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原花青素二聚体和三聚体为牙本质生物修饰评价提供了多样化的结构基序。

Proanthocyanidin Dimers and Trimers from Provide Diverse Structural Motifs for the Evaluation of Dentin Biomodification.

机构信息

Department of Medicinal Chemistry and Pharmacognosy, and Program for Collaborative Research in the Pharmaceutical Sciences (PCRPS) , University of Illinois at Chicago, College of Pharmacy , Chicago , Illinois 60612 , United States.

College of Pharmacy , Yeungnam University , Gyeongsan , Gyeongbuk 712-749 , Korea.

出版信息

J Nat Prod. 2019 Sep 27;82(9):2387-2399. doi: 10.1021/acs.jnatprod.8b00953. Epub 2019 Aug 21.

Abstract

Aimed at exploring the dentin biomodification potential of proanthocyanidins (PACs) for the development of dental biomaterials, this study reports the phytochemical and dental evaluation of nine B-type PACs from grape seed extract (GSE). Out of seven isolated dimers (-), four new compounds (, , , and ) involved relatively rare -catechin or -epicatechin monomeric flavan-3-ol units. Low-temperature NMR analyses conducted along with phloroglucinolysis and electronic circular dichroism enabled unequivocal structural characterization and stereochemical assignment. Additionally, one known () and one new () B-type trimer were characterized. Differential C NMR chemical shifts (Δδ) were used to determine the absolute configuration of , relative to the dimers and as the possible constituent subunits. Compared to the dimers, the trimers showed superior dentin biomodification properties. The dimers, -, exhibited pronounced differences in their collagenase inhibitory activity, while enhancing dentin stiffness comparably. This suggests that PAC structural features such as the degree of polymerization, relative and absolute configuration have a influence on enhancement of dentin biomechanical and biostability. As mechanical enhancement to dentin and resistance to proteolytic biodegradation are both essential properties functional and stable dentin substrate, the structurally closely related PACs suggest a new metric, the dentin biomodification potential (DBMP) that may rationalize both properties.

摘要

本研究旨在探索原花青素(PACs)在牙科生物材料开发中的牙本质生物修饰潜力,报告了从葡萄籽提取物(GSE)中分离出的 9 种 B 型 PAC 的植物化学和牙科评估。在分离出的 7 种二聚体(-)中,有 4 种新化合物(、、和)涉及相对罕见的 -儿茶素或 -表儿茶素单体黄烷-3-醇单元。低温 NMR 分析与间苯三酚裂解和电子圆二色谱一起进行,能够明确结构特征和立体化学分配。此外,还鉴定了 1 种已知()和 1 种新的()B 型三聚体。使用差示 C NMR 化学位移(Δδ)确定了相对于二聚体和作为可能的组成亚基的的绝对构型。与二聚体相比,三聚体表现出优异的牙本质生物修饰性能。二聚体、-,在胶原酶抑制活性方面表现出明显差异,同时同样增强了牙本质的硬度。这表明 PAC 的结构特征,如聚合度、相对和绝对构型对增强牙本质的生物力学和生物稳定性有重要影响。由于机械增强牙本质和抵抗蛋白水解生物降解都是功能性和稳定的牙本质基质所必需的特性,结构上密切相关的 PACs 提出了一个新的指标,即牙本质生物修饰潜力(DBMP),可以合理地解释这两个特性。

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