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自酸蚀牙本质粘结剂底漆分子与I型胶原分子间相互作用的评估:计算机建模与体外结合分析

Evaluation of intermolecular interactions of self-etch dentin adhesive primer molecules with type 1 collagen: computer modeling and in vitro binding analysis.

作者信息

Vaidyanathan Jayalakshmi, Vaidyanathan Tritala K, Kerrigan John E

机构信息

University of Medicine and Dentistry of New Jersey, 110 Bergen Street, Newark, NJ 07103, USA.

出版信息

Acta Biomater. 2007 Sep;3(5):705-14. doi: 10.1016/j.actbio.2007.01.009. Epub 2007 Apr 6.

Abstract

The objective of this investigation was to study adhesion of self-etch primer systems to dentin by computer-modeled docking simulations and in vitro binding assay methods. Computer modeling employed analysis of docking simulations of a self-etch primer molecule 10-methacryloxydecamethylene phosphoric acid (MDP) and its calcium salt (MDPCa) as ligands. Typical type 1 collagen segments were selected as targets to reflect potential differences in the amino acid residues in dentinal type 1 collagen triple helix motif. The binding assay involved immunochemical analysis of the modification of anti-collagen binding to collagen by prior exposure of the demineralized dentin to MDP. The estimated mean docking energy values ranged between -4.5 and -8.9kcalmol(-1). The results revealed significant differences in the docking energy estimates as a function of ligand and target structures (p<0.01). Van der Waals and electrostatic contributions were also significantly influenced by ligand selection and collagen structure. Both MDP and MDPCa appear to be important in the overall interactions. Binding assay studies also lend evidence of collagen-ligand intermolecular interactions. It is suggested that the ability of self-etch dentin primer systems to bond effectively to dentin is not limited to the interaction of the primer with the hydroxyapatite of dentin, but also due to the ability to prime dentin efficiently through intermolecular interactions between the primer and its calcium salt with the collagen matrix. Virtual screening methods may be very valuable to select primer molecules for dentin bonding.

摘要

本研究的目的是通过计算机模拟对接和体外结合试验方法,研究自酸蚀底漆系统与牙本质的黏附性。计算机模拟采用自酸蚀底漆分子10 - 甲基丙烯酰氧基癸基亚甲基磷酸(MDP)及其钙盐(MDPCa)作为配体进行对接模拟分析。选择典型的I型胶原片段作为靶点,以反映牙本质I型胶原三螺旋基序中氨基酸残基的潜在差异。结合试验包括通过将脱矿牙本质预先暴露于MDP,对其修饰抗胶原与胶原结合的免疫化学分析。估计的平均对接能值在-4.5至-8.9千卡/摩尔(-1)之间。结果显示,对接能估计值因配体和靶点结构而异,差异显著(p<0.01)。范德华力和静电作用也受配体选择和胶原结构的显著影响。MDP和MDPCa在整体相互作用中似乎都很重要。结合试验研究也证明了胶原 - 配体分子间相互作用的存在。研究表明,自酸蚀牙本质底漆系统与牙本质有效结合的能力不仅限于底漆与牙本质羟基磷灰石的相互作用,还归因于底漆及其钙盐与胶原基质之间通过分子间相互作用有效引发牙本质的能力。虚拟筛选方法对于选择用于牙本质黏结的底漆分子可能非常有价值。

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