首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Denaturation temperatures of dentin matrices. I. Effect of demineralization and dehydration.
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Denaturation temperatures of dentin matrices. I. Effect of demineralization and dehydration.

机译:牙本质基质的变性温度。 I.脱盐和脱水的作用。

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The denaturation temperature (T(d)) of dentin collagen in mineralized versus demineralized teeth was examined as a function of dentin age and the extent of dehydration. Using differential scanning calorimetry, T(d) of mineralized dentin was shown to be between 160 degrees C to 186 degrees C, depending on whether it was from young or old dentin that was hydrated or dehydrated, respectively. Demineralized dentin exhibited a T(d) of 65.6 degrees C that increased with dehydration to 176 degrees C. The presence of apatite crystallites or interpeptide bonding increased the T(d) of demineralized matrices. Interpeptide hydrogen bonding seems to stabilize collagen to thermal challenge. Water breaks interpeptide hydrogen bonds making collagen more susceptible to thermal denaturation. Rises in intracanal temperature are unlikely to cause extensive denaturation of mineralized root dentin walls. However, hydrated or partially dehydrated root canal walls that have been partially demineralized with chelating agents or mild acids may be susceptible to thermal denaturation.
机译:检查了矿化牙齿与脱矿牙齿中牙本质胶原的变性温度(T(d))与牙本质年龄和脱水程度的关系。使用差示扫描量热法,显示矿化的牙本质的T(d)在160℃至186℃之间,这取决于其是来自年轻的还是旧的牙本质被水合或脱水。脱矿质牙本质的T(d)为65.6摄氏度,随着脱水至176摄氏度而增加。磷灰石微晶或肽间键合的存在增加了脱矿质基质的T(d)。肽间氢键似乎稳定了胶原蛋白对热的挑战。水破坏了肽间的氢键,使胶原蛋白更易于热变性。管内温度的升高不太可能导致矿化的牙本质牙本质壁大量变性。但是,已用螯合剂或弱酸部分矿化的水合或部分脱水的根管壁可能会发生热变性。

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