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用于树枝状大分子和树枝状分子结构设计的实用计算工具包。

Practical computational toolkits for dendrimers and dendrons structure design.

作者信息

Martinho Nuno, Silva Liana C, Florindo Helena F, Brocchini Steve, Barata Teresa, Zloh Mire

机构信息

Research Institute for Medicines (iMed.ULisboa), Faculty of Pharmacy, Universidade de Lisboa, Av. Professor Gama Pinto, 1649-003, Lisbon, Portugal.

Department of Pharmaceutics, UCL School of Pharmacy, University College London, 29/39 Brunswick Square, London, WC1N 1AX, UK.

出版信息

J Comput Aided Mol Des. 2017 Sep;31(9):817-827. doi: 10.1007/s10822-017-0041-6. Epub 2017 Sep 15.

Abstract

Dendrimers and dendrons offer an excellent platform for developing novel drug delivery systems and medicines. The rational design and further development of these repetitively branched systems are restricted by difficulties in scalable synthesis and structural determination, which can be overcome by judicious use of molecular modelling and molecular simulations. A major difficulty to utilise in silico studies to design dendrimers lies in the laborious generation of their structures. Current modelling tools utilise automated assembly of simpler dendrimers or the inefficient manual assembly of monomer precursors to generate more complicated dendrimer structures. Herein we describe two novel graphical user interface toolkits written in Python that provide an improved degree of automation for rapid assembly of dendrimers and generation of their 2D and 3D structures. Our first toolkit uses the RDkit library, SMILES nomenclature of monomers and SMARTS reaction nomenclature to generate SMILES and mol files of dendrimers without 3D coordinates. These files are used for simple graphical representations and storing their structures in databases. The second toolkit assembles complex topology dendrimers from monomers to construct 3D dendrimer structures to be used as starting points for simulation using existing and widely available software and force fields. Both tools were validated for ease-of-use to prototype dendrimer structure and the second toolkit was especially relevant for dendrimers of high complexity and size.

摘要

树枝状大分子和树枝状聚合物为开发新型药物递送系统和药物提供了一个出色的平台。这些重复分支系统的合理设计和进一步开发受到可扩展合成和结构测定困难的限制,而通过明智地使用分子建模和分子模拟可以克服这些困难。利用计算机模拟研究来设计树枝状大分子的一个主要困难在于其结构的费力生成。当前的建模工具利用更简单树枝状大分子的自动组装或单体前体的低效手动组装来生成更复杂的树枝状大分子结构。在此,我们描述了两个用Python编写的新型图形用户界面工具包,它们为树枝状大分子的快速组装及其二维和三维结构的生成提供了更高程度的自动化。我们的第一个工具包使用RDkit库、单体的SMILES命名法和SMARTS反应命名法来生成没有三维坐标的树枝状大分子的SMILES和mol文件。这些文件用于简单的图形表示并将其结构存储在数据库中。第二个工具包从单体组装复杂拓扑结构的树枝状大分子,以构建三维树枝状大分子结构,用作使用现有且广泛可用的软件和力场进行模拟的起点。这两个工具在用于树枝状大分子结构原型设计的易用性方面都得到了验证,第二个工具包对于高复杂性和大尺寸的树枝状大分子尤其适用。

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