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N J Samani

Publications and source records attributed to N J Samani.

At least 55 records · Page 3Linked to original sources

A pharmacogenetic approach to blood pressure in Lyon hypertensive rats. A chromosome 2 locus influences the response to a calcium antagonist.

In a backcross population (n = 281) derived from a cross of the Lyon hypertensive rat with Lyon normotensive rat, we investigated whether genetic factors influence the acute cardiovascular responses to pharmacological modulation of the renin-angiotensin system, the sympathetic nervous system, and the voltage-sensitive L-type calcium channels. Using microsatellite markers, a quantitative trait locus was identified and mapped on rat chromosome 2 that specifically influences the systolic (peak LOD score 4.4) and diastolic (peak LOD score 4.1) blood pressure responses to administration of a dihydropyridine calcium antagonist, PY108-068. The locus accounted for 10.3 and 10.4% of the total variances in the systolic and diastolic responses to PY108-068, respectively. In marked contrast, the locus had no effect on either basal blood pressure or on the responses to acute administration of a ganglionic blocking agent, trimetaphan, or of an angiotensin II subtype 1 receptor antagonist, losartan. These findings provide strong direct support for the paradigm that genetic factors may influence the response to antihypertensive drugs and suggest that the heterogeneity seen in the responses to different antihypertensive agents in human essential hypertension may have a significant genetic determination.

Animals↗

Glycoprotein IIIa polymorphism and risk of myocardial infarction.

OBJECTIVES: To prospectively investigate whether the PlA2 variant of the platelet adhesion molecule glycoprotein IIIa influences the risk of myocardial infarction. BACKGROUND: The platelet glycoprotein IIb/IIIa receptor plays an important role in platelet aggregation. The IIIa polypeptide is polymorphic due to a single base change at position 1565 resulting in either proline PlA1 or leucine PlA2 at position 33 in the protein. It has recently been reported that the PlA2 variant may be strongly associated with the risk of acute coronary syndromes, particularly in younger subjects. METHODS: PlA genotypes of 242 prospectively collected cases of first myocardial infarction admitted to our Coronary Care Unit were compared with those of 209 community-based control subjects. RESULTS: We found no difference in either PlA genotype (P = 0.65) or allele (P = 0.64) frequencies between cases and controls. The PlA2 allele frequency was 18.2 and 19.4% in cases and controls, respectively. The age- and sex-stratified odds ratio for risk of myocardial infarction associated with the PlA2 allele was 0.89 (95% CI 0.58-1.37, P = 0.65) and remained non-significant when the analysis was confined to subjects under the age of 60 (odds ratio 0.77, 95% CI 0.38-1.56, P = 0.44). There was no interaction between PlA2 and other coronary risk factors. For cases, the age at myocardial infarction was not different between those carrying the PlA2 allele and those not (66.3 +/- 10.8 vs. 65.6 +/- 11.7 years, P = 0.63). CONCLUSIONS: We conclude that, in our subjects, the PlA2 variant of platelet glycoprotein IIIa is not an important risk factor for myocardial infarction.

Alleles↗

Normotensive blood pressure in mice with a disrupted renin Ren-1d gene.

Renin is an aspartyl protease that is involved in the conversion of angiotensinogen to angitensin II and hence participates in the regulation of blood pressure. Mice are polymorphic for the number of renin genes with some strains harbouring two renin genes, Ren-1d and Ren-2. To study the role of renin Ren-1d in regulating cardiovascular homeostasis, mice with a disrupted Ren-1d gene were created. Analyses of kidney renin mRNA expression in Ren-1d-/-/Ren-2+/+ mice demonstrated that only Ren-2 transcripts were present. Mean arterial blood pressures of Ren-1d+/+/Ren-2+/+, Ren-1d+/-/Ren-2+/+ and Ren-1d-/-/Ren-2+/+ mice showed no significant differences. These observations demonstrate that the Ren-1d gene product is not essential for normal blood pressure maintenance under normal physiological conditions.

