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血红素加氧酶诱导在体内抑制小动脉血栓形成:非底物诱导剂钴原卟啉的作用。

Heme-oxygenase induction inhibits arteriolar thrombosis in vivo: effect of the non-substrate inducer cobalt protoporphyrin.

作者信息

Johns Douglas G, Zelent Dorothy, Ao Zhaohui, Bradley Benjamin T, Cooke Alexandra, Contino Lisa, Hu Erding, Douglas Stephen A, Jaye Michael C

机构信息

Department of Cardiovascular Pharmacology, Metabolic Pathways Center for Excellence in Drug Discovery, GlaxoSmithKline, King of Prussia, PA 19406, United States.

出版信息

Eur J Pharmacol. 2009 Mar 15;606(1-3):109-14. doi: 10.1016/j.ejphar.2008.12.030. Epub 2009 Jan 10.

Abstract

Heme oxygenase-1 (HO) metabolizes heme to form the vasodilator carbon monoxide and antioxidant biliverdin. Upregulation of HO-1 by hemin, which is also a substrate attenuates thrombosis in rodent models, however, whether protection is due to HO-1 upregulation or to increased substrate availability is unknown. This study tested the hypothesis that treatment of mice with cobalt protoporphyrin (CoPP), a non-substrate HO-1 inducer, would protect the endothelium from laser injury. C57Bl/J6 mice were treated with vehicle, CoPP (20 mg/kg), CoPP plus the HO-1 inhibitor tin protoporphyrin (SnPP; 20 mg/kg) or SnPP alone for 18 h. Intravital microscopy was used to quantitate thrombus formation in cremaster arterioles in response to laser ablation of the endothelium. CoPP treatment inhibited thrombosis by 43% compared to vehicle (P<0.05). SnPP co-treatment negated the inhibitory effect of CoPP while SnPP alone potentiated thrombosis compared to vehicle. In CoPP-treated animals, cremaster HO-1 mRNA expression was increased 59+/-17-fold over vehicle (P<0.001). Co-treatment with CoPP+SnPP attenuated this effect by 36%, however the increase in HO-1 protein induced by CoPP was unaffected by SnPP. Induction of HO-1 by the non-substrate inducer CoPP protects against laser induced endothelial injury without the need for increased substrate. Small molecule, substrate-independent upregulation of HO-1 expression represents a feasible approach to ameliorate endothelial dysfunction in cardiovascular disease.

摘要

血红素加氧酶-1(HO)将血红素代谢生成血管舒张剂一氧化碳和抗氧化剂胆绿素。血红素(也是一种底物)可上调HO-1,这在啮齿动物模型中可减轻血栓形成,然而,这种保护作用是由于HO-1上调还是底物可用性增加尚不清楚。本研究检验了以下假设:用非底物HO-1诱导剂钴原卟啉(CoPP)处理小鼠可保护内皮免受激光损伤。将C57Bl/J6小鼠分别用溶剂、CoPP(20mg/kg)、CoPP加HO-1抑制剂锡原卟啉(SnPP;20mg/kg)或单独使用SnPP处理18小时。采用活体显微镜定量观察激光消融内皮后提睾肌小动脉中的血栓形成情况。与溶剂相比,CoPP处理可使血栓形成抑制43%(P<0.05)。与CoPP联合使用时,SnPP可消除CoPP的抑制作用,而单独使用SnPP时,与溶剂相比可增强血栓形成。在CoPP处理的动物中,提睾肌HO-1 mRNA表达比溶剂组增加了59±17倍(P<0.001)。CoPP与SnPP联合处理可使这种作用减弱36%,然而CoPP诱导的HO-1蛋白增加不受SnPP影响。非底物诱导剂CoPP诱导HO-1可保护内皮免受激光诱导的损伤,而无需增加底物。HO-1表达的小分子非底物依赖性上调是改善心血管疾病中内皮功能障碍的一种可行方法。

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