金纳米颗粒修饰大鼠主动脉一氧化氮释放和血管舒张。

Journal of Chemical Biology Pub Date : 2014-03-23 eCollection Date: 2014-04-01 DOI:10.1007/s12154-014-0109-x
Bruno R Silva, Claure N Lunardi, Koiti Araki, Juliana C Biazzotto, Roberto S Da Silva, Lusiane M Bendhack
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引用次数: 13

摘要

一氧化氮(NO)在多种生物功能中发挥着重要作用。最近,有报道称,通过与金纳米颗粒(AuNPs)的偶联,可以改变NO供体的NO释放谱。因此,AuNPs被合成并暴露于NO供体钌配合物Cis-[Ru(bpy)2(NO)(4PySH)].(PF6)3称为(Ru-4PySH)-形成AuNPs-{Ru-4PySH}n簇。我们的研究结果表明,AuNPs不会改变Ru-4PySH诱导的血管舒张的最大效应(ME)和效价(pD2)。两种复合物均以浓度依赖的方式诱导类似的血管松弛。而配合物AuNPs-{Ru-4PySH}n的NO释放量低于Ru-4PySH。这两种复合物都只释放NO(0),但AuNPs-{Ru-4PySH}n在细胞外介质中持续释放NO。在时间上,Ru-4Py-SH诱导血管最大舒张的速度快于AuNPs-{Ru-4Py-SH}n。抑制可溶性胍基环化酶(sGC)可消除Ru-4PYSH诱导的血管舒张,而AuNPs-{Ru-4PYSH}n则不能。非选择性钾(K(+))通道阻滞剂TEA对AuNPs-{Ru-4PySH}n诱导的血管舒张无影响,但降低了对Ru-4PySH的效价。综上所述,我们的研究结果表明,由于AuNPs-{Ru-4PySH}n簇的形成,AuNPs可以降低NO供体Ru-4PySH的通透性。AuNPs减少NO的释放,但不影响NO供体诱导的血管舒张作用。Ru-4PySH通过激活sGC和K(+)通道诱导血管舒张,而AuNPs-{Ru-4PySH}n主要激活sGC。综上所述,这些发现代表了一种新的控制NO释放的药理策略,可以激活选择性的生物靶点。
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Gold nanoparticle modifies nitric oxide release and vasodilation in rat aorta.

Nitric oxide (NO) plays an important role on several biological functions. Recently, it has been reported the possibility of modifying the NO release profile from the NO donors through its coupling to gold nanoparticles (AuNPs). Thus, AuNPs were synthesized and they were exposed to the NO donor ruthenium complex Cis-[Ru(bpy)2(NO)(4PySH)].(PF6)3 termed (Ru-4PySH)-forming AuNPs-{Ru-4PySH}n cluster. Our results indicate that AuNPs do not modify the maximum effect (ME) and potency (pD2) in the vasodilation induced by Ru-4PySH. Both complexes induce similar vascular relaxation in concentration-dependent way. However, the NO released from the complex AuNPs-{Ru-4PySH}n is lower than Ru-4PySH. Both complexes release only NO(0) specie, but AuNPs-{Ru-4PySH}n releases NO in constant way and exclusively in the extracellular medium. In time-course, Ru-4Py-SH was faster than AuNPs-{Ru-4PySH}n in inducing the maximum vasodilation. Inhibition of soluble guanylyl cyclase (sGC) abolished the vasodilation induced by Ru-4PYSH, but not by AuNPs-{Ru-4PySH}n. Non-selective potassium (K(+)) channel blocker TEA had no effect on the vasodilation induced by AuNPs-{Ru-4PySH}n, but it reduced the potency to Ru-4PySH. In conclusion, our results suggest that AuNPs can reduce the permeability of NO donor Ru-4PySH due to AuNPs-{Ru-4PySH}n cluster formation. AuNPs reduce NO release, but they do not impair the vasodilator effect induced by the NO donor. Ru-4PySH induces vasodilation by sGC and K(+) channels activation, while AuNPs-{Ru-4PySH}n activates mainly sGC. Taken together, these findings represent a new pharmacological strategy to control the NO release which could activate selective biological targets.

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