利用艾姆斯/沙门氏菌试验系统评估吡唑并吡啶衍生物对中子和伽马辐射的保护特性和遗传毒性潜力。

Bünyamin Aygün, Burak Alaylar, Kadir Turhan, Mehmet Karadayı, Esra Cinan, Zuhal Turgut, Tansu Sezer, Vedat Sola, Taha Yasin Koc, Abdulhalik Karabulut
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引用次数: 0

摘要

目的:核应用正越来越多地应用于各个领域,因此有必要研究如何防止辐射危害及其影响。本研究合成了五种不同化学结构的吡唑 [3,4-b] 吡啶衍生物。测定了这些样品的伽马和中子辐射防护能力,并证明了它们作为辐射防护药物成分的潜在用途:材料和方法:对伽马辐射吸收参数进行了理论和实验计算。使用蒙特卡罗模拟 Geant4 代码计算了快中子(4.5 MeV 能量辐射)的重要衰减参数。此外,还测量了每个样品的实验剂量率,并与石蜡和高密度聚乙烯(一种有机物质)的剂量率进行了比较。此外,艾姆斯/沙门氏菌测试系统旨在检测吡唑并吡啶衍生物的遗传毒性特征:所有结果都表明,每种样品都具有伽马射线和中子辐射衰减能力。结果表明,在所有样品中,样品 PPC4(C20H14BrN5)的伽马辐射衰减能力最强,而样品 PPC2(C22H20N6)的中子辐射阻断能力极佳。利用艾姆斯/沙门氏菌试验检测了吡唑并[3,4-b] 吡啶衍生物的遗传毒性特性,结果表明这些物质在试验剂量达到 5 mM 时不会产生遗传毒性效应:所有结果都表明,所有 PPC(吡唑并[3,4-b] 吡啶衍生物)样品都不具有毒性作用,可作为活性物质用于开发具有伽马射线和中子辐射防护特性的药物或膏霜。
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Evaluation of the protective properties and genotoxic potential of pyrazolo pyridine derivatives against neutron and gamma radiation using the Ames/Salmonella test system.

Purpose: Nuclear applications are being increasingly used in various fields, necessitating studies to protect from radiation hazards and their effects. In this study, five different chemical structures of pyrazolo [3,4-b] pyridine derivatives were synthesized. The gamma and neutron radiation protective abilities of these samples were determined and demonstrated their potential use as ingredients in radioprotective drugs.

Material and methods: Gamma radiation absorption parameters were calculated both theoretical and experimental. Important attenuation parameters for fast neutrons (4.5 MeV energy radiation) were figured out using the Monte Carlo simulation Geant4 code. Additionally, experimental dose rates were measured for each sample and compared to those of Paraffin and high-density polyethylene, an organic substance. Besides, Ames/Salmonella test system was aimed to detecting genotoxicity features of pyrazolo pyridine derivatives.

Results: All results demonstrated that each sample possesses both gamma and neutron radiation attenuation capabilities. It was determined that sample PPC4 (C20H14BrN5) exhibited the highest gamma radiation attenuation capacity among all samples, while sample PPC2 (C22H20N6) displayed an excellent neutron stopping capacity. The genotoxic properties of pyrazolo[3,4-b] pyridine derivatives were examined using the Ames/Salmonella test, and as a result, it was determined that these substances did not exhibit genotoxic effects at test doses up to 5 mM.

Conclusion: All obtained results indicate that all PPC (pyrazolo[3,4-b] pyridine derivatives) samples do not possess a toxic effect, and they can be utilized as an active substance for the development of a drug or cream with protective properties against both gamma and neutron radiations.

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