铜配合物[cu (pta)4] bf4和[Сu (acac)2]对放射性同位素锝辐照大鼠的影响

IF 0.6
Anahit Karapetyan, Vahan Grigoryan, Carlo Santini, Maura Pellei, Ashot Dallakyan
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引用次数: 0

摘要

现代放射生物学的首要任务之一是寻找新的、有效的辐射防护化合物。在这一领域,具有高抗氧化活性的金属配合物受到特别关注。为了研究两种不同氧化态的铜配合物[Cu(PTA)4]BF4和[Сu(acac)2]对受辐射生物体可能具有的有利辐射防护作用,我们对4组实验动物的细胞遗传学参数进行了研究。第一组为完整动物;II组为暴露于锝(Tc)放射性同位素的动物,腹腔注射活性为4.8 mCi的同位素,体积为2 mL -“纯照射”;第三组动物在给予Tc同位素(“照射+ [Cu(PTA)4]BF4”)前1小时,腹腔注射铜(I)配合物[Cu(PTA)4]BF4,剂量为50 mg/kg,体积为2 mL。IV组包括在辐照前接受铜(II)配合物[Сu(acac)2]的动物。我们研究了存活率和细胞遗传学参数,测定了有丝分裂指数、染色体畸变和多倍体细胞的百分比。II组生存率为40%。完整组及III、IV组成活率均为100%。生存的动态用回归方程来描述,通过外推,可以确定长期实验中生存百分比的变化,并预测实验的进一步结果。在细胞遗传学指标方面,完整动物和辐照动物的3项指标均存在显著差异,即这些指标可视为锝同位素暴露的标志。在增殖活性方面,与第三组和第四组相比,在辐照动物中发现了显着差异,这表明两种铜化合物都具有辐射防护性能。对于[Cu(acac)2],在IV组使用时,与其他组相比,我们在所有研究的细胞遗传学参数上都与“纯照射”组有显著差异。发现铜配合物[Cu(PTA)4]BF4和[Cu(acac)2]具有预防或减轻电离辐射对动物身体影响的能力。基于细胞遗传学参数,可以得出结论,这些化合物促进了辐照动物骨髓细胞的修复过程。细胞遗传学参数的多元回归分析证实了铜(II)配合物[Cu(acac)2]的最高效率。研究结果表明,需要继续在寻找对辐射损伤有治疗作用的药物的方向上工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INFLUENCE OF COPPER COMPLEXES [CU(PTA)4]BF4 AND [СU(ACAC)2] ON RATS IRRADIATED WITH RADIOISOTOPE TECHNETIUM
One of the priority tasks of modern radiobiology is the search for new, effective radioprotective compounds. In this area, metal complexes with high antioxidant activity are of particular interest. In order to study the possible favorable radioprotective effect of two copper complexes in different oxidation states, [Cu(PTA)4]BF4 and [Сu(acac)2], on the irradiated organism, we studied cytogenetic parameters in 4 groups of experimental animals. Group I included intact animals; Group II consisted of animals exposed to technetium (Tc) radioisotope, which were intraperitoneally injected with an isotope with an activity of 4.8 mCi in a volume of 2 mL - "pure irradiation"; Group III consisted of animals that were intraperitoneally injected with the copper(I) complex [Cu(PTA)4]BF4 at a dose of 50 mg/kg in a volume of 2 mL one hour before the administration of the Tc isotope (“irradiation + [Cu(PTA)4]BF4”). Group IV included animals that received the copper(II) complex [Сu(acac)2] before irradiation. We studied survival and cytogenetic parameters, determined the mitotic index, chromosomal aberrations and the percentage of polyploid cells. The survival rate of group II was 40%. In the group of intact animals, as well as in groups III and IV the survival rate was 100%. The dynamics of survival was described by regression equations, which make it possible, by means of extrapolation, to determine the change in the percentage of survival in the long term of the experiment and to predict the further outcome of the experiment. Investigating cytogenetic indicators, for all 3 indicators, a significant difference was found between intact and irradiated animals, i.e. these indicators can be considered as markers of technetium isotope exposure. In terms of proliferative activity, a significant difference was found in irradiated animals compared with groups III and IV, which indicates the radioprotective property of both the copper compounds. As for the [Cu(acac)2], when it was used in group IV and compared with others, we obtained a pronounced significant difference from the group with “pure irradiation” in all studied cytogenetic parameters. It was found that the copper complexes [Cu(PTA)4]BF4 and [Cu(acac)2] have the ability to prevent or mitigate the effect of ionizing radiation on an animal's body. Based on cytogenetic parameters, it can be concluded that these compounds promote reparative processes in the bone marrow cells of irradiated animals. Multiregression analysis of cytogenetic parameters confirmed the highest efficiency of the copper (II) complex [Cu(acac)2]. The results of the research indicate the need to continue work in the direction of searching for agents that have a therapeutic effect in radiation injuries.
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来源期刊
Archiv EuroMedica
Archiv EuroMedica MEDICINE, GENERAL & INTERNAL-
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