Animals↗

Tissue expression of components of the renin-angiotensin system in experimental post-infarction heart failure in rats: effects of heart failure and angiotensin-converting enzyme inhibitor treatment.

1. It has been suggested that local tissue renin-angiotensin systems may be activated in heart failure and that effects on such systems may, at least partially, explain the beneficial effects of angiotensin-converting enzyme (ACE) inhibitors in this syndrome. To investigate these hypotheses, we examined expression of renin-angiotensin system components in several tissues in a rodent model of post-myocardial infarction (MI) heart failure, and analysed whether such expression is modified by ACE inhibitor treatment. 2. Four groups of rats (n = 8 - 12 per group) were studied 30 days after surgery: (A) sham-operated rats with no treatment, (B) rats with post-MI heart failure induced by ligation of the left coronary artery, (C) sham-operated rats treated with the ACE inhibitor perindopril (1.5 mg day-1 kg-1), and (D) rats as per B, but treated with perindopril. Expression of renin, angiotensinogen, ACE and angiotensin subtype 1 receptor was assessed by quantification of their respective mRNAs by Northern blotting. 3. Renal renin mRNA increased 2-fold in animals with MI (group B) compared with controls (group A) (P < 0.05) and between 50 and 100-fold after ACE inhibitor treatment (P < 0.001). No change in renin gene expression was found in any extra-renal site either following MI or after ACE inhibitor treatment. Hepatic angiotensinogen mRNA level was similar in all groups, but kidney angiotensinogen mRNA level was increased 1.6-fold (P < 0.01) in the groups receiving perindopril. ACE mRNA level in the lung was not affected by ACE inhibitor treatment but decreased by 50% following MI (groups B and D, P < 0.01). This was associated with a similar (50%, P < 0.01) fall in lung ACE activity and was correlated with the severity of heart failure. Angiotensin subtype 1 receptor mRNA level was not affected in any tissue by either MI or ACE inhibitor treatment. 4. We did not find a systematic activation of tissue renin-angiotensin systems, as assessed by steady-state mRNA levels of key components of the system in experimental post-MI heart failure, or a major effect of ACE inhibitor treatment on expression of these components. However, we observed tissue-specific changes in expression of selected components of the renin-angiotensin system in the kidney and the lung in post-MI heart failure and after ACE inhibitor treatment, which may be of relevance to the pathophysiology of the syndrome and the effects of ACE inhibition.

Angiotensin-Converting Enzyme Inhibitors↗

Analysis of phenotypic consequences of renin gene polymorphism in Lyon rats.

OBJECTIVE: To investigate phenotypic consequences of renin gene polymorphism between Lyon hypertensive (LH) and normotensive (LN) rats because previously we demonstrated cosegregation of the LH allele with increased blood pressure in a cross of LH with LN rats. DESIGN: Two studies were conducted. Study 1 used a cohort of male F2 rats from a LH x LN cross. Eighty-two rats homozygous for the hypertensive (HH) renin gene allele were compared with 82 rats homozygous for the normotensive (NN) allele. Urinary steroid excretion was measured in 24 h urine samples collected from rats aged 6 weeks. The direct aortic blood pressure was recorded in 30-week-old rats and, after they had been killed, their kidney renin concentration (KRC) was measured. In study 2, renin, angiotensinogen and angiotensin converting enzyme plasma concentrations and renin messenger RNA (mRNA) levels were measured in renal and extra-renal tissues from 6- and 25-week-old LH and LN parental and HH and NN F2 male rats. METHODS: Urinary steroids and plasma components of the renin-angiotensin system (RAS) were measured using specific radioimmunoassays. mRNA levels were quantified by northern blotting. RESULTS: In study 1, HH F2 rats had a higher blood pressure (151.5 +/- 8.2 versus 146.0 +/- 7.4 mmHg, P < 0.001) and a lower KRC (514 +/- 203 versus 666 +/- 304 micrograms A1/h per g cortex, P < 0.01) than did NN rats aged 30 weeks. In covariate analysis the decrease in KRC in HH rats was attributable to their increased blood pressure rather than to the renin genotype. The renin genotype of rats aged 6 weeks was not associated with a change in the urinary excretion of aldosterone, desoxycorticosterone, corticosterone or 18-hydroxy desoxycorticosterone. In study 2, we found no difference either in plasma levels of RAS components or in renal or extrarenal renin mRNA levels either between parental LH and LN rats or between HH and NN F2 rats apart from a higher plasma renin concentration in LH rats aged 6 weeks. Renal, but not extra-renal, renin mRNA levels declined with age. CONCLUSIONS: We found no evidence of a renin genotype-dependent phenotypic difference in the RAS that could account for the effect of the renin locus on blood pressure in Lyon rats. Our findings suggest that the effect of the locus on blood pressure might be due to an as yet unidentified gene linked to renin.

