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Chemical composition of Galla chinensis extract and the effect of its main component(s) on the prevention of enamel demineralization in vitro

机译:五倍子提取物的化学成分及其主要成分在体外预防牙釉质脱矿的作用

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摘要

To determine the chemical composition of Galla chinensis extract (GCE) by several analysis techniques and to compare the efficacy of GCE and its main component(s) in inhibition of enamel demineralization, for the development of future anticaries agents, main organic composition of GCE was qualitatively determined by liquid chromatography–time of flight–mass spectrometry (LC–TOF–MS) and quantified by high-performance liquid chromatography–diode array detector (HPLC–DAD). Inorganic ions were tested by inductively coupled plasma–atomic emission spectroscopy and F was especially measured by ion chromatography. Then, bovine enamel blocks were randomly divided into four treatment groups and were subjected to a pH-cycling regime for 12 times. Each cycle included 5-min applications with one of four treatments: 4 g⋅L−1 GCE solution, 4 g⋅L−1 gallic acid (GA) solution, 1 g⋅L−1 NaF solution (positive control), deionized water (DDW, negative control), and then 60-min application in pH 5.0 acidic buffer and 5-min application in neutral buffer. Acidic buffers were retained for calcium analysis. The main organic composition of GCE were GA and its isomer, and, to a lesser extent, small molecule gallotannins. The content of GA in GCE was 71.3%±0.2% (w/w). Inorganic ions were present in various amounts, of which Ca was (136±2.82) µg⋅g−1, and Zn was (6.8±0.1) µg⋅g−1. No F was detected in GCE. In pH cycling, GA showed an effect similar to GCE in inhibiting enamel demineralization (P>0.05). GA was found to be the main effective, demineralization inhibiting component of GCE and could be a promising agent for the development of anticaries agents.
机译:为了通过几种分析技术确定五倍子提取物(GCE)的化学成分,并比较GCE及其主要成分抑制牙釉质脱矿的功效,为了开发未来的防龋剂,GCE的主要有机成分为由液相色谱-飞行时间-质谱法(LC-TOF-MS)定性确定,并由高效液相色谱-二极管阵列检测器(HPLC-DAD)定量。无机离子通过电感耦合等离子体-原子发射光谱法测试,尤其是通过离子色谱法测量F。然后,将牛牙釉质块随机分为四个处理组,并进行pH循环12次。每个周期包括5分钟的应用,并采用以下四种处理方法之一:4g⋅L -1 GCE溶液,4g⋅L -1 没食子酸(GA)溶液,1用g⋅L -1 NaF溶液(阳性对照),去离子水(DDW,阴性对照),然后在pH值5.0的酸性缓冲液中应用60分钟,在中性缓冲液中应用5分钟。保留酸性缓冲液用于钙分析。 GCE的主要有机成分是GA及其异构体,以及较小程度的小分子没食子鞣质。 GCE中GA的含量为71.3%±0.2%(w / w)。无机离子的存在量不同,其中Ca为(136±2.82)µg·g -1 ,Zn为(6.8±0.1)µg·g -1 。在GCE中未检测到F。在pH循环中,GA在抑制牙釉质脱矿质方面表现出与GCE相似的效果(P> 0.05)。发现GA是GCE的主要有效的去矿物质抑制成分,并且可能是开发防龋剂的有希望的剂。

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