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热休克蛋白诱导剂对急性心房缺血所致房颤基质的影响。

Effects of a heat shock protein inducer on the atrial fibrillation substrate caused by acute atrial ischaemia.

作者信息

Sakabe Masao, Shiroshita-Takeshita Akiko, Maguy Ange, Brundel Bianca J J M, Fujiki Akira, Inoue Hiroshi, Nattel Stanley

机构信息

Department of Medicine and Research Center, Montreal Heart Institute and Université de Montréal, 5000 Belanger St. E., Montreal, Quebec, Canada H1T 1C8.

出版信息

Cardiovasc Res. 2008 Apr 1;78(1):63-70. doi: 10.1093/cvr/cvn019. Epub 2008 Jan 31.

Abstract

AIMS

Heat shock proteins (HSPs) are a set of endogenous cytoprotective factors activated by various pathological conditions. This study addressed the effects of geranylgeranylacetone (GGA), an orally active HSP inducer, on the atrial fibrillation (AF) substrate associated with acute atrial ischaemia (AI).

METHODS AND RESULTS

Four groups of mongrel dogs were studied: (1) a group subjected to AI without GGA (AI-CTL, n = 13 dogs); (2) dogs that underwent AI after GGA pretreatment (120 mg/kg/day; AI-GGA, n = 12); (3) dogs receiving GGA pretreatment without AI (n = 5); (4) control dogs for tissue sampling (n = 5). Isolated right AI was produced by occluding a right atrial (RA) coronary-artery branch. AI reduced ischaemic-zone conduction velocity (CV, from 94 +/- 3 to 46 +/- 5 cm/s; P < 0.01) and increased maximum local phase delays (P95, from 1.6 +/- 0.1 to 4.6 +/- 0.6 ms/mm; P < 0.01), conduction heterogeneity index (CHI, from 0.7 +/- 0.1 to 2.9 +/- 0.5; P < 0.01), and the mean duration of burst pacing-induced AF (DAF, from 44 +/- 18 to 890 +/- 323 s; P < 0.01) in AI-CTL dogs. GGA pretreatment attenuated ischaemia-induced conduction abnormalities (CV, 77 +/- 8 cm/s; P95, 2.1 +/- 0.4 ms/mm; CHI, 1.1 +/- 0.2; all P < 0.01 vs. AI-CTL) and DAF (328 +/- 249 s; P < 0.01) in AI-GGA dogs. GGA treatment alone, without ischaemia, did not alter DAF or conduction indices. AI slightly prolonged atrial refractory period, an effect also prevented by GGA. GGA significantly increased HSP70 protein expression in RA tissues of ischaemic hearts.

CONCLUSIONS

GGA prevents ischaemia-induced atrial conduction abnormalities and suppresses ischaemia-related AF. These results suggest that HSP induction might be a useful new anti-AF intervention for patients with coronary artery disease.

摘要

目的

热休克蛋白(HSPs)是一组由各种病理状况激活的内源性细胞保护因子。本研究探讨了口服活性HSP诱导剂香叶基香叶基丙酮(GGA)对与急性心房缺血(AI)相关的房颤(AF)基质的影响。

方法与结果

对四组杂种犬进行了研究:(1)一组接受AI但未用GGA处理(AI-CTL,n = 13只犬);(2)GGA预处理后接受AI的犬(120 mg/kg/天;AI-GGA,n = 12);(3)接受GGA预处理但未发生AI的犬(n = 5);(4)用于组织采样的对照犬(n = 5)。通过阻断右心房(RA)冠状动脉分支产生孤立性右AI。AI降低了缺血区传导速度(CV,从94±3降至46±5 cm/s;P<0.01),并增加了最大局部相位延迟(P95,从1.6±0.1增至4.6±0.6 ms/mm;P<0.01)、传导异质性指数(CHI,从0.7±0.1增至2.9±0.5;P<0.01)以及AI-CTL组犬中猝发起搏诱发房颤的平均持续时间(DAF,从44±18增至890±323 s;P<0.01)。GGA预处理减轻了缺血诱导的传导异常(CV,77±8 cm/s;P95,2.1±0.4 ms/mm;CHI,1.±0.2;与AI-CTL组相比,所有P<0.01)以及AI-GGA组犬的DAF(328±249 s;P<0.01)。单独给予GGA处理而无缺血时,未改变DAF或传导指标。AI使心房不应期稍有延长,GGA也可预防这一效应。GGA显著增加了缺血心脏RA组织中HSP70蛋白的表达。

结论

GGA可预防缺血诱导的心房传导异常并抑制与缺血相关的房颤。这些结果提示,诱导HSP可能是冠心病患者一种有用的新型抗房颤干预措施。

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