but did not alter the balance between them; fibrin gel permeability increased (P<0.01), probably because of release of endogenous tissue plasminogen activator from the vessel wall. Neither argatroban nor enoxaparin counteracted exercise-induced platelet or leukocyte activation. Both thrombin inhibitors augmented exercise effects on fibrinolysis. CONCLUSIONS: Strenuous exercise enhances platelet and leukocyte activation independently of thrombin. Exercise augments both coagulation and fibrinolysis, but the balance between them appears to be maintained. At therapeutic dosages argatroban counteracted thrombin-induced platelet activation most efficiently, whereas enoxaparin had somewhat stronger anticoagulant and profibrinolytic effects.

Adult↗

Marked increase of fibrin gel permeability with very low dose ASA treatment.

INTRODUCTION: Previous data from our group show that acetylsalicylic acid (ASA), especially at low dose, alters the network structure of fibrin, rendering it more porous. The present study was performed to extend the dose-response curve for effects of ASA on fibrinogen clotting properties and to examine the variability of these effects during a 24-h dose interval. MATERIAL AND METHODS: Fifteen healthy volunteers received ASA 37.5 mg daily (low dose) for 10 days and, after an interval of 2 weeks, 320 mg daily (medium dose) for 7 days, followed by a single bolus dose of 640 mg (high dose). The plasma fibrinogen concentrations were determined and the permeability of fibrin gels (Ks) was assayed with a recently modified flow measurement technique. Three-dimensional (3D) structure of the fibrin network was studied by confocal microscopy. RESULTS: ASA therapy did not influence fibrinogen concentrations. Compared to baseline, Ks levels were increased by 21% and 31% in samples during medium and high dose ASA treatment (p<0.01) and, even more markedly, by 44% (p<0.0001) with very low dose ASA treatment (p<0.01, compared to the higher doses). The effects of ASA on fibrin gel permeability were stable over a 24-h dose interval. During ASA treatment, thicker fibrin fibers and larger network pores with irregular structure were observed by confocal microscopy. CONCLUSIONS: Acetylation of lysine residues in the fibrinogen molecule may explain the alterations in its clotting property, resulting in altered fibrin gel permeability. The mechanism(s) behind the greater increase in fibrin gel permeability and alterations in 3D structure of the fibrin network observed, and why this phenomenon is more pronounced at low compared to intermediate or high ASA doses, deserve further investigations.

Adult↗

Modifications of flow measurement to determine fibrin gel permeability and the preliminary use in research and clinical materials.

Our earlier investigations employing a flow measurement have yielded intriguing findings as to what governs the fibrin network porosity. To make the method suitable for use by more groups with various laboratory conditions, sample materials or study purposes, we simplified the essential equipment and thereby minimized the sample volume to 250 microl in comparison with the need for 3000 microl in the previous method. To assess whether the fibrin gel permeability depends on changes in thrombin generation potential and/or fibrinogen clotting property, different concentrations of thrombin with or without frozen-thawed platelets, serving as phospholipids, were used. The platelets and 0.05 IU/ml thrombin were added to plasma samples from patients with previous myocardial infarction. The fibrin gel permeability, expressed as Darcy constant (Ks), was decreased compared with that in controls, supporting findings about high risk of thromboembolism in this disease due to increases of thrombin activity and fibrinogen function. When 0.4 IU/ml thrombin was used in samples provided by 10 healthy individuals treated with acetysalicylic acid, Ks levels were increased during versus before therapy. Since almost no thrombin generation was found in the samples with the higher dose of exogenous thrombin, we considered that modifications in fibrinogen clotting property by acetysalicylic acid rendered the fibrin network more permeable. In summary, as the reproducibility remains satisfactory (coefficient of variation < 10%) despite aforementioned modifications in the equipment and reagents, any interested laboratory ought to be able to repeat the method. Assays of fibrin permeability in such a simple way may help to determine the fibrin clot stability in pathological/pharmacological studies, and probably serve as a tool to estimate thromboembolism risk in clinical materials, such as patients with cardiovascular diseases.

Animals↗

Identifying hypocoagulable states with a modified global assay of overall haemostasis potential in plasma.

To test the sensitivity of the global assay of overall haemostasis potential (OHP) in detecting hypocoagulation, the OHP was assayed in plasma containing exogenous thrombin (0.04 IU/ml), tissue-plasminogen activator (330 ng/ml), Ca and a platelet reagent. Commercial plasmas with factor II, V, VIII, IX, X, XI, XII or VII deficiency were mixed with normal plasma in different proportions to imitate different severities. Samples from patients with haemophilia and factor XII deficiency were also examined. No clot was found in the absence of factor II/factor X, indicating that the tiny dose of thrombin worked solely as a trigger for the intrinsic pathway activation. Changed levels of the investigated coagulants, apart from factor XII, influenced the outcome. OHPs were decreased in patients with haemophilia but were unchanged or even increased in those with factor XII deficiency. This modified OHP method may therefore be useful for estimating the bleeding tendency in haemophilic patients and to find suitable doses and intervals for prophylactic treatment. It may also be of use in investigations of the effect of antifibrinolytic drugs as well as for identifying a thrombotic tendency in patients with factor XII deficiency. For detection of other coagulation factor deficiencies, our investigations with the commercial plasmas suggest that the OHP assay is also valuable, especially when the intrinsic pathway of the coagulation cascade is impaired.

