Literature DB >> 23632809

Mineralization of dense collagen hydrogel scaffolds by human pulp cells.

B R Coyac1, F Chicatun, B Hoac, V Nelea, C Chaussain, S N Nazhat, M D McKee.   

Abstract

While advances in biomineralization have been made in recent years, unanswered questions persist on bone- and tooth-cell differentiation, on outside-in signaling from the extracellular matrix, and on the link between protein expression and mineral deposition. In the present study, we validate the use of a bioengineered three-dimensional (3D) dense collagen hydrogel scaffold as a cell-culture model to explore these questions. Dental pulp progenitor/stem cells from human exfoliated deciduous teeth (SHEDs) were seeded into an extracellular matrix-like collagen gel whose fibrillar density was increased through plastic compression. SHED viability, morphology, and metabolic activity, as well as scaffold mineralization, were investigated over 24 days in culture. Additionally, measurements of alkaline phosphatase enzymatic activity, together with immunoblotting for mineralized tissue cell markers ALPL (tissue-non-specific alkaline phosphatase), DMP1 (dentin matrix protein 1), and OPN (osteopontin), demonstrated osteo/odontogenic cell differentiation in the dense collagen scaffolds coincident with mineralization. Analyses of the mineral phase by electron microscopy, including electron diffraction and energy-dispersive x-ray spectroscopy, combined with Fourier-transform infrared spectroscopy and biochemical analyses, were consistent with the formation of apatitic mineral that was frequently aligned along collagen fibrils. In conclusion, use of a 3D dense collagen scaffold promoted SHED osteo/odontogenic cell differentiation and mineralization.

Entities:  

Keywords:  bioengineering; cell differentiation; deciduous teeth; dense collagen hydrogels; dental pulp stem cells; plastic compression; tissue engineering

Mesh:

Substances:

Year:  2013        PMID: 23632809     DOI: 10.1177/0022034513488599

Source DB:  PubMed          Journal:  J Dent Res        ISSN: 0022-0345            Impact factor:   6.116


  19 in total

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Review 2.  Tissue-engineering-based strategies for regenerative endodontics.

Authors:  M T P Albuquerque; M C Valera; M Nakashima; J E Nör; M C Bottino
Journal:  J Dent Res       Date:  2014-09-08       Impact factor: 6.116

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4.  [Effects of electrospun collagen nanofibrous matrix on the biological behavior of human dental pulp cells].

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5.  Nanofibrous spongy microspheres enhance odontogenic differentiation of human dental pulp stem cells.

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Journal:  Adv Healthc Mater       Date:  2015-07-02       Impact factor: 9.933

6.  Harnessing biomolecules for bioinspired dental biomaterials.

Authors:  Nicholas G Fischer; Eliseu A Münchow; Candan Tamerler; Marco C Bottino; Conrado Aparicio
Journal:  J Mater Chem B       Date:  2020-08-04       Impact factor: 6.331

7.  Defective Mineralization in X-Linked Hypophosphatemia Dental Pulp Cell Cultures.

Authors:  B R Coyac; B Hoac; P Chafey; G Falgayrac; L Slimani; P S Rowe; G Penel; A Linglart; M D McKee; C Chaussain; C Bardet
Journal:  J Dent Res       Date:  2017-09-07       Impact factor: 6.116

Review 8.  A narrative overview of utilizing biomaterials to recapitulate the salient regenerative features of dental-derived mesenchymal stem cells.

Authors:  Sevda Pouraghaei Sevari; Sahar Ansari; Alireza Moshaverinia
Journal:  Int J Oral Sci       Date:  2021-06-30       Impact factor: 6.344

Review 9.  Hard Dental Tissues Regeneration-Approaches and Challenges.

Authors:  Mihaela Olaru; Liliana Sachelarie; Gabriela Calin
Journal:  Materials (Basel)       Date:  2021-05-14       Impact factor: 3.623

10.  In Vivo Assessment of Bone Regeneration in Alginate/Bone ECM Hydrogels with Incorporated Skeletal Stem Cells and Single Growth Factors.

Authors:  David Gothard; Emma L Smith; Janos M Kanczler; Cameron R Black; Julia A Wells; Carol A Roberts; Lisa J White; Omar Qutachi; Heather Peto; Hassan Rashidi; Luis Rojo; Molly M Stevens; Alicia J El Haj; Felicity R A J Rose; Kevin M Shakesheff; Richard O C Oreffo
Journal:  PLoS One       Date:  2015-12-16       Impact factor: 3.240

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