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Inhibition of DMBA Induced Rat Mammary Duct Damage by Novel Synthetic Organoselenium Compounds

机译:新型合成有机硒化合物对DMBA诱导的大鼠乳腺导管损伤的抑制作用

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The balance between prooxidants and antioxidants is crucial to the survival and functioning of aerobic organisms. Partially reduced derivatives of oxygen, which are produced in aerobic organisms as part of normal physiological and metabolic processes, are toxic species, oxidizing numerous biomolecules, which initiate tissue injury and cell death. DMBA (7,12-dimethylbenz[a]anthracene) is a polycyclic aromatic hydrocarbon (PAH) known to cause tumors in rats. DMBA is known to generate DNA-reactive species, which may enhance oxidative stress in cells, during its metabolism. Besides the formation of DNA adducts, oxidative products derived from mutagen metabolism, such as DMBA, might impair vital cellular functions by damaging proteins and lipid membranes. Synthetic organoselenium compounds inhibit the initiation phase of carcinogenesis by inhibiting DMBA-DNA adduct formation in the target organ in vivo. Because of the health problems induced by many environmental pollutants, many efforts have been undertaken to evaluate the relative antioxidant potential of selenium and synthetic organoselenium compounds. We undertook the present study to evaluate the chemopreventive potential of the novel synthetic organoselenium compounds (1-isopropyl-3-methylbenzimidazole-2-selenone (Sel) and 1,3-di-p-methoxybenzylpyrimidine-2-selenone (Sell)) in the well-established DMBA-treated rat model by monitoring the extent of lipid peroxidation and mammary duct damage. In this study, adult female Wistar rats were treated with DMBA and the novel organoselenium compounds (Sel and Sell) in determined doses. In DMBA-treated rats, the effects of the organoselenium compounds on malondialdehyde (MDA) levels and histological changes in the rat mammary lactiferous duct were studied. The ability of the organoselenium compounds to prevent oxidative damage induced by DMBA in rat mammary ducts was demonstrated. Protection against lipid peroxidation measured as MDA in the Sel and Sell treated groups was provided by the novel synthesized organoselenium compounds. Sel and Sell both provided chemoprevention against DMBA-induced oxidative stress in the rat mammary duct.
机译:前氧化剂和抗氧化剂之间的平衡对于好氧生物的生存和功能至关重要。在正常的生理和代谢过程中,有氧生物中产生的部分还原的氧衍生物是有毒物质,会氧化大量生物分子,从而引发组织损伤和细胞死亡。 DMBA(7,12-二甲基苯并[a]蒽)是一种多环芳烃(PAH),已知会在大鼠中引起肿瘤。已知DMBA会在其新陈代谢过程中产生可与DNA发生反应的物种,从而增强细胞中的氧化应激。除了形成DNA加合物以外,源自诱变代谢的氧化产物(如DMBA)可能会通过破坏蛋白质和脂质膜来损害细胞的重要功能。合成的有机硒化合物通过抑制体内靶器官中的DMBA-DNA加合物形成来抑制癌变的起始阶段。由于许多环境污染物引起的健康问题,因此已经进行了许多努力来评估硒和合成有机硒化合物的相对抗氧化能力。我们进行了本研究,以评估新型合成有机硒化合物(1-异丙基-3-甲基苯并咪唑-2-硒酮(Sel)和1,3-二-对甲氧基苄基嘧啶-2-硒酮(出售))的化学预防潜力。通过监测脂质过氧化程度和乳腺导管损伤程度,建立了成熟的DMBA处理的大鼠模型。在这项研究中,成年雌性Wistar大鼠用DMBA和新型有机硒化合物(Sel and Sell)以确定的剂量治疗。在DMBA处理的大鼠中,研究了有机硒化合物对大鼠乳腺乳腺导管中丙二醛(MDA)水平和组织学变化的影响。证明了有机硒化合物防止DMBA诱导的大鼠乳腺导管氧化损伤的能力。通过合成的新型有机硒化合物,提供了针对在Sel和Sell处理的组中以MDA衡量的脂质过氧化保护。 Sel和Sell均提供了针对DMBA诱导的大鼠乳腺氧化应激的化学预防。

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