Animals↗

Apolipoprotein E polymorphism does not predict risk of restenosis after coronary angioplasty.

A recent report has suggested that the E4 allele of apolipoprotein (apo) E increases the risk of restenosis after percutaneous transluminal coronary angioplasty (PTCA) and also that it interacts synergistically with the deletion (D) allele of the angiotensin-converting enzyme (ACE) to increase the risk sixteen-fold. To investigate this further, we genotyped 231 subjects with successful PTCA who underwent planned repeat angiography at 4 months to assess the degree of restenosis. Subjects carrying the apo E4 allele (n = 71) were well matched with non-carriers (n = 160) for clinical and pre- and post-PTCA angiographic features. We found no increase in either apo E4 allele frequency (18.4% versus 15.6%, P = 0.42) or apo E4 homozygosity (2/106 versus 5/125, P = 0.30) in those with restenosis compared with those without. The relative risk of restenosis for apo E4 carriers was 1.11 (95% CI = 0.87-1.42). In apo E4 carriers, restenosis frequency was similar in those also carrying the ACE D allele and those without (28/55 (50.9%) versus 9/16 (56.2%), P = 0.71) and there was no significant increase in restenosis risk in carriers of both the apo E4 and ACE D alleles compared to the rest (odds ratio 1.30, 95% CI 0.68-2.50, P = 0.39). We conclude that in our cohort, the apo E4 allele does not either independently or acting synergistically with the ACE D allele increase the risk of restenosis after PTCA, and that apo E genotyping will not be a useful predictor of risk before the procedure.

Alleles↗

A meta-analysis of the association of the deletion allele of the angiotensin-converting enzyme gene with myocardial infarction.

BACKGROUND: The ACE gene is characterized by a polymorphism based on the presence (insertion [I]) or absence (deletion [D]) within intron 16 of a 287-basepair alu repeat sequence, resulting in three genotypes (DD and II homozygotes and ID heterozygotes). In 1992, the DD genotype was reported to be associated with an increased risk of myocardial infarction (MI). Subsequent studies have produced conflicting findings. To further evaluate the association of the ACE I/D genotype with MI risk, we carried out a meta-analysis of all the published studies. METHODS AND RESULTS: In total, 15 studies containing 3394 MI cases and 5479 control subjects were analyzed. The overall distribution of genotypes in the control subjects was 22.7% II, 49.0% ID, and 28.3% DD. The mean odds ratio for MI for DD versus ID/II genotypes across all studies was 1.26 (95% CI, 1.15, 1.39; P < .0001). Pairwise odds ratios were 1.36 (95% CI, 1.19, 1.55) for DD and II, 1.24 (95% CI, 1.11, 1.38) for DD and ID, and 1.09 (95% CI, 0.96, 1.23) for ID and II. The relative risk appeared to be increased in Japanese populations (2.55; 95% CI, 1.75, 3.70). CONCLUSIONS: Within the limitations of the available data, the meta-analysis therefore supports an association of the ACE D allele with MI risk and strengthens the justification for further evaluation in appropriately powered studies.

Genotype↗

Insertion/deletion polymorphism in the angiotensin-converting enzyme gene and risk of and prognosis after myocardial infarction.

