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In Vitro Interaction of 5-Aminoorotic Acid and Its Gallium(III) Complex with Superoxide Radical Generated by Two Model Systems

机译:用两种模型系统产生5-氨基酸和其镓(III)复合物的体外相互作用由两种模型系统产生

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摘要

Increased levels of the superoxide radical are associated with oxidative damage to healthy tissues and with elimination of malignant cells in a living body. It is desirable that a chemotherapeutic combines pro-oxidant behavior around and inside tumors with antioxidant action near healthy cells. A complex consisting of a pro-oxidant cation and antioxidant ligands could be a potential anticancer agent. Ga(III) salts are known anticancer substances, and 5-aminoorotic acid (HAOA) is a ligand with antioxidant properties. The in vitro effects of HAOA and its complex with Ga(III) (gallium(III) 5-aminoorotate (GaAOA)) on the in vitro accumulation of superoxide and other free radicals were estimated. Model systems such as potassium superoxide (KO2), xanthine/xanthine oxidase (X/XO), and rat blood serum were utilized. Data suggested better antioxidant effect of GaAOA compared to HAOA. Evidently, all three ligands of GaAOA participated in the scavenging of superoxide. The effects in rat blood serum were more nuanced, considering the chemical and biochemical complexity of this model system. It was observed that the free-radical-scavenging action of both compounds investigated may be manifested via both hydrogen donation and electron transfer pathways. It was proposed that the radical-scavenging activities (RSAs) of HAOA and its complex with Ga(III) may be due to a complex process, depending on the concentration, and on the environment, nature, and size of the free radical. The electron transfer pathway was considered as more probable in comparison to hydrogen donation in the scavenging of superoxide by 5-aminoorotic acid and its gallium(III) complex.
机译:超氧化物自由基的水平增加与对健康组织的氧化损伤以及消除活体中的恶性细胞。期望化学治疗方法将促氧化剂行为与在健康细胞附近的抗氧化剂作用周围和肿瘤内部。由促氧化剂阳离子和抗氧化剂配体组成的复合物可以是潜在的抗癌剂。 Ga(III)盐是已知的抗癌物质,5-氨基酸(HAOA)是具有抗氧化性能的配体。估计对超氧化物和其他自由基的体外积累的Ga(III)(镓(III)(镓)(镓(III)5-氨基酸盐(GaaOA))的体外影响。使用超氧化钾(KO2),黄嘌呤/黄嘌呤氧化酶(X / XO)和大鼠血清等模型系统。数据表明Gaaoa与Haoa相比更好的抗氧化效果。显然,Gaaoa的所有三个配体都参与了超氧化物的清除。考虑到该模型系统的化学和生化复杂性,大鼠血液中的效果更细致。观察到,所研究的两种化合物的自由基清除作用可通过氢捐赠和电子转移途径表现出。提出,HaOA的自由基清除活性(RSAs)及其与Ga(III)的复合物可能是由于复杂的过程,这取决于浓度,以及自由基的环境,性质和大小。与用5-氨氧化物的清除氢化合物和其镓(III)复合物相比,电子转移途径被认为是更可能的。

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