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肉桂醛和含肉桂醛的胶束可诱导离体猪冠状动脉舒张:一氧化氮和钙的作用。

Cinnamaldehyde and cinnamaldehyde-containing micelles induce relaxation of isolated porcine coronary arteries: role of nitric oxide and calcium.

作者信息

Raffai Gábor, Kim Byungkuk, Park Sanga, Khang Gilson, Lee Dongwon, Vanhoutte Paul M

机构信息

World Class University, Department of BIN Fusion Technology, Chonbuk National University, Jeonju, Jeonbuk, South Korea.

World Class University, Department of BIN Fusion Technology, Chonbuk National University, Jeonju, Jeonbuk, South Korea ; Department of Pharmacology and Pharmacy and State Key Laboratory for Pharmaceutical Biotechnology, Li Ka Shing Faculty of Medicine, University of Hong Kong, Hong Kong, Special Administrative Region, China.

出版信息

Int J Nanomedicine. 2014 May 21;9:2557-66. doi: 10.2147/IJN.S56578. eCollection 2014.

Abstract

BACKGROUND AND PURPOSE

Cinnamaldehyde, a major component of cinnamon, induces the generation of reactive oxygen species and exerts vasodilator and anticancer effects, but its short half-life limits its clinical use. The present experiments were designed to compare the acute relaxing properties of cinnamaldehyde with those of self-assembling polymer micelles either loaded with cinnamaldehyde or consisting of a polymeric prodrug [poly(cinnamaldehyde)] that incorporates the compound in its backbone.

METHODS

Rings of porcine coronary arteries were contracted with the thromboxane A2 receptor agonist U46619 or 40 mM KCl, and changes in isometric tension were recorded.

RESULTS

Cinnamaldehyde induced concentration-dependent but endothelium-independent, nitric oxide synthase (NOS)-independent, cyclooxygenase-independent, soluble guanylyl cyclase (sGC)-independent, calcium-activated potassium-independent, and TRPA1 channel-independent relaxations. Cinnamaldehyde also inhibited the contractions induced by 40 mM KCl Ca(2+) reintroduction in 40 mM KCl Ca(2+)-free solution or by the Ca(2+) channel opener Bay K8644. Cinnamaldehyde-loaded control micelles induced complete, partly endothelium-dependent relaxations sensitive to catalase and inhibitors of NOS or sGC, but not cyclooxygenase or TRPA1, channels. Cinnamaldehyde-loaded micelles also inhibited contractions induced by 40 mM KCl Ca(2+) reintroduction or Bay K8644. Poly(cinnamaldehyde) micelles induced only partial, endothelium-dependent relaxations that were reduced by inhibitors of NOS or sGC and by catalase and the antioxidant tiron, but not by indomethacin or TRPA1 channel blockers.

CONCLUSION

The present findings demonstrate that cinnamaldehyde-loaded and poly(cinnamaldehyde) micelles possess vasodilator properties, but that the mechanism underlying the relaxation that they cause differs from that of cinnamaldehyde, and thus could be used both to relieve coronary vasospasm and for therapeutic drug delivery.

摘要

背景与目的

肉桂醛是肉桂的主要成分,可诱导活性氧的产生,并发挥血管舒张和抗癌作用,但其半衰期较短限制了其临床应用。本实验旨在比较肉桂醛与负载肉桂醛的自组装聚合物胶束或由在主链中包含该化合物的聚合物前药[聚(肉桂醛)]组成的聚合物胶束的急性舒张特性。

方法

用血栓素A2受体激动剂U46619或40 mM KCl使猪冠状动脉环收缩,并记录等长张力的变化。

结果

肉桂醛诱导浓度依赖性但不依赖内皮、不依赖一氧化氮合酶(NOS)、不依赖环氧化酶、不依赖可溶性鸟苷酸环化酶(sGC)、不依赖钙激活钾通道和不依赖TRPA1通道的舒张。肉桂醛还抑制由40 mM KCl在无Ca(2+)溶液中重新引入Ca(2+)或由Ca(2+)通道开放剂Bay K8644诱导的收缩。负载肉桂醛的对照胶束诱导完全的、部分依赖内皮的舒张,对过氧化氢酶以及NOS或sGC的抑制剂敏感,但对环氧化酶或TRPA1通道不敏感。负载肉桂醛的胶束也抑制由40 mM KCl重新引入Ca(2+)或Bay K8644诱导的收缩。聚(肉桂醛)胶束仅诱导部分依赖内皮的舒张,NOS或sGC的抑制剂、过氧化氢酶和抗氧化剂钛铁试剂可使其减弱,但吲哚美辛或TRPA1通道阻滞剂不能。

结论

本研究结果表明,负载肉桂醛的胶束和聚(肉桂醛)胶束具有血管舒张特性,但它们引起舒张的机制与肉桂醛不同,因此可用于缓解冠状动脉痉挛和治疗性药物递送。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed15/4039418/b76b2cd2244a/ijn-9-2557Fig1.jpg

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