OBJECTIVES: We sought to prospectively investigate whether genetic variation at the angiotensin-converting enzyme gene locus defined by an insertion (I)/deletion (D) polymorphism influences the risk of myocardial infarction or prognosis after infarction, or both. BACKGROUND: It has been suggested that the deletion allele of the angiotensin-converting enzyme gene, and specifically the DD genotype, may increase the risk of myocardial infarction, although previous studies have produced conflicting reports. No studies have yet examined the effect of I/D polymorphism on survival after infarction. METHODS: Angiotensin-converting enzyme genotypes in 684 patients with myocardial infarction recruited at the time of the acute event through coronary care units in two centers were compared with those of 537 control subjects recruited from the base populations. All patients were followed up to assess the impact of the angiotensin-converting enzyme genotype on prognosis. RESULTS: We found no difference (p = 0.89) in the genotype distribution between patients and control subjects (patients DD 31%, ID 47%, II 22%; control subjects DD 30%, ID 48%, II 22%). The odds ratio for myocardial infarction for DD compared with II/ID genotype adjusted for age, gender and center was 1.16 (95% confidence interval [CI] 0.82 to 1.65, p = 0.44). The study had 90% power to detect a 1.5-fold increase in risk of myocardial infarction associated with the DD genotype. For one center, data were available for other risk factors (hypertension, diabetes, angina, previous myocardial infarction, smoking, body mass index, total and high density lipoprotein cholesterol) in both patients and control subjects. In a stepwise logistic regression analysis the odds ratio for DD versus ID/II genotypes remained nonsignificant (1.44, 95% CI 0.84 to 2.46, p = 0.20) for these subjects. Over a median follow-up period of 15 months (range 3 to 22), 155 patients (22.7%) died. There was no difference in mortality between subjects with the DD genotype and those with ID/II genotypes. (21.8% vs. 23.1%, p = 0.25). Likewise, there was no difference in the distribution of survival times in the two groups (p = 0.62). The study had 70% power to detect a 1.5-fold increase in mortality during follow-up associated with the DD genotype. CONCLUSIONS: We conclude that in the groups studied, genetic variation at the angiotensin-converting enzyme gene locus defined by I/D polymorphism does not significantly influence either the risk of or the short- to medium-term prognosis after myocardial infarction.

Aged↗

Genetic analysis of thermolabile methylenetetrahydrofolate reductase as a risk factor for myocardial infarction.

Hyperhomocyst(e)inemia is associated with an increased risk of coronary artery disease and myocardial infarction. Both genetic and environmental factors influence the plasma level of homocysteine. One of the metabolic pathways for homocysteine involves the enzyme methylenetetrahydrofolate reductase (MTHFR), which regulates the conversion of homocysteine to methionine. A thermolabile variant of MTHFR is associated with reduced enzyme activity and increased plasma homocysteine levels. Recently, the cause of this variant of MTFHR has been identified as a single base change altering an alanine to a valine residue in the protein. Using a PCR-based assay to distinguish the normal and thermolabile variants of MTHFR in this study, we investigated whether the thermolabile variant is a genetic risk factor for myocardial infarction. In a study of 532 subjects (310 myocardial infarction patients and 222 population-based controls), we found no difference in either MTHFR genotype distribution (p = 0.57) or allele frequencies (p = 0.68) between cases and controls. The allele frequencies of the thermolabile variant were 0.34 and 0.35 in cases and controls, respectively. The age- and sex-stratified odds ratio for risk of myocardial infarction associated with homozygosity for the thermolabile variant was 0.85 (95% CI 0.50-1.50, p = 0.57) and that with carriage of the thermolabile allele was 1.06 (95% CI 0.73-1.52, p = 0.76). The odds ratios remained non-significant when restricted to young subjects (< 60 years) or males, and were not influenced by several other risk factors for myocardial infarction considered either singly or in combination. Interestingly, in both cases and controls, there was a trend toward a higher prevalence of hypertension in subjects carrying the normal allele, although as this is a post-hoc finding it needs to be interpreted with caution. The thermolabile variant of MTHFR is not a major risk factor for myocardial infarction and is unlikely to explain a significant proportion of the reported association of hyperhomocyst(e)inemia with coronary artery disease.

