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Biomedical subjects

Martine Aiach

Publications and source records attributed to Martine Aiach.

At least 19 recordsLinked to original sources

Cytochrome P450 2C19 loss-of-function polymorphism is a major determinant of clopidogrel responsiveness in healthy subjects.

The capacity of clopidogrel to inhibit ADP-induced platelet aggregation shows wide intersubject variability. To determine whether frequent functional variants of genes coding for candidate cytochrome P450 (CYP) isoenzymes involved in clopidogrel metabolic activation (CYP2C19*2, CYP2B6*5, CYP1A2*1F, and CYP3A5*3 variants) influence the platelet responsiveness to clopidogrel, we conducted a prospective pharmacogenetic study in 28 healthy white male volunteers treated for 7 days with clopidogrel 75 mg/d. We observed that pharmacodynamic response to clopidogrel was significantly associated with the CYP2C19 genotype. Twenty of the subjects were wild-type CYP2C19 (*1/*1) homozygotes, while the other 8 subjects were heterozygous for the loss-of-function polymorphism CYP2C19*2 (*1/*2). Baseline platelet activity was not influenced by the CYP2C19 genotype. In contrast, platelet aggregation in the presence of 10 muM ADP decreased gradually during treatment with clopidogrel 75 mg once daily in *1/*1 subjects, reaching 48.9% +/- 14.9% on day 7 (P < .001 vs baseline), whereas it did not change in *1/*2 subjects (71.8% +/- 14.6% on day 7, P = .22 vs baseline, and P < .003 vs *1/*1 subjects). Similar results were found with VASP phosphorylation. The CYP2C19*2 loss-of-function allele is associated with a marked decrease in platelet responsiveness to clopidogrel in young healthy male volunteers and may therefore be an important genetic contributor to clopidogrel resistance in the clinical setting.

Adolescent↗

Relation of depressive mood to plasminogen activator inhibitor, tissue plasminogen activator, and fibrinogen levels in patients with versus without coronary heart disease.

The increased risk of coronary heart disease (CHD) associated with depression is well documented. We hypothesized that impaired fibrinolysis is involved in this link. To explore the association of depressive mood and/or vital exhaustion with various measurements of fibrinolysis activity, 231 men (40 to 65 years old; 123 without CHD and taking no medication and 108 with documented CHD), completed the Center of Epidemiologic Studies Depression Scale and the Maastricht Questionnaire for vital exhaustion. Using classic cut-off points (Center of Epidemiologic Studies Depression Scale score >or=17, Maastricht Questionnaire score >or=8), 6.5% and 9.8% of subjects without CHD and 38% and 48.1% of those with CHD were classified as depressed and exhausted, respectively. Patients with CHD were older, had a higher body mass index, and higher levels of total cholesterol, glucose, plasminogen activator inhibitor 1 (PAI-1), tissue plasminogen activator (t-PA) antigen, and fibrinogen; 47% were treated for hypertension. Depressed subjects had higher levels of PAI-1 activity (p = 0.006) and exhausted patients had higher levels of PAI-1 activity (p = 0.011) and fibrinogen (p = 0.009). After adjusting for clinical condition (with or without CHD), smoking, hypertension, triglyceride concentration, and body mass index, PAI-1 activity remained higher in depressed subjects (p = 0.03). This association persisted after further adjustment for vital exhaustion or for t-PA antigen and fibrinogen levels. t-PA antigen and fibrinogen levels were not associated with depressive mood in multivariate analyses. No fibrinolytic variable was associated with vital exhaustion in multivariate analyses. In conclusion, depressive mood, but not vital exhaustion, is associated with higher levels of PAI-1 activity, suggesting a possible impairment of fibrinolysis and indicating a potential additional mechanism by which depressive mood may act as a cardiovascular risk factor.

Adult↗

Molecular bases of antithrombin deficiency: twenty-two novel mutations in the antithrombin gene.

