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首页> 外文期刊>Pharmacological reports: PR >Study of the cytotoxicity and antioxidant capacity of N/OFQ(1-13)NH2 and its structural analogues.
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Study of the cytotoxicity and antioxidant capacity of N/OFQ(1-13)NH2 and its structural analogues.

机译:N / OFQ(1-13)NH2及其结构类似物的细胞毒性和抗氧化能力的研究。

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The effect of side-chain shortening of N/OFQ(1-13)NH(2) at position 9 ([Orn(9)]N/OFQ(1-13)NH(2), [Dab(9)]N/OFQ(1-13)NH(2), [Dap(9)]N/OFQ(1-13)NH(2)) was studied regarding potential toxicity and antioxidant capacity. Staurosporine- and H2O2-induced damage of SH-SY5Y neuroblastoma cells was not changed in the presence of N/OFQ(1-13)NH(2) and [Orn(9)]N/OFQ(1-13)NH(2), but was strongly enhanced in the presence of [Dab(9)]N/OFQ(1-13)NH(2) and [Dap(9)]N/OFQ(1-13)NH(2). Moreover, treatment of cells with the latter two analogues alone led to cell injury. Neuropeptide-dependent differences in the viability of SH-SY5Y cells were also observed, i.e., a cytoprotective effect was observed only in the presence of N/OFQ(1-13)NH(2) and [Orn(9)]N/OFQ(1-13)NH(2). Compared to [Dab(9)]N/OFQ(1-13)NH(2) and [Dap(9)]N/OFQ(1-13)NH(2), the effects of N/OFQ(1-13)NH(2) and [Orn(9)]N/OFQ(1-13)NH(2) were more beneficial in systems generating free oxygen radicals (O(2)(-) and .OH), as well as on the antioxidant status of rat brain and liver. Taken together, our findings show that N/OFQ(1-13)NH(2) and its structural analogue [Orn(9)]N/OFQ(1-13)NH(2) possess more favorable profiles than the other two nociceptin (N/OFQ) analogues. The present results suggest that shortening of the side-chain of N/OFQ(1-13)NH(2) might increase cell damage and reduce the viability of SH-SY5Y neuroblastoma cells. Moreover, such alterations may lead to changes in free-oxygen generating systems and in antioxidant status in animal tissues.
机译:N / OFQ(1-13)NH(2)在位置9([Orn(9)] N / OFQ(1-13)NH(2),[Dab(9)] N的侧链缩短的影响/ OFQ(1-13)NH(2),[Dap(9)] N / OFQ(1-13)NH(2))研究了潜在的毒性和抗氧化能力。在N / OFQ(1-13)NH(2)和[Orn(9)] N / OFQ(1-13)NH(2)的存在下,星形孢菌素和H2O2诱导的SH-SY5Y神经母细胞瘤细胞的损伤未发生改变),但在[Dab(9)] N / OFQ(1-13)NH(2)和[Dap(9)] N / OFQ(1-13)NH(2)的存在下得到了增强。此外,仅用后两种类似物处理细胞会导致细胞损伤。还观察到了SH-SY5Y细胞活力的神经肽依赖性差异,即,仅在N / OFQ(1-13)NH(2)和[Orn(9)] N / OFQ存在的情况下才观察到细胞保护作用(1-13)NH(2)。与[Dab(9)] N / OFQ(1-13)NH(2)和[Dap(9)] N / OFQ(1-13)NH(2)相比,N / OFQ(1-13)的影响)NH(2)和[Orn(9)] N / OFQ(1-13)NH(2)在产生游离氧自由基(O(2)(-)和.OH)的系统中以及大鼠脑和肝脏的抗氧化状态。两者合计,我们的研究结果表明,N / OFQ(1-13)NH(2)及其结构类似物[Orn(9)] N / OFQ(1-13)NH(2)具有比其他两种伤害感受素更有利的特性(N / OFQ)类似物。目前的结果表明,N / OFQ(1-13)NH(2)侧链的缩短可能会增加细胞损伤并降低SH-SY5Y神经母细胞瘤细胞的活力。而且,这种改变可能导致动物组织中游离氧产生系统和抗氧化剂状态的改变。

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