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影响富勒烯衍生物结合活性的结构特征的全面化学信息学分析

A Comprehensive Cheminformatics Analysis of Structural Features Affecting the Binding Activity of Fullerene Derivatives.

作者信息

Fjodorova Natalja, Novič Marjana, Venko Katja, Rasulev Bakhtiyor

机构信息

National Institute of Chemistry, SI-1000 Ljubljana, Slovenia.

Department of Coatings and Polymeric Materials, North Dakota State University, Fargo, ND 58102, USA.

出版信息

Nanomaterials (Basel). 2020 Jan 2;10(1):90. doi: 10.3390/nano10010090.

Abstract

Nanostructures like fullerene derivatives (FDs) belong to a new family of nano-sized organic compounds. Fullerenes have found a widespread application in material science, pharmaceutical, biomedical, and medical fields. This fact caused the importance of the study of pharmacological as well as toxicological properties of this relatively new family of chemicals. In this work, a large set of 169 FDs and their binding activity to 1117 proteins was investigated. The structure-based descriptors widely used in drug design (so-called drug-like descriptors) were applied to understand cheminformatics characteristics related to the binding activity of fullerene nanostructures. Investigation of applied descriptors demonstrated that polarizability, topological diameter, and rotatable bonds play the most significant role in the binding activity of FDs. Various cheminformatics methods, including the counter propagation artificial neural network (CPANN) and Kohonen network as visualization tool, were applied. The results of this study can be applied to compose the priority list for testing in risk assessment related to the toxicological properties of FDs. The pharmacologist can filter the data from the heat map to view all possible side effects for selected FDs.

摘要

像富勒烯衍生物(FDs)这样的纳米结构属于一类新型的纳米级有机化合物。富勒烯在材料科学、制药、生物医学和医学领域有着广泛的应用。这一事实凸显了研究这类相对新型化学物质的药理学和毒理学特性的重要性。在这项工作中,研究了一大组169种富勒烯衍生物及其与1117种蛋白质的结合活性。应用了药物设计中广泛使用的基于结构的描述符(即所谓的类药物描述符)来理解与富勒烯纳米结构结合活性相关的化学信息学特征。对所应用描述符的研究表明,极化率、拓扑直径和可旋转键在富勒烯衍生物的结合活性中起着最重要的作用。应用了各种化学信息学方法,包括反向传播人工神经网络(CPANN)和作为可视化工具的科霍宁网络。这项研究的结果可用于编制与富勒烯衍生物毒理学特性相关的风险评估测试优先级列表。药理学家可以从热图中筛选数据,以查看所选富勒烯衍生物的所有可能副作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f3f/7023229/766c7debbfd4/nanomaterials-10-00090-g001.jpg

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