Adult↗

Left ventricular weight but not blood pressure is associated with sex chromosomes in Lyon rats.

OBJECTIVE: To investigate, by studying reciprocal back-crosses to Lyon hypertensive (LH) rats, the involvement of sex chromosome loci in high blood pressure and heart weight in LH rats. METHODS: Reciprocal F1 and F'1 generation male rats obtained from male LH x female Lyon normotensive (LN) and male LN x female LH crosses respectively, male back-cross rats obtained from male LH x female F1 or F'1 and from male F1 or F'1 x female LH crosses, and parental LH and LN male rats were studied at 29-31 weeks of age. Systolic, diastolic, mean and pulse pressures were measured beat to beat in unrestrained rats for 1 h. In addition, relative left and right ventricular weights were measured. RESULTS: The average blood pressures did not differ between F1 and F'1 rats or between the four populations of back-cross rats. On the contrary, the relative left ventricular weight was higher in F'1 than in F1 rats. As a role for loci on the Y chromosome could be discarded by comparison of the two populations of back-cross rats, which differ only in the origin of their Y chromosome, this increase in the relative left ventricular weight of F'1 rats was consistent with an effect of a locus on the LH X chromosome. This was supported by findings in the back-cross populations, those populations in which 100% of the rats carried an LH X chromosome having a significantly higher left ventricular weight than those in which only 50% of the rats carried such a chromosome. The estimate of the genetic determination was higher for left ventricular weight (41%) than for mean arterial pressure (19%). Although these two parameters were associated in the back-cross population, the origin of the X chromosome had no influence on this association. CONCLUSIONS: These findings indicate that, against the genetic background provided by the cross studied and at the age studied, the sex chromosomes of LH and LN rats do not contain loci at which alleles differentially influence blood pressure. They do, however, suggest that relative left ventricular weight in this model has a specific genetic determination, partly contributed by a locus on the X chromosome.

Animals↗

New training guidelines: what are the implications for cardiological research?

The recognition of the importance of research experience is welcomed; committed research supervisors should be identified for each trainee and research planning should start as early as possible in the traineeship. It would be welcome if employing authorities and postgraduate deans were to provide personal support for up to one year and modest research expenses for trainees undertaking research. In the absence of such support, application would need to be made to grant-giving bodies well in advance. Certain posts may need to be earmarked for the training of future clinical scientists. Academic units should regard themselves as challenged, but not necessarily threatened, by the new proposals. With appropriate consultation and involvement, and a modest allocation of funding, the overall result should enhance the quality of both service and academic communities.

Academic Medical Centers↗

Helicobacter pylori seropositivity in subjects with acute myocardial infarction.

OBJECTIVE: To determine whether Helicobacter pylori infection increases the risk of myocardial infarction. DESIGN: Case-control study. SETTING: University teaching hospital. METHODS: Serological evidence of H pylori infection was determined in 342 consecutive patients with acute myocardial infarction admitted into the coronary care unit and in 236 population-based controls recruited from visitors to patients on medical and surgical wards. RESULTS: 206/342 (60.2%) of cases were H pylori positive compared with 132/236 (55.9%) of controls (P = 0.30). Age and sex stratified odds ratio for myocardial infarction associated with H pylori seropositivity was 1.05 (95% CI 0.7 to 1.53, P = 0.87) and this remained non-significant (P = 0.46) when other risk factors for ischaemic heart disease were taken into account using logistic regression analysis. H pylori seropositivity was not associated with several coronary risk factors in either cases or controls. CONCLUSION: No increase was found in H pylori seropositivity in subjects with acute myocardial infarction. This suggests that previous H pylori infection is not a major risk factor for acute myocardial infarction.

Aged↗

Analysis of quantitative trait loci for blood pressure on rat chromosomes 2 and 13. Age-related differences in effect.

