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Can Medicinal Plants and Bioactive Compounds Combat Lipid Peroxidation Product 4-HNE-Induced Deleterious Effects?

机译:药用植物和生物活性化合物可以对抗脂质过氧化产物4-HNE诱导的有害作用吗?

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摘要

The toxic reactive aldehyde 4-hydroxynonenal (4-HNE) belongs to the advanced lipid peroxidation end products. Accumulation of 4-HNE and formation of 4-HNE adducts induced by redox imbalance participate in several cytotoxic processes, which contribute to the pathogenesis and progression of oxidative stress-related human disorders. Medicinal plants and bioactive natural compounds are suggested to be attractive sources of potential agents to mitigate oxidative stress, but little is known about the therapeutic potentials especially on combating 4-HNE-induced deleterious effects. Of note, some investigations clarify the attenuation of medicinal plants and bioactive compounds on 4-HNE-induced disturbances, but strong evidence is needed that these plants and compounds serve as potent agents in the prevention and treatment of disorders driven by 4-HNE. Therefore, this review highlights the pharmacological basis of these medicinal plants and bioactive compounds to combat 4-HNE-induced deleterious effects in oxidative stress-related disorders, such as neurotoxicity and neurological disorder, eye damage, cardiovascular injury, liver injury, and energy metabolism disorder. In addition, this review briefly discusses with special attention to the strategies for developing potential therapies by future applications of these medicinal plants and bioactive compounds, which will help biological and pharmacological scientists to explore the new vistas of medicinal plants in combating 4-HNE-induced deleterious effects.
机译:有毒的反应性醛4-羟基壬烯醛(4-HNE)属于高级脂质过氧化终产物。氧化还原失衡诱导的4-HNE积累和4-HNE加合物的形成参与了一些细胞毒性过程,这些过程促进了氧化应激相关人类疾病的发生和发展。药用植物和生物活性天然化合物被认为是减轻氧化应激的潜在物质的诱人来源,但对治疗潜力知之甚少,尤其是在对抗4-HNE诱导的有害作用方面。值得注意的是,一些研究澄清了药用植物和生物活性化合物对4-HNE引起的干扰的减弱作用,但需要有力的证据证明这些植物和化合物在预防和治疗4-HNE引起的疾病中起有效作用。因此,本综述着重介绍了这些药用植物和生物活性化合物的药理基础,以对抗4-HNE引起的氧化应激相关疾病(如神经毒性和神经系统疾病,眼部损伤,心血管损伤,肝损伤和能量代谢)的有害作用紊乱。此外,本文简要讨论了这些药用植物和生物活性化合物在未来的应用中开发潜在疗法的策略,这将有助于生物学和药理学家探索药用植物在对抗4-HNE诱导的新远景中的作用。有害影响。

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