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Silk protein assisted ex vivo remineralization of Enamel-like Microstructure

机译:丝蛋白辅助eNamel样微观结构的emvo倒立

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Based on the basic theory of molecular recognition, we designed an organic molecules model that spontaneously form three-dimensional fibrillar scaffolds to induce the crystallization of hydroxyapatite to synthesized enamel-like calcium phosphate/hydroxyapatite under a controllable way in vitro. Cross-linking of collagen on the dentin surface and silk fibroin with N, n-(3-dimethylaminopropyl)-N'-ethyl-carbodiimide hydrochloride (EDC) and N-hydroxysuccinimide (NHS) was optimized by varying the NHS/EDC molar ratio at constant EDC concentration. CaCl_2 and Na_3PO_4-12H_2O solution was added with Ca: P odd as 1.67:1 after conjugated. The results showed that the dentinal tubule were blocked by neonatal hydroxyapatite layer which has a continuous structure of columns crystal with size of 10-40nm. Furthermore, there were column crystal with parallel direction inside, similar to the crystal array in the top of enamel rod. The results suggest that silk protein monolayer may be useful in the modulation of mineral behavior during in situ dental tissue engineering.
机译:基于分子识别的基本理论,设计了一种有机分子模型,可自发地形成三维纤维状支架,以诱导羟基磷灰石的结晶在体外可控方式下合成牙釉质样磷酸钙/羟基磷灰石。通过改变NHS / EDC摩尔比,优化了用N,N-(3-二甲基丙基)-N'-乙基 - 碳二亚胺(NHS)和N-羟基琥珀酰亚胺(NHS)对牙本质表面和丝素蛋白的胶原蛋白的交联在恒定的EDC浓度下。 CaCl_2和Na_3PO_4-12H_2O溶液加入CA:P吨缀合物后缀合后为1.67:1。结果表明,牙本质小管被新生羟基磷灰石层封闭,该羟基磷灰石层具有连续结构,柱状晶体尺寸为10-40nm。此外,在内部存在具有平行方向的柱晶体,类似于搪瓷杆顶部的晶体阵列。结果表明,丝蛋白单层在原位牙科组织工程期间可用于调节矿物行为。

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