Investigation of The Binding Potential of Gadobutrol, Iohexol and Fluorescein Radiocontrast Agents to the TSH Receptor

Deniz Karataş, Ataman Gonel
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Abstract

Radiopaque agents can affect the human body in different ways. The resulting reactions are simple allergic and anaphylactic reactions. If the potential of these agents to bind to different receptors is determined beforehand, precautions can be taken against the side effects that may occur in the future. The aim of this study is to investigate the binding potential of the active substances Fluorescein, Gadobutrol, Iohexol, which are frequently used in routine, to the TSH receptor with molecular docking. The conformational analysis of 3 drugs on TSH receptor surfaces was performed by molecular docking using Autodocktools program. First, the atomic center of the receptor was determined at the grid stage, and the XYZ center of the grid box was set to 9.524, 48.24 and 25.257 A, respectively, and the space gap was set to 0.5. Thus, a box was created in which the ligand can easily scan the entire surface. In the docking phase, a parameter file has been prepared and run for 100 conformation and 300 population size, accompanied by Lamarckian and Genetic Algorithms. The binding energies of fluorescein, gadobutrol and iohexol strengthen the possibility of spontaneous binding. However, when the inhibition concentrations are evaluated, it shows that fluorescein can more easily bind to the TSH receptor. Gadobutrol and iohexol are unlikely to reach these concentrations in the blood. This in vitro study demonstrates the potential for spontaneous binding of fluorescein, gadobutrol, and iohexol to the TSH receptor. Even if radiopaque drugs are used for diagnostic purposes, they may cause side effects by interacting with different receptors in the human body. Experimental studies are needed to confirm this possibility.
加多比特、碘己醇和荧光素造影剂与TSH受体结合电位的研究
不透射线的药剂会以不同的方式影响人体。由此产生的反应是单纯的过敏反应和过敏性反应。如果事先确定了这些药物与不同受体结合的潜力,就可以采取预防措施,防止将来可能发生的副作用。本研究的目的是研究常规常用的活性物质荧光素、加多比特、碘己醇与TSH受体分子对接的结合电位。利用Autodocktools程序对3种药物在TSH受体表面的构象进行分子对接分析。首先,在网格阶段确定受体的原子中心,将网格框的XYZ中心分别设置为9.524、48.24和25.257 A,空间间隙设置为0.5。这样,就形成了一个盒子,在这个盒子里配体可以很容易地扫描整个表面。在对接阶段,编制了参数文件,并运行了100个构象和300个种群大小,并配有拉马克算法和遗传算法。荧光素、加多布鲁和碘己醇的结合能增强了自发结合的可能性。然而,当评估抑制浓度时,它表明荧光素更容易与TSH受体结合。加多比特和碘己醇在血液中不太可能达到这些浓度。这项体外研究证明了荧光素、加多布鲁和碘己醇与TSH受体自发结合的潜力。即使不透射线的药物被用于诊断目的,它们也可能通过与人体内不同的受体相互作用而产生副作用。需要实验研究来证实这种可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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