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Cementomimetics—constructing a cementum-like biomineralized microlayer via amelogenin-derived peptides

牙骨质 釉原蛋白 生物矿化 牙周纤维 牙本质 矿化组织 化学 细胞生物学 生物物理学 牙科 生物化学 生物 基因 医学 古生物学
作者
Mustafa Güngörmüş,Ersin Emre Ören,Jeremy A. Horst,Hanson Fong,Marketa Hnilova,Martha J. Somerman,Malcolm L. Snead,Ram Samudrala,Candan Tamerler,Mehmet Sarıkaya
出处
期刊:International Journal of Oral Science [Springer Nature]
卷期号:4 (2): 69-77 被引量:61
标识
DOI:10.1038/ijos.2012.40
摘要

Cementum is the outer-, mineralized-tissue covering the tooth root and an essential part of the system of periodontal tissue that anchors the tooth to the bone. Periodontal disease results from the destructive behavior of the host elicited by an infectious biofilm adhering to the tooth root and left untreated, may lead to tooth loss. We describe a novel protocol for identifying peptide sequences from native proteins with the potential to repair damaged dental tissues by controlling hydroxyapatite biomineralization. Using amelogenin as a case study and a bioinformatics scoring matrix, we identified regions within amelogenin that are shared with a set of hydroxyapatite-binding peptides (HABPs) previously selected by phage display. One 22-amino acid long peptide regions referred to as amelogenin-derived peptide 5 (ADP5) was shown to facilitate cell-free formation of a cementum-like hydroxyapatite mineral layer on demineralized human root dentin that, in turn, supported attachment of periodontal ligament cells in vitro. Our findings have several implications in peptide-assisted mineral formation that mimic biomineralization. By further elaborating the mechanism for protein control over the biomineral formed, we afford new insights into the evolution of protein-mineral interactions. By exploiting small peptide domains of native proteins, our understanding of structure-function relationships of biomineralizing proteins can be extended and these peptides can be utilized to engineer mineral formation. Finally, the cementomimetic layer formed by ADP5 has the potential clinical application to repair diseased root surfaces so as to promote the regeneration of periodontal tissues and thereby reduce the morbidity associated with tooth loss.
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