Antithrombin (AT) is a major physiological inhibitor of hemostasis. We report 22 novel antithrombin gene (SERPINC1) mutations associated with antithrombin deficiency in 17 French and five German families. They were all present at the heterozygous state. Nine missense mutations accounted for type I deficiency, defined by equally low antithrombin activity and antigen level. Most of them (7/9) affected highly conserved serpin residues and were associated with venous thrombosis occurring at a young age (before age 32). One splice site, one nonsense mutation, three small deletions and one insertion were also identified as a cause for type I antithrombin deficiency. Seven other missense mutations were identified in type II or unclassified AT deficiency; g.5270C>T (p.T147I, T115I) and g.5281A>T (p.I151F, I119F) change residues in the heparin binding region, g.13267C>G (p.P439A, P407A) and g.13271T>C (p.F440S, F408S) affect amino acids in the pleiotropic region, g.2372G>A (p.G25D, G-8D) changes a signal peptide amino acid, g.2456G>C (p.C53S, C21S) affects one of the three disulfide bonds of the protein, and g.7585A>T (p.M347K, M315K) changes a nonconserved residue on strand 2C.

Antithrombin III↗

[Coagulation factor mutations and thrombosis].

The coagulation system is governed by a subtle balance between clotting activators and inhibitors. Many genes can contribute to the overall phenotype, and polymorphisms may act to up regulate or down regulate the generation of thrombin, the coagulation-key enzyme. An increase in coagulation factor (gain function) or/and a decrease in coagulation inhibitors (loss of function) may favor venous thromboembolism (VTE). It has been observed since a long time that VTE may be a familial disease, but it was only in 1965 that Egeberg published the first case of inherited antithrombin (AT) deficiency. This was followed by similar reports of protein C (PC) and protein S (PS) deficiencies. Hereditary thrombophilia was thus initially considered as a rare monogenic disorder with incomplete penetrance. AT, PC and PS deficiencies are due to multiple and mostly private mutations of the corresponding genes. Most patients are heterozygous and experience VTE at adult age. Homozygosity associated with severe thrombosis at birth has been observed in newborns with undetectable PC or PS concentrations. The discovery of factor (F) V Leiden and F2 g.20210 G>A, two gain of function mutations, challenged the view of thrombophilia as a rare monogenic disorder. FV Leiden and F2 g.20210 G>A are due to a founder effect and affect populations of European descent with frequencies at 5% and 3% respectively. These two mutations are moderate of risk factor for thrombosis and paved the way for gene-gene and gene-environment interactions. Patients carrying more than one genetic risk factor are at higher risk to develop VTE. The exposition to acquired risk factors such as estrogen based oral contraception may also have a synergistic effect favoring thrombosis in patients with FV Leiden or other genetic risk factors.

Blood Coagulation Disorders↗

Elevated growth-arrest-specific protein 6 plasma levels in patients with severe sepsis.

OBJECTIVE: Growth-arrest-specific protein 6 (Gas6), an intracellular protein released by apoptotic cells, has been detected in normal plasma. As the Gas6 system has been implicated in mouse susceptibility to sepsis, and as leukocyte apoptosis is thought to play a major role in the physiopathology of human severe sepsis, we studied Gas6 plasma levels and possibly related variables in patients with severe sepsis. DESIGN: Matched case-control study. SETTING: Adult intensive care unit in a university hospital. PATIENTS: Thirty patients with severe sepsis, 30 patients with organ failure not related to infection, and 30 healthy subjects matched for age and gender. INTERVENTIONS: Blood draw. MEASUREMENTS AND MAIN RESULTS: Gas6 plasma levels were quantified using enzyme-linked immunosorbent assay. Whole-blood gas6 messenger RNA levels were measured by quantitative real-time polymerase chain reaction. Gas6 plasma levels were elevated (110 ng/mL [75, 139]; median values [interquartile range]) in severe sepsis patients compared with organ failure patients (85 ng/mL [56, 101]) and healthy subjects (54 ng/mL [49, 68]). In patients with severe sepsis, this increase correlated with the Acute Physiology and Chronic Health Evaluation II severity score, the organ failure Organ Dysfunction and Infection (ODIN) score, and the existence of a septic shock. Gas6 messenger RNA levels were increased in patients with severe sepsis and correlated specifically with the monocyte count. CONCLUSIONS: In severe sepsis, the recently described anti-apoptotic protein Gas6 was found at high levels in plasma and correlated well with the degree of organ dysfunction.

