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Insight into the mechanism of ferroptosis inhibition by ferrostatin-1

机译:深入研究ferrostatin-1抑制肥大症的机制

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摘要

Ferroptosis is a form of cell death primed by iron and lipid hydroperoxides and prevented by GPx4. Ferrostatin-1 (fer-1) inhibits ferroptosis much more efficiently than phenolic antioxidants. Previous studies on the antioxidant efficiency of fer-1 adopted kinetic tests where a diazo compound generates the hydroperoxyl radical scavenged by the antioxidant. However, this reaction, accounting for a chain breaking effect, is only minimally useful for the description of the inhibition of ferrous iron and lipid hydroperoxide dependent peroxidation. Scavenging lipid hydroperoxyl radicals, indeed, generates lipid hydroperoxides from which ferrous iron initiates a new peroxidative chain reaction. We show that when fer-1 inhibits peroxidation, initiated by iron and traces of lipid hydroperoxides in liposomes, the pattern of oxidized species produced from traces of pre-existing hydroperoxides is practically identical to that observed following exhaustive peroxidation in the absence of the antioxidant. This supported the notion that the anti-ferroptotic activity of fer-1 is actually due to the scavenging of initiating alkoxyl radicals produced, together with other rearrangement products, by ferrous iron from lipid hydroperoxides. Notably, fer-1 is not consumed while inhibiting iron dependent lipid peroxidation. The emerging concept is that it is ferrous iron itself that reduces fer-1 radical. This was supported by electroanalytical evidence that fer-1 forms a complex with iron and further confirmed in cells by fluorescence of calcein, indicating a decrease of labile iron in the presence of fer-1. The notion of such as pseudo-catalytic cycle of the ferrostatin-iron complex was also investigated by means of quantum mechanics calculations, which confirmed the reduction of an alkoxyl radical model by fer-1 and the reduction of fer-1 radical by ferrous iron. In summary, GPx4 and fer-1 in the presence of ferrous iron, produces, by distinct mechanism, the most relevant anti-ferroptotic effect, i.e the disappearance of initiating lipid hydroperoxides.
机译:Ferroptosis是一种由铁和脂质氢过氧化物引发的细胞死亡形式,可通过GPx4预防。 Ferrostatin-1(fer-1)比酚类抗氧化剂更有效地抑制肥大症。以前对fer-1的抗氧化效率的研究通过了动力学测试,其中重氮化合物生成了被抗氧化剂清除的氢过氧自由基。然而,考虑到链断裂作用的该反应仅对于描述抑制亚铁和脂质氢过氧化物依赖的过氧化作用最小有用。实际上,清除脂质氢过氧化物自由基会产生脂质氢过氧化物,亚铁从中引发新的过氧化链反应。我们显示,当fer-1抑制铁和脂质体中痕量脂质氢过氧化物引发的过氧化时,由痕量既存氢过氧化物产生的氧化物种的模式实际上与在不存在抗氧化剂的情况下彻底过氧化后观察到的模式相同。这支持了fer-1的抗铁蛋白活性实际上是由于清除了脂质过氧化氢生成的亚铁生成的引发烷氧基自由基以及其他重排产物的观点。值得注意的是,fer-1在抑制铁依赖性脂质过氧化的同时并未消耗。新兴的概念是,二价铁本身可以降低fer-1自由基。电分析证据支持了这一点,即fer-1与铁形成复合物,并通过钙黄绿素的荧光在细胞中进一步证实,表明存在fer-1时不稳定的铁减少。还通过量子力学计算研究了铁抑素-铁络合物的假催化循环等概念,这证实了fer-1还原了烷氧基自由基模型,亚铁还原了fer-1自由基。总之,在亚铁存在下,GPx4和fer-1通过不同的机理产生最相关的抗铁促作用,即引发脂质氢过氧化物的消失。

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