Previous studies have suggested the presence of quantitative trait loci (QTLs) influencing blood pressure on rat chromosomes 2 and 13. In this study, we mapped the QTLs in F2 rats derived from a cross of the spontaneously hypertensive rat and the Wistar-Kyoto rat and analyzed the effect of the QTLs on blood pressures measured longitudinally between 12 and 25 weeks of age. We analyzed 16 polymorphic markers spanning 147.3 cM on chromosome 2 and 13 markers spanning 91.6 cM on chromosome 13. Both chromosomes contained QTLs with highly significant effects on blood pressure (peak logarithm of the odds [LOD] scores, 5.64 and 5.75, respectively). On chromosome 2, the peak was localized to a position at anonymous marker D2Wox7, 2.9 cM away from the gene for the sodium-potassium ATPase alpha 1-subunit. On chromosome 13, the major peak coincided with the marker D13Mit2, 21.7 cM away from the renin gene, but there was a suggestion of multiple peaks. The effect of the QTL on chromosome 2 was seen throughout from 12 to 25 weeks of age, whereas interestingly, the effect for the QTL on chromosome 13 was maximal at 20 weeks of age but disappeared at 25 weeks of age, presumably because of the effect of either epistatic factors or environmental influences. The findings provide important information on QTLs influencing blood pressure on rat chromosomes 2 and 13 that will be useful in localizing and identifying the causative genes and emphasize the importance of age being taken into account when the effects of individual QTLs on a trait that shows significant age-related changes are being analyzed.

Aging↗

Major cardiovascular risk factors in Lyon hypertensive rats. A correlation analysis in a segregating population.

OBJECTIVE: To investigate the association of blood pressure with the other major cardiovascular risk factors in a large population of back-cross to Lyon hypertensive (LH) rats. METHODS: Mean arterial pressure was recorded in male freely moving Lyon normotensive (LN), LH, F1 and backcross to LH rats aged 30 weeks. Plasma cholesterol, triglycerides, insulin, creatinine, urea, fibrinogen and haematocrit levels, and the insulin: glucose ratio were measured in 31-week-old rats and 24h albuminuria in 6-week-old rats. RESULTS: Adult LH rats exhibited a significant increase in plasma lipids, insulin, fibrinogen, creatinine, urea and haematocrit levels compared with LN rats. In young LH rats, at an age at which blood pressure is slightly increased, albuminuria was increased to a greater extent than expected from their blood pressure levels. In the adult back-cross to LH rats, only the plasma cholesterol level was associated with blood pressure. Moreover, the plasma cholesterol level was related to fibrinogen and haematocrit levels. Finally, in the same rats, albuminuria developed early in life was positively related to hypercholinesterolaemia measured later in life. CONCLUSION: Plasma cholesterol, fibrinogen, haematocrit levels and early albuminuria could act synergistically in the enhancement or the development, or both, of vascular and kidney damage in the LH rat. Most interestingly, the association between plasma cholesterol level and blood pressure indicates that, as in essential hypertension, hypercholesterolaemia is a major phenotype associated with hypertension in the LH rat.

Albuminuria↗

HSP27 locus cosegregates with left ventricular mass independently of blood pressure.

Left ventricular hypertrophy remains a significant clinical problem and a predictor of fatal outcome in hypertension. Blood pressure per se and environmental modifiers including stress affect cardiac mass. Heat shock proteins are involved in the stress response as well as in the regulation of cardiac growth and cytoprotection. The present study evaluates heat shock protein 27 as a locus marker or candidate gene of cardiac hypertrophy in hypertension. The spontaneously hypertensive rat allele of heat shock protein 27 was associated with about a 6% increase in relative left ventricular weight (P = .0112) in 30 recombinant inbred strains from crosses of Brown Norway and spontaneously hypertensive rats. In 336 F2 crosses of spontaneously hypertensive and Wistar-Kyoto rats, the hypertensive allele was dominant and cosegregated with a similar 6% increase in the ratio of left ventricular weight to body weight (P = .0058) in rats fed a normal salt diet, but its contribution to left ventricular weight decreased in rats kept on a high salt diet. The contribution of the heat shock protein 27 allele was independent of blood pressure. We suggest that heat shock protein 27 represents a candidate gene/locus marker of cardiac hypertrophy in hypertension.

Alleles↗