APACHE↗

Identification of functional polymorphisms of the thromboxane A2 receptor gene in healthy volunteers.

Thromboxane A2 receptor (TP) is an important actor in vascular physiology and plays a crucial role in the platelet activation process. Genetic polymorphisms of the gene coding for the TP have been described, but their impacts on platelet function tests are unknown. The aim of this study was to investigate the relationship between genetic polymorphisms of the coding sequence of the TP gene and platelet function tests. We investigated 100 healthy volunteers twice, one week apart by performing platelet aggregation and secretion tests. We sequenced the coding region of the TP gene and confronted the genetic variants with the phenotypic results. We identified five single nucleotide polymorphisms (SNP); one of them, T1712C, replaces Leu by Pro at position 133 of the isoform beta of the TP. Homozygosity for the minor allele of the C795T, C924T or the G1686A SNP was associated with a decreased expression of CD62P when platelets were stimulated with the TP agonist U46619. As C795T and C924T have been linked to clinical disorders in which TxA2 plays a key role, the possible role of the G1686A and T1712C SNP should also be examined in selected diseases.

Adolescent↗

PAR-1 activation on human late endothelial progenitor cells enhances angiogenesis in vitro with upregulation of the SDF-1/CXCR4 system.

OBJECTIVE: The importance of PAR-1 in blood vessel development has been demonstrated in knockout mice. As endothelial progenitor cells (EPCs) are involved in postnatal vasculogenesis, we examined whether they express PAR-1 and whether stimulation by the peptide SFLLRN modulates their angiogenic properties. METHODS AND RESULTS: EPC expanded from human CD34+ cord blood cells expressed PAR-1. PAR-1 activation induced EPC proliferation in a concentration-dependent manner far more potently than that of human umbilical vein endothelial cells. PAR-1 activation also enhanced actin reorganization, promoting both spontaneous migration in a Boyden chamber assay and migration toward SDF-1 and VEGF. As shown by real-time quantitative reverse-transcription polymerase chain reaction (RT-PCR), EPC stimulation by SFLLRN significantly enhanced the mRNA expression of SDF-1 and its receptor CXCR-4. PAR-1 activation also increased CXCR4 expression on EPC and induced SDF-1 secretion, leading to autocrine stimulation. PAR-1 stimulation by SFLLRN also increased the formation of capillary-like structures by EPC in Matrigel, and this effect was abrogated by anti-CXCR-4, anti-SDF-1, and MEK inhibitor pretreatment. CONCLUSIONS: Human EPCs express functional PAR-1. PAR-1 activation promotes cell proliferation and CXCR4-dependent migration and differentiation, leading to a proangiogenic effect.

Actin Cytoskeleton↗

Conformational Asn187Asp/Lys antithrombin variants and thrombosis. Clinical and biological features in 13 new heterozygotes.

Antithrombin Rouen VI (N187D) is a rare conformational thermolabile variant. The unique symptomatic carrier reported in the literature developed 3 thrombotic events during pregnancy, in each case in a context of pyrexial infection. In fresh plasma, antithrombin activity and antigen level were normal but in vitro experiments demonstrated the presence of a thermolabile variant, suggesting that fever could be a trigger for thrombosis in N187D carriers. The RouenVI variant was further found in two asymptomatic brothers. In these subjects, it was associated with normal antigen level but reduced activity. In order to better delineate the functional and clinical consequences of the N187 variants, we have studied a series of seven subjects from two distinct families heterozygous for the Rouen VI mutation. Antithrombin levels were normal or borderline in these patients. Thermostability of plasma antithrombin was normal. We have also studied six subjects heterozygous for a new mutation, 6462C>G,which results in an asparagine to lysine substitution at residue 187. In these patients, the N187K mutation is associated with a clear type II deficiency and decreased thermostability of the plasma protein has been demonstrated. That the N187D mutation has milder consequences on plasma antithrombin activity than the N187K mutation is in agreement with structural predictions. About 50% of the N187 carriers studied have suffered venous thrombotic events, strongly suggesting that both mutations are risk factors for thrombosis, but none occurred during pyrexial infections.

