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通过生理基因组关联评估他汀类药物引起的肌肉疼痛的机制。

Mechanisms of statin-induced myalgia assessed by physiogenomic associations.

机构信息

Genetics Research Center, Hartford Hospital, Hartford, CT, USA.

出版信息

Atherosclerosis. 2011 Oct;218(2):451-6. doi: 10.1016/j.atherosclerosis.2011.07.007. Epub 2011 Jul 20.

Abstract

OBJECTIVE

We investigated genetic variants predictive of muscular side effects in patients treated with statins. We utilized a physiogenomic approach to prototype a multi-gene panel correlated with statin-induced myalgia.

BACKGROUND

Statin-induced myalgia occurs in ∼10% of lipid clinic outpatients. Its clinical manifestation may depend in part upon gene variation from patient to patient.

METHODS

We genotyped 793 patients (377 with myalgia and 416 without) undergoing statin therapy at four U.S. outpatient clinic sites to evaluate 31 candidate genes from the literature for their association with statin-induced common myalgia.

RESULTS

Three previously hypothesized candidate genes were validated: COQ2 (rs4693570) encoding para-hydroxybenzoate-polyprenyltransferase, which participates in the biosynthesis of coenzyme Q10 (p<0.000041); ATP2B1 (rs17381194) which encodes a calcium transporting ATPase involved in calcium homeostasis (p<0.00079); and DMPK (rs672348) which encodes a protein kinase implicated in myotonic dystrophy (p<0.0016).

CONCLUSIONS

The candidate genes COQ2, ATP2B1, and DMPK, representing pathways involved in myocellular energy transfer, calcium homeostasis, and myotonic dystonia, respectively, were validated as markers for the common myalgia observed in patients receiving statin therapy. The three genes integrated into a physiogenomic predictive system could be relevant to myalgia diagnosis and prognosis in clinical practice.

摘要

目的

我们研究了可预测他汀类药物治疗患者肌肉副作用的遗传变异。我们利用生理基因组学方法构建了与他汀类药物诱导的肌痛相关的多基因检测面板。

背景

他汀类药物诱导的肌痛在约 10%的血脂门诊患者中发生。其临床表现部分可能取决于患者个体的基因变异。

方法

我们对正在接受他汀类药物治疗的 793 名患者(377 名有肌痛,416 名无肌痛)进行基因分型,以评估来自文献的 31 个候选基因与他汀类药物诱导的常见肌痛的相关性。

结果

验证了三个先前假设的候选基因:编码参与辅酶 Q10 生物合成的对羟基苯甲酸多萜基转移酶的 COQ2(rs4693570)(p<0.000041);编码参与钙稳态的钙转运 ATP 酶的 ATP2B1(rs17381194)(p<0.00079);编码肌强直性营养不良相关蛋白激酶的 DMPK(rs672348)(p<0.0016)。

结论

候选基因 COQ2、ATP2B1 和 DMPK 分别代表肌细胞能量转移、钙稳态和肌强直性营养不良的途径,被验证为接受他汀类药物治疗的患者中常见肌痛的标志物。这三个整合到生理基因组预测系统中的基因可能与临床实践中的肌痛诊断和预后相关。

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