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人工龋损的微束和病变深度研究:基于明胶和羟乙基纤维素系统的比较

Microharness and lesion depth studies of artificial caries lesions: a comparison of gelatin and HEC based systems.

作者信息

Arends J, Schuthof J

出版信息

J Biol Buccale. 1980 Jun;8(2):175-81.

PMID:6930379
Abstract

Microhardness measurements with the indenter load perpendicular to the artificial carious enamel surfaces can be employed to investigate lesion depth in de- and remineralization of fluoridation studies in vitro or in vivo. In this study, microhardness and lesion depth studies were made on bovine enamel subjected to demineralizing solutions on a gelatin base at pH = 4.5 and 37 degrees C. The parameters studied were load, demineralization period and dialysis of the gelatin. All experimental data are compared with lesions formed in acidified 6% HEC solutions under identical conditions. The results show that lesion formation and mechanical properties of artificially carious enamel are comparable for nonchared HEC and charged gelatin based systems. Because of the higher sensitivity, lesions formed in HEC are to be preferred for lesion depth determinations by means of microhardness indentations. Both gelatin - and HEC based systems show a lesion depth proprotional to the square root of the demineralization period. If gelatin or HEC is dialyzed first, and subsequently used in the demineralizing buffers, the results show that no subsurface lesions are formed but "acid-softening" of the enamel takes place.

摘要

通过使压痕载荷垂直于人工龋化牙釉质表面进行显微硬度测量,可用于研究体外或体内氟化研究中脱矿和再矿化的病变深度。在本研究中,对置于pH = 4.5、37℃明胶基脱矿溶液中的牛牙釉质进行了显微硬度和病变深度研究。所研究的参数包括载荷、脱矿时间和明胶的透析情况。所有实验数据均与在相同条件下于酸化6%羟乙基纤维素(HEC)溶液中形成的病变进行比较。结果表明,对于未带电的HEC和带电的明胶基体系,人工龋化牙釉质的病变形成和力学性能具有可比性。由于更高的灵敏度,通过显微硬度压痕确定病变深度时,HEC中形成的病变更受青睐。基于明胶和HEC的体系均显示病变深度与脱矿时间的平方根成正比。如果先对明胶或HEC进行透析,随后用于脱矿缓冲液中,结果表明不会形成亚表面病变,但牙釉质会发生“酸软化”。

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