Adolescent↗

The gamma-carboxyglutamic acid domain of anticoagulant protein S is involved in activated protein C cofactor activity, independently of phospholipid binding.

We expressed 2 chimeras between human protein S (PS) and human prothrombin (FII) in which the prothrombin gamma-carboxyglutamic acid (Gla) domain replaced the PS Gla domain in native PS (Gla(FII)-PS) or in PS deleted of the thrombin-sensitive region (TSR) (Gla(FII)-DeltaTSR-PS). Neither PS/FII chimera had activated protein C (APC) cofactor activity in plasma clotting assays or purified systems, but both bound efficiently to phospholipids. This pointed to a direct involvement of the PS Gla domain in APC cofactor activity through molecular interaction with APC. Using computational methods, we identified 2 opposite faces of solvent-exposed residues on the PS Gla domain (designated faces 1 and 2) as potentially involved in this interaction. Their importance was supported by functional characterization of a PS mutant in which the face 1 and face 2 PS residues were reintroduced into Gla(FII)-PS, leading to significant APC cofactor activity, likely through restored interaction with APC. Furthermore, by characterizing PS mutants in which PS face 1 and PS face 2 were individually replaced by the corresponding prothrombin faces, we found that face 1 was necessary for efficient phospholipid binding but that face 2 residues were not strictly required for phospholipid binding and were involved in the interaction with APC.

1-Carboxyglutamic Acid↗

Soluble thrombomodulin and brain infarction: case-control and prospective study.

BACKGROUND AND PURPOSE: Increased soluble thrombomodulin (sTM) concentration has been associated with recurrent coronary events, whereas in one prospective study it predicted fewer first-ever coronary events. One study found no relationship between brain infarction (BI) and sTM levels. Among all subjects of the Etude du Profil Génétique de l'Infarctus Cérébral (GENIC) cohort and those free of previous vascular history, we investigated the relationship between sTM level and BI risk, and among cases, its relationship with BI prognosis. METHODS: Patients with BI (n=492) were consecutively recruited from 12 centers. Hospital controls without a history of stroke (n=492) were individually matched for age, sex, and center. Blood samples were collected after hospitalization. Determination of sTM levels was centralized in a single laboratory. RESULTS: Soluble TM concentration significantly increased with age and hypertensive status, but was similar in cases and controls. With analyses restricted to 278 pairs of subjects with no previous vascular history, sTM concentration >59.6 microg/L (second and third tertiles compared with the first) was associated with fewer first-ever BI (adjusted odds ratio of 0.56 (95% CI, 0.35 to 0.89; P=0.014). Among the cases, increased sTM concentration was associated with a higher death rate after a median follow-up of 5.2 (1.4 to 6.4) years. The adjusted hazard ratio per 1 SD of sTM concentration increase (34.2 microg/L) was 1.19 (95% CI, 1.02 to 1.39; P=0.028). CONCLUSIONS: Increased sTM concentration may be protective against BI in subjects with no previous vascular disease, whereas it may predict a fatal outcome in patients who have already had a BI. Consequently, sTM levels should be interpreted according to vascular history.

Adult↗

The TF-603A/G gene promoter polymorphism and circulating monocyte tissue factor gene expression in healthy volunteers.

Three single nucleotide polymorphisms (-603A/G, -1322C/T, -1812C/T) and one deletion/insertion polymorphism (-1208D/I) are present in the tissue factor (TF) gene promoter sequence. These polymorphisms are in complete linkage disequilibrium, determining two haplotypes with almost equal frequency. The -603A/-1208D/-1322C/-1812C haplotype, presently defined as TF-603A, has been linked to venous thromboembolic disease, with a potentially protecting effect. The effects of the TF-603A/G gene polymorphism on monocyte gene expression and on a whole-blood clotting time (WBCT) are not known. We determined the WBCT in basal conditions (H0) and after 4 hours of LPS stimulation ex vivo (H4LPS) on blood samples from 100 young healthy caucasian male subjects on 2 visits, 7 days apart. Monocyte TF mRNA was quantified at H0 and H4LPS by real-time quantitative reverse-transcription PCR. The monocyte TF mRNA values determined at the first and second visits were concordant. In H4LPS samples, TF mRNA levels were increased 70-fold. The TF-603A haplotype was associated with 40%-lower TF mRNA levels at H0 (P=0.0002) and this association followed the same trend but was no longer significant at H4LPS. At H4LPS, TF mRNA levels were associated with WBCT shortening (P=0.0003). WBCT at H0 was not concordant over time, precluding any genotype-phenotype analysis. WBCT at H4LPS was concordant over time but was not related to the TF-603A/G polymorphism. The TF-603A/G gene promoter polymorphism thus significantly influences constitutive TF gene expression in human monocytes but has no major effect on TF gene expression or on WBCT in LPS stimulated conditions.

