Protein-mediated Enamel Mineralization

Белково-опосредованная минерализация эмали
Janet Moradian‐Oldak
2012-01-01

amelogenesisbiomimetic enamel regrowthenamel hierarchical structureextracellular matrix proteinsproteinases
Enamel is a hard nanocomposite bioceramic with significant resilience that protects the mammalian tooth from external physical and chemical damages. The remarkable mechanical properties of enamel are associated with its hierarchical structural organization and its thorough connection with underlying dentin. This dynamic mineralizing system offers scientists a wealth of information that allows the study of basic principels of organic matrix-mediated biomineralization and can potentially be utilized in the fields of material science and engineering for development and design of biomimetic materials. This chapter will provide a brief overview of enamel hierarchical structure and properties and the process and stages of amelogenesis. Particular emphasis is given to current knowledge of extracellular matrix protein and proteinases, and the structural chemistry of the matrix components and their putative functions. The chapter will conclude by discussing the potential of enamel for regrowth.
1
Enamel formation (amelogenesis) is a dynamic mineralizing system mediated by extracellular matrix proteins and proteinases.
2
Enamel has potential for regrowth, which is discussed as a possible application or future direction.
3
Enamel's remarkable mechanical properties arise from its hierarchical structural organization and strong connection with underlying dentin.
4
Insights from enamel biomineralization can inform biomimetic materials design in material science and engineering.
5
Structural chemistry and putative functions of enamel matrix components are central to understanding organic matrix-mediated biomineralization.

Tooth enamel (a protein-mediated, hierarchical biomineralizing nanocomposite)

Roles and functions of extracellular matrix proteins, proteinases, and matrix structural chemistry in the process and stages of amelogenesis and enamel mineralization, including implications for enamel regrowth

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2012-01-01
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Janet Moradian‐Oldak
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