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六种肟类化合物对大鼠血浆和脑组织中急性抗胆碱酯酶抑制剂诱导的氧化应激的影响。

Effect of six oximes on acutely anticholinesterase inhibitor-induced oxidative stress in rat plasma and brain.

机构信息

Department of Toxicology "Akademik Danilo Soldatović", Faculty of Pharmacy, University of Belgrade, Vojvode Stepe 450, Belgrade, 11221, Serbia.

Department of Medical Biochemistry, Faculty of Pharmacy, University of Belgrade, Vojvode Stepe 450, Belgrade, 11221, Serbia.

出版信息

Arch Toxicol. 2018 Feb;92(2):745-757. doi: 10.1007/s00204-017-2101-z. Epub 2017 Nov 2.

Abstract

Beside the key inhibition of acetylcholinesterase (AChE), involvement of oxidative stress in organophosphate (OP)-induced toxicity has been supported by experimental and human studies. On the other hand, according to our best knowledge, possible antioxidant properties of oximes, the only causal antidotes to OP-inhibited AChE, have been examined only by a few studies. Thus, we have determined the effect of four conventional (obidoxime, trimedoxime, pralidoxime, asoxime) and two promising experimental oximes (K027, K203) on dichlorvos (DDVP)-induced oxidative changes in vivo. Wistar rats (5/group) were treated with oxime (5% LD i.m) immediately after DDVP challenge (75% LD s.c). Oxidative stress biomarkers were determined in plasma and brain 60 min after the treatment: prooxidative-superoxide anion (O) and total oxidative status (TOS); antioxidative-superoxide dismutase (SOD), total thiol (SH) groups, total antioxidant status (TAS) and paraoxonase (PON1); tissue oxidative stress burden-prooxidative-antioxidative balance (PAB) and oxidative stress index (OSI); oxidative tissue damage-malondialdehyde (MDA) and advanced oxidation protein products (AOPP). All oximes were able to attenuate DDVP-induced oxidative stress in rat plasma and brain. Changes of determined parameters in brain were not as prominent as it was seen in plasma. Based on OSI, better abilities of oxime K027, K203 and obidoxime to maintain DDVP-induced oxidative stress in rat brain were shown as compared to trimedoxime, pralidoxime and asoxime. Oximes can influence the complex in vivo redox processes that might contribute to their overall therapeutic efficacy. Further research is needed to understand the underlying molecular mechanisms involved in this phenomenon.

摘要

除了对乙酰胆碱酯酶 (AChE) 的关键抑制作用外,实验和人类研究也支持有机磷 (OP) 诱导的毒性与氧化应激有关。另一方面,据我们所知,肟类化合物(唯一能解除 OP 抑制 AChE 的因果解毒剂)的可能抗氧化特性仅通过少数研究进行了检查。因此,我们确定了四种常规肟类化合物(Obidoxime、Trimedoxime、Pralidoxime、Asoxime)和两种有前途的实验性肟类化合物(K027、K203)对二氯氧磷(DDVP)体内诱导的氧化变化的影响。Wistar 大鼠(每组 5 只)在 DDVP 挑战后(75% LD sc)立即用肟类化合物(5% LD im)治疗。治疗后 60 分钟测定血浆和脑内氧化应激生物标志物:促氧化剂-超氧阴离子 (O) 和总氧化状态 (TOS);抗氧化剂-超氧化物歧化酶 (SOD)、总巯基 (SH) 组、总抗氧化状态 (TAS) 和对氧磷酶 1 (PON1);组织氧化应激负担-促氧化剂-抗氧化剂平衡 (PAB) 和氧化应激指数 (OSI);氧化组织损伤-丙二醛 (MDA) 和高级氧化蛋白产物 (AOPP)。所有肟类化合物都能减轻 DDVP 诱导的大鼠血浆和脑内氧化应激。与血浆相比,脑内确定参数的变化并不明显。根据 OSI,与 Trimedoxime、Pralidoxime 和 Asoxime 相比,肟类化合物 K027、K203 和 Obidoxime 更能维持 DDVP 诱导的大鼠脑内氧化应激,表明它们具有更好的能力。肟类化合物可以影响复杂的体内氧化还原过程,这可能有助于它们的整体治疗效果。需要进一步研究以了解涉及这种现象的潜在分子机制。

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