Adolescent↗

Polymorphonuclear leukocyte and monocyte activation induced by plasma from patients with heparin-induced thrombocytopenia in whole blood.

Heparin-induced thrombocytopenia (HIT), a severe complication of heparin therapy, results from platelet activation by heparin-dependent antibodies. Previously, we have shown that plasma from patients with HIT (HIT plasma) induces leukocyteplatelet aggregation in blood. In this report, we examined leukocyte activation by HIT plasma and the contribution of heparin and platelets to this activation, in whole blood. Degranulation of leukocytes from HIT patients was evaluated as a leukocyte activation marker. We showed that polymorphonuclear leukocytes (PMN) and monocytes were the leukocyte subpopulations involved in platelet-leukocyte aggregation induced by HIT plasma in healthy donor blood. PMN and monocyte activation, reflected by increased surface expression of the CD11b adhesion molecule, was induced by HIT plasma in a heparin-dependent manner. The CD11b increase induced by HIT plasma was observed on PMN only when they were associated with platelets. Moreover, the increased CD11b expression on monocytes and PMN correlated strongly with the degree of platelet adhesion to these cells. Degranulation of leukocytes from HIT patients and control subjects (non-HIT heparin-treated patients and healthy subjects) was evaluated in vivo by measuring the plasma myeloperoxidase concentration. HIT plasma contained higher myeloperoxidase concentrations than control plasma, suggesting leukocyte degranulation during HIT. In conclusion, this study provides the first evidence that PMN activation is induced by HIT plasma. HIT plasma induced PMN and monocyte activation in a heparin-dependent manner. In whole blood, platelet association with monocytes and PMN, and the activation of these leukocytes by HIT plasma were interrelated. Finally, leukocyte degranulation could be involved in HIT physiopathology.

Adult↗

P2Y12 H2 haplotype is associated with peripheral arterial disease: a case-control study.

BACKGROUND: We recently described a gain-of-function haplotype, called H2, of the adenosine diphosphate (ADP) receptor P2Y12 gene associated with increased ADP-induced platelet aggregation ex vivo in healthy volunteers. Because platelets play a key role in atherosclerosis and arterial thrombosis, we tested the possible link between the H2 haplotype and the risk of peripheral arterial disease (PAD) in a case-control study. METHODS AND RESULTS: We studied 184 consecutive male patients under 70 years of age with PAD and 330 age-matched control subjects free of symptomatic PAD and with no cardiovascular history. Mean age was 57.1+/-7.2 years (cases) and 56.7+/-7.6 years (control subjects). The H2 haplotype was more frequent in patients with PAD than in control subjects (30% and 21%, respectively; OR, 1.6; CI, 1.1 to 2.5; P=0.02 in univariate analysis). This association with PAD remained significant in multivariate regression analysis (OR, 2.3; CI, 1.4 to 3.9; P=0.002) after adjustment for diabetes, smoking, hypertension, hypercholesterolemia, and other selected platelet receptor gene polymorphisms. CONCLUSIONS: These data point to a role of the H2 haplotype in atherosclerosis and raise the possibility of relative thienopyridine resistance in carriers of the P2Y12 H2 haplotype.

Aged↗

A haplotype of the EPCR gene is associated with increased plasma levels of sEPCR and is a candidate risk factor for thrombosis.

