一氧化氮合酶基因G298等位基因

Galal E. Nagib El-Kilany , Ehab Nayel , Sahar Hazzaa
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引用次数: 11

摘要

背景一氧化氮(NO)对血压和动脉壁有重要影响,高血压(HPN)患者内皮细胞NO的基础释放可能减少。到目前为止,还没有可靠的数据揭示一氧化氮合酶基因(NOS)多态性在HPN和微血管心绞痛患者中的潜在作用。目的研究内皮型一氧化氮合酶(eNOS)基因的多态性,该基因可能是HPN的候选基因,并启动动脉粥样硬化的过程。方法本研究共招募60名受试者;以胸痛为主诉的高血压患者50例(其中30例有缺血心电图改变),分离HPN患者20例,健康志愿者10例作为对照。所有患者均行应激心肌灌注显像(MPI)和冠状动脉造影。对所有患者和对照组进行eNOS基因分型。研究了eNOS基因多态性与HPN、微血管心绞痛的关系。结果smpi和冠状动脉造影显示15例胸痛伴真缺血和可逆性心肌灌注缺陷(多发、轻度),但心外膜冠状动脉(微血管心绞痛)正常,15例有明显冠状动脉病变(CAD), 20例高血压患者灌注扫描和冠状动脉造影正常。高血压合并微血管心绞痛组(MPI记录)NOS G298等位基因的患病率高于对照组(P< 0.005)。高血压组的eNOS等位基因明显高于对照组,但高血压组、x-综合征和冠心病患者的eNOS等位基因在纯合子突变体上无显著差异。结论enos基因多态性是高血压患者微血管心绞痛(x综合征)的重要病因。此外,eNOS突变基因在分离的HPN和CAD患者中显著增加。
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Nitric oxide synthase gene G298 allele

Background

Nitric oxide (NO) has an important effect on blood pressure, arterial wall, and the basal release of endothelial NO in hypertension (HPN) may be reduced. Until now, there is no solid data revealing the potential role of the polymorphism of the nitric oxide synthase gene (NOS) in patients with HPN and microvascular angina.

Aim

The aim of the present study is to investigate the gene of endothelial nitric oxide synthase (eNOS), as the polymorphism of this gene may be a putative candidate for HPN and initiate the process of atherosclerosis.

Methods

Sixty participants were recruited for this study; 50 were hypertensive patients complaining of chest pain [30 of them have electrocardiogram (EKG) changes of ischemia], 20 had isolated HPN, and 10 healthy volunteers served as control. All patients underwent stress myocardial perfusion imaging (MPI) and coronary angiography. Genotyping of eNOS for all patients and controls was performed. The linkages between HPN, microvascular angina and eNOS gene polymorphism were investigated.

Results

MPI and coronary angiography revealed that 15 patients had chest pain with true ischemia and reversible myocardial perfusion defects (multiple and mild) but normal epicardial coronary arteries (microvascular angina), while 15 patients had significant coronary artery disease (CAD), and 20 hypertensive patients showed normal perfusion scan and coronary angiography. The prevalence of the NOS G298 allele was higher in the hypertensive group with microvascular angina (documented by MPI) than it was among the control participants (P<.005). The eNOS allele was significantly higher in the hypertensive group than in the control participants, but there was no significant difference in homozygote mutants among hypertensive participants, x-syndrome and patients with CAD.

Conclusion

eNOS gene polymorphism is proved to be an important etiology in microvascular angina (x-syndrome) among hypertensive patients. In addition, the eNOS mutant gene showed a significant increase in isolated HPN and in patients with CAD.

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