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Regulation of in vitro Calcium Phosphate Mineralization by Combinatorially Selected Hydroxyapatite-Binding Peptides

机译:通过组合选择的羟基磷灰石结合肽对体外磷酸钙矿化的调节

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摘要

We report selection and characterization of hydroxyapatite-binding heptapeptides from a peptide-phage library and demonstrate the effects of two peptides,with different binding affinities and structural properties,on the mineralization of calcium phosphate mineral.In vitro mineralization studies carried out using one strong-and one weak-binding peptide,HABP1 and HABP2,respectively,revealed that the former exhibited a drastic outcome on mineralization kinetics and particle morphology.Strong-binding peptide yielded significantly larger crystals,as observed by electron microscopy,in comparison to those formed in the presence of a weak-binding peptide or in the negative control.Molecular structural studies carried out by circular dichoroism revealed that HABP1 and HABP2 differed in their secondary structure and conformational stability.The results indicate that sequence,structure,and molecular stability strongly influence the mineralization activity of these peptides.The implication of the research is that the combinatorially selected short-sequence peptides may be used in the restoration or regeneration of hard tissues through their control over of the formation of calcium phosphate biominerals.
机译:我们报告了从肽噬菌体文库中选择和表征与羟基磷灰石结合的七肽的过程,并展示了两种具有不同结合亲和力和结构特性的肽对磷酸钙矿物质矿化的影响。一种弱结合肽HABP1和HABP2分别表明,前者在矿化动力学和颗粒形态方面表现出惊人的结果。与电子显微镜相比,强结合肽产生的晶体明显更大。圆二色性进行的分子结构研究表明,HABP1和HABP2的二级结构和构象稳定性不同。结果表明,序列,结构和分子稳定性强烈影响矿化作用。这些肽的活性。研究表明组合选择的短序列肽可以通过控制磷酸钙生物矿物质的形成而用于硬组织的恢复或再生。

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