The endothelial cell protein C (PC) receptor (EPCR) facilitates PC activation by the thrombin-thrombomodulin complex. A soluble form of this receptor (sEPCR) found in plasma inhibits both activated PC (aPC) activity and PC activation by competing for PC with membrane-associated EPCR. Elevated sEPCR levels are found in approximately 20% of healthy subjects, but the mechanisms underlying this interindividual variability are unknown. We measured sEPCR levels in 100 healthy male volunteers, and observed 2 phenotypic groups of subjects. The temporal stability of sEPCR levels suggested genetic control. Extensive analysis of the EPCR gene in these subjects revealed 13 polymorphisms in complete linkage disequilibrium; these defined 3 haplotypes, 1 of which (A3) was strongly associated with high sEPCR levels. The high constitutive sEPCR levels observed in A3 haplotype carriers might reduce the efficiency of the PC system and predispose these subjects to venous thrombosis. By studying 338 patients with venous thrombosis and 338 age- and sex-matched healthy subjects, we found that the A3 haplotype was overrepresented in the patients. In multivariate analysis, subjects carrying the A3 haplotype had an increased risk of thrombosis (odds ratio [OR] = 1.8; P =.004). Thus, the A3 haplotype, which is associated with elevated plasma sEPCR levels, is a candidate risk factor for venous thrombosis.

Adolescent↗

Adenosine diphosphate-induced platelet aggregation is associated with P2Y12 gene sequence variations in healthy subjects.

BACKGROUND: The adenosine diphosphate (ADP) receptor P2Y12 plays a pivotal role in platelet aggregation, as demonstrated by the benefit conferred by its blockade in patients with cardiovascular disease. Some studies have shown interindividual differences in ADP-induced platelet aggregation responses ex vivo, but the mechanisms underlying this variability are unknown. METHODS AND RESULTS: We examined ADP-induced platelet aggregation responses in 98 healthy volunteers, and we identified 2 phenotypic groups of subjects with high and low responsiveness to 2 micromol/L ADP. This prompted us to screen the recently identified Gi-coupled ADP receptor gene P2Y12 for sequence variations. Among the 5 frequent polymorphisms thus identified, 4 were in total linkage disequilibrium, determining haplotypes H1 and H2, with respective allelic frequencies of 0.86 and 0.14. The number of H2 alleles was associated with the maximal aggregation response to ADP in the overall study population (P=0.007). Downregulation of the platelet cAMP concentration by ADP was more marked in 10 selected H2 carriers than in 10 noncarriers. CONCLUSIONS: In healthy subjects, ADP-induced platelet aggregation is associated with a haplotype of the P2Y12 receptor gene. Given the crucial role of the P2Y12 receptor in platelet functions, carriers of the H2 haplotype may have an increased risk of atherothrombosis and/or a lesser clinical response to drugs inhibiting platelet function.

Adenosine Diphosphate↗

Differential effects of oral and transdermal estrogen/progesterone regimens on sensitivity to activated protein C among postmenopausal women: a randomized trial.

OBJECTIVE: Activated protein C (APC) resistance not related to the factor V Leiden mutation is a risk factor for venous thrombosis. Oral estrogen replacement therapy (ERT) has been reported to induce APC resistance. Little is known about the effect of transdermal estrogen. METHODS AND RESULTS: We enrolled 196 postmenopausal women who were randomly allocated to receive either 1 mg 17beta-estradiol orally (n=63) or 50 microg 17beta-estradiol transdermally per day (n=68), both associated with 100 mg progesterone daily or placebo (n=65) for 6 months. An activated partial thromboplastin time (APTT)-based test and the effect of APC on thrombin potential (ETP) were used. Oral ERT induced an ETP-based APC resistance compared with both placebo (P=0.006) and transdermal ERT (P<0.001), but there was no significant effect of transdermal ERT compared with placebo (P=0.191). There was no significant effect of ERT on the APTT-based APC sensitivity ratio. Prothrombin fragment 1+2 plasma levels were significantly higher after 6 months of treatment in women allocated to oral ERT compared with those on placebo and transdermal ERT and were positively and significantly correlated with changes in ETP-based APC sensitivity ratio. CONCLUSIONS: Our data show that oral, unlike transdermal, estrogen induces APC resistance and activates blood coagulation. These results emphasize the importance of the route of estrogen administration.

Administration, Cutaneous↗