Literature DB >> 19177182

Enzymatic Processing of Amelogenin during Continuous Crystallization of Apatite.

V Uskoković1, M-K Kim, W Li, S Habelitz.   

Abstract

Dental enamel forms through a protein-controlled mineralization and enzymatic degradation with a nanoscale precision that new engineering technologies may be able to mimic. Recombinant full-length human amelogenin (rH174) and a matrix-metalloprotease (MMP-20) were employed in a pH-stat titration system that enabled a continuous supply of calcium and phosphate ions over several days, mimicking the initial stages of matrix processing and crystallization in enamel in-vitro. Effects on the self-assembly and crystal growth from a saturated aqueous solution containing 0.4 mg/ml rH174 and MMP-20 with the weight ratio of 1:1000 with respect to rH174 were investigated. A transition from nanospheres to fibrous amelogenin assemblies was facilitated under conditions that involved an interaction between rH174 and the proteolytic cleavage products. Despite continuous titration, the levels of calcium exhibited a consistent trend of decreasing, thereby indicating its possible role in the protein self-assembly. This study suggests that mimicking enamel formation in-vitro requires the synergy between the aspects of matrix self-assembly, proteolysis and crystallization.

Entities:  

Year:  2008        PMID: 19177182      PMCID: PMC2631549          DOI: 10.1557/JMR.2008.0387

Source DB:  PubMed          Journal:  J Mater Res        ISSN: 0884-1616            Impact factor:   3.089


  26 in total

1.  Amelogenin Promotes the Formation of Elongated Apatite Microstructures in a Controlled Crystallization System.

Authors:  Lijun Wang; Xiangying Guan; Chang Du; Janet Moradian-Oldak; George H Nancollas
Journal:  J Phys Chem C Nanomater Interfaces       Date:  2007-05-03       Impact factor: 4.126

Review 2.  Proteinases in developing dental enamel.

Authors:  J D Bartlett; J P Simmer
Journal:  Crit Rev Oral Biol Med       Date:  1999

3.  Supramolecular assembly of amelogenin nanospheres into birefringent microribbons.

Authors:  Chang Du; Giuseppe Falini; Simona Fermani; Christopher Abbott; Janet Moradian-Oldak
Journal:  Science       Date:  2005-03-04       Impact factor: 47.728

4.  The nucleation and growth of calcium phosphate by amelogenin.

Authors:  Barbara J Tarasevich; Christopher J Howard; Jenna L Larson; Malcolm L Snead; James P Simmer; Michael Paine; Wendy J Shaw
Journal:  J Cryst Growth       Date:  2007-06-15       Impact factor: 1.797

5.  Mimicking the Self-Organized Microstructure of Tooth Enamel.

Authors:  Lijun Wang; Xiangying Guan; Haoyong Yin; Janet Moradian-Oldak; George H Nancollas
Journal:  J Phys Chem C Nanomater Interfaces       Date:  2008-03-22       Impact factor: 4.126

6.  Mineralization kinetics: a constant composition approach.

Authors:  M B Tomson; G H Nancollas
Journal:  Science       Date:  1978-06-02       Impact factor: 47.728

7.  Synthetic apatites containing Na, Mg, and CO3 and their comparison with tooth enamel mineral.

Authors:  J D Featherstone; I Mayer; F C Driessens; R M Verbeeck; H J Heijligers
Journal:  Calcif Tissue Int       Date:  1983       Impact factor: 4.333

8.  A developmental comparison of matrix metalloproteinase-20 and amelogenin null mouse enamel.

Authors:  John D Bartlett; Ziedonis Skobe; Daniel H Lee; J Timothy Wright; Yong Li; Ashok B Kulkarni; Carolyn W Gibson
Journal:  Eur J Oral Sci       Date:  2006-05       Impact factor: 2.612

9.  Comparative calcium binding of leucine-rich amelogenin peptide and full-length amelogenin.

Authors:  Thuan Q Le; Miriam Gochin; John D B Featherstone; Wu Li; Pamela K DenBesten
Journal:  Eur J Oral Sci       Date:  2006-05       Impact factor: 2.612

10.  Amelogenin control over apatite crystal growth is affected by the pH and degree of ionic saturation.

Authors:  S Habelitz; P K Denbesten; S J Marshall; G W Marshall; W Li
Journal:  Orthod Craniofac Res       Date:  2005-11       Impact factor: 1.826

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  22 in total

1.  Biomimetic Precipitation of Uniaxially Grown Calcium Phosphate Crystals from Full-Length Human Amelogenin Sols.

Authors:  Vuk Uskoković; Wu Li; Stefan Habelitz
Journal:  J Bionic Eng       Date:  2011-06-10       Impact factor: 2.682

2.  Zeta-potential and particle size analysis of human amelogenins.

Authors:  V Uskokovic; Z Castiglione; P Cubas; L Zhu; W Li; S Habelitz
Journal:  J Dent Res       Date:  2009-12-29       Impact factor: 6.116

3.  Relationships between protein and mineral during enamel development in normal and genetically altered mice.

Authors:  Charles E Smith; Yuanyuan Hu; Amelia S Richardson; John D Bartlett; Jan C-C Hu; James P Simmer
Journal:  Eur J Oral Sci       Date:  2011-12       Impact factor: 2.612

4.  Prospects and Pits on the Path of Biomimetics: The case of tooth enamel.

Authors:  Vuk Uskoković
Journal:  J Biomim Biomater Tissue Eng       Date:  2010-11

5.  Dynamic Light Scattering Based Microelectrophoresis: Main Prospects and Limitations.

Authors:  Vuk Uskoković
Journal:  J Dispers Sci Technol       Date:  2012-12-01       Impact factor: 2.262

6.  The REGENERATION of TOOTH ENAMEL.

Authors:  Janet Moradian-Oldak
Journal:  Dimens Dent Hyg       Date:  2009-08

7.  MMP20 Proteolysis of Native Amelogenin Regulates Mineralization In Vitro.

Authors:  S Y Kwak; Y Yamakoshi; J P Simmer; H C Margolis
Journal:  J Dent Res       Date:  2016-08-24       Impact factor: 6.116

8.  Challenges for the Modern Science in its Descend Towards Nano Scale.

Authors:  Vuk Uskoković
Journal:  Curr Nanosci       Date:  2009       Impact factor: 1.824

9.  The Role of Hydroxyl Channel in Defining Selected Physicochemical Peculiarities Exhibited by Hydroxyapatite.

Authors:  Vuk Uskoković
Journal:  RSC Adv       Date:  2015       Impact factor: 3.361

Review 10.  Entering the era of nanoscience: time to be so small.

Authors:  Vuk Uskoković
Journal:  J Biomed Nanotechnol       Date:  2013-09       Impact factor: 4.099

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