Blood Coagulation↗

Facile synthesis of site-specifically acetylated and methylated histone proteins: reagents for evaluation of the histone code hypothesis.

The functional capacity of genetically encoded histone proteins can be powerfully expanded by posttranslational modification. A growing body of biochemical and genetic evidence clearly links the unique combinatorial patterning of side chain acetylation, methylation, and phosphorylation mainly within the highly conserved N termini of histones H2A, H2B, H3, and H4 with the regulation of gene expression and chromatin assembly and remodeling, in effect constituting a "histone code" for epigenetic signaling. Deconvoluting this code has proved challenging given the inherent posttranslational heterogeneity of histone proteins isolated from biological sources. Here we describe the application of native chemical ligation to the preparation of full-length histone proteins containing site-specific acetylation and methylation modifications. Peptide thioesters corresponding to histone N termini were prepared by solid phase peptide synthesis using an acid labile Boc/HF assembly strategy, then subsequently ligated to recombinantly produced histone C-terminal globular domains containing an engineered N-terminal cysteine residue. The ligation site is then rendered traceless by hydrogenolytic desulfurization, generating a native histone protein sequence. Synthetic histones generated by this method are fully functional, as evidenced by their self-assembly into a higher order H3/H4 heterotetramer, their deposition into nucleosomes by human ISWI-containing (Imitation of Switch) factor RSF (Remodeling and Spacing Factor), and by enzymatic modification by human Sirt1 deacetylase and G9a methyltransferase. Site-specifically modified histone proteins generated by this method will prove invaluable as novel reagents for the evaluation of the histone code hypothesis and analysis of epigenetic signaling mechanisms.

Acetylation↗

Decreased levels of von Willebrand factor-cleaving protease in coronary heart disease and thrombotic thrombocytopenic purpura: study of a simplified method for assaying the enzyme activity based on ristocetin-induced platelet aggregation.

The haemostatic activity of von Willebrand Factor (VWF) is dependent on VWF multimer stability. Fragments, arising from the proteolytic cleavage of the multimers by VWF-cleaving protease, are ineffective in initiating platelet aggregation. We designed a simple method to determine the protease activity, which was expressed as the reduction in the level of ristocetin-induced platelet aggregation between the inactive enzyme and the enzyme when activated by the addition of calcium. Samples from senior women (n = 14) with chronic coronary heart disease (CHD), age-matched control subjects (n = 15) and young healthy individuals (n = 13), as well as patients with either thrombotic thrombocytopenic purpura (TTP) (n = 2) or von Willebrand disease type 2A (VWD-2A) (n = 2), were examined. The lower protease activity observed in the CHD group, compared with the control subjects, indicated that the increased levels of VWF found in CHD relate to impaired enzyme function. The assessment of TTP patients reconfirmed the reduced protease activity previously observed in this disorder. In VWD-2A, normal enzyme function was observed, suggesting that there is an increased sensitivity of the mutated VWF protein to the protease, rather than an increase in the activity or quantity of the enzyme involved in pathogenesis. In summary, the present simplified method efficiently determines VWF protease activity and is suitable for use in laboratories where platelet aggregation analyses can be performed.

ADAM Proteins↗

On the correlation between local fibrinolytic activity in menstrual fluid and total blood loss during menstruation and effects of desmopressin.

The primary objective of this study was to investigate the correlation between fibrinolytic activity in menstrual fluid and total menstrual blood loss during menstruation. We also wanted to evaluate the influence of desmopressin nasal inhalation on the local fibrinolytic activity in menstrual fluid. Six women with objectively verified menorrhagia and six women with normal menstrual blood loss were examined. With a slender catheter introduced through the cervical canal, menstrual fluid was collected on the day in the cycle when the most intense bleeding occurred. The fibrinolytic activity in menstrual fluid was measured both as plasmin content using an amidolytic method with chromogenic substrate and with a fibrin plate method. A significant correlation between the amount of menstrual blood loss and fibrinolytic activity was found in menstrual fluid of both groups and with both methods. We could not find an increased fibrinolytic activity in menstrual fluid when the women with menorrhagia were treated with desmopressin nasal inhalation. Knowledge of the local factors influencing monthly blood loss can be valuable when searching for more effective medical treatment of menorrhagia. Apprehension that desmopressin should increase local fibrinolytic activity in menstrual fluid could not be confirmed.

Administration, Inhalation↗

Light-induced helix formation.

This study shows that incorporation of [Rub2m-OH]2+ at the N-terminus of the Fs peptide enhances its stability by approximately 0.15 kcal/mol through the mechanism of dipole-dipole coupling at the excited state, suggesting that photoinduced charge generation at a well-controlled and specific location provides a convenient means to trigger helix-coil transition on nanosecond or even faster time scales.

Kinetics↗