Literature DB >> 19576521

Simultaneous PKC and cAMP activation induces differentiation of human dental pulp stem cells into functionally active neurons.

Marianna Király1, Balázs Porcsalmy, Agnes Pataki, Kristóf Kádár, Márta Jelitai, Bálint Molnár, Péter Hermann, István Gera, Wolf-Dieter Grimm, Bernhard Ganss, Akos Zsembery, Gábor Varga.   

Abstract

The plasticity of dental pulp stem cells (DPSCs) has been demonstrated by several studies showing that they appear to self-maintain through several passages, giving rise to a variety of cells. The aim of the present study was to differentiate DPSCs to mature neuronal cells showing functional evidence of voltage gated ion channel activities in vitro. First, DPSC cultures were seeded on poly-l-lysine coated surfaces and pretreated for 48h with a medium containing basic fibroblast growth factor and the demethylating agent 5-azacytidine. Then neural induction was performed by the simultaneous activation of protein kinase C and the cyclic adenosine monophosphate pathway. Finally, maturation of the induced cells was achieved by continuous treatment with neurotrophin-3, dibutyryl cyclic AMP, and other supplementary components. Non-induced DPSCs already expressed vimentin, nestin, N-tubulin, neurogenin-2 and neurofilament-M. The inductive treatment resulted in decreased vimentin, nestin, N-tubulin and increased neurogenin-2, neuron-specific enolase, neurofilament-M and glial fibrillary acidic protein expression. By the end of the maturation period, all investigated genes were expressed at higher levels than in undifferentiated controls except vimentin and nestin. Patch clamp analysis revealed the functional activity of both voltage-dependent sodium and potassium channels in the differentiated cells. Our results demonstrate that although most surviving cells show neuronal morphology and express neuronal markers, there is a functional heterogeneity among the differentiated cells obtained by the in vitro differentiation protocol described herein. Nevertheless, this study clearly indicates that the dental pulp contains a cell population that is capable of neural commitment by our three step neuroinductive protocol.

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Year:  2009        PMID: 19576521     DOI: 10.1016/j.neuint.2009.03.017

Source DB:  PubMed          Journal:  Neurochem Int        ISSN: 0197-0186            Impact factor:   3.921


  59 in total

Review 1.  A journey from dental pulp stem cells to a bio-tooth.

Authors:  Ming Yan; Yan Yu; Guangdong Zhang; Chunbo Tang; Jinhua Yu
Journal:  Stem Cell Rev Rep       Date:  2011-03       Impact factor: 5.739

Review 2.  Dental stem cells and their promising role in neural regeneration: an update.

Authors:  W Martens; A Bronckaers; C Politis; R Jacobs; I Lambrichts
Journal:  Clin Oral Investig       Date:  2013-07-12       Impact factor: 3.573

3.  Characterization of canine dental pulp cells and their neuroregenerative potential.

Authors:  Eiji Naito; Daichi Kudo; Shin-ichiro Sekine; Kazuhiro Watanabe; Yui Kobatake; Naritaka Tamaoki; Masatoshi Inden; Kazuki Iida; Yusuke Ito; Isao Hozumi; Toshiyuki Shibata; Sadatoshi Maeda; Hiroaki Kamishina
Journal:  In Vitro Cell Dev Biol Anim       Date:  2015-07-14       Impact factor: 2.416

Review 4.  Dental pulp stem cells for the study of neurogenetic disorders.

Authors:  A Kaitlyn Victor; Lawrence T Reiter
Journal:  Hum Mol Genet       Date:  2017-10-01       Impact factor: 6.150

5.  Assessment of the Tumorigenic Potential of Spontaneously Immortalized and hTERT-Immortalized Cultured Dental Pulp Stem Cells.

Authors:  Ryan Wilson; Nora Urraca; Cezary Skobowiat; Kevin A Hope; Leticia Miravalle; Reed Chamberlin; Martin Donaldson; Tiffany N Seagroves; Lawrence T Reiter
Journal:  Stem Cells Transl Med       Date:  2015-06-01       Impact factor: 6.940

Review 6.  Concise review: adult mesenchymal stem cells, adult neural crest stem cells, and therapy of neurological pathologies: a state of play.

Authors:  Virginie Neirinckx; Cécile Coste; Bernard Rogister; Sabine Wislet-Gendebien
Journal:  Stem Cells Transl Med       Date:  2013-03-13       Impact factor: 6.940

Review 7.  Multipotent Differentiation of Human Dental Pulp Stem Cells: a Literature Review.

Authors:  N Nuti; C Corallo; B M F Chan; M Ferrari; B Gerami-Naini
Journal:  Stem Cell Rev Rep       Date:  2016-10       Impact factor: 5.739

8.  Culturing and Neuronal Differentiation of Human Dental Pulp Stem Cells.

Authors:  Sarita Goorha; Lawrence T Reiter
Journal:  Curr Protoc Hum Genet       Date:  2017-01-11

Review 9.  Allogenic banking of dental pulp stem cells for innovative therapeutics.

Authors:  Pierre-Yves Collart-Dutilleul; Franck Chaubron; John De Vos; Frédéric J Cuisinier
Journal:  World J Stem Cells       Date:  2015-08-26       Impact factor: 5.326

10.  Characterization of neurons from immortalized dental pulp stem cells for the study of neurogenetic disorders.

Authors:  Nora Urraca; Rawaha Memon; Ikbale El-Iyachi; Sarita Goorha; Colleen Valdez; Quynh T Tran; Reese Scroggs; Gustavo A Miranda-Carboni; Martin Donaldson; Dave Bridges; Lawrence T Reiter
Journal:  Stem Cell Res       Date:  2015-12-01       Impact factor: 2.020

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