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Elastin-Like Protein with Statherin Derived Peptide Controls Fluorapatite Formation and Morphology

机译:弹性蛋白样蛋白含Statherin衍生肽可控制氟磷灰石的形成和形态

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摘要

The process of enamel biomineralization is multi-step, complex and mediated by organic molecules. The lack of cells in mature enamel leaves it unable to regenerate and hence novel ways of growing enamel-like structures are currently being investigated. Recently, elastin-like protein (ELP) with the analog N-terminal sequence of statherin (STNA15-ELP) has been used to regenerate mineralized tissue. Here, the STNA15-ELP has been mineralized in constrained and unconstrained conditions in a fluoridated solution. We demonstrate that the control of STNA15-ELP delivery to the mineralizing solution can form layered ordered fluorapatite mineral, via a brushite precursor. We propose that the use of a constrained STNA15-ELP system can lead to the development of novel, bioinspired enamel therapeutics.
机译:搪瓷生物矿化的过程是多步骤,复杂的并且由有机分子介导。成熟的牙釉质中缺乏细胞,使其无法再生,因此目前正在研究生长珐琅状结构的新方法。近来,具有类似斯坦斯汀的N末端序列的弹性蛋白样蛋白(ELP)(STNA15-ELP)已被用于再生矿化的组织。在这里,STNA15-ELP已在受限和非受限条件下在氟化溶液中矿化。我们证明控制STNA15-ELP传递到矿化溶液中可以通过透钙磷石前体形成层状有序的氟磷灰石矿物。我们建议使用约束性STNA15-ELP系统可以导致新型的,受生物启发的搪瓷治疗剂的开发。

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