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Dental stem cells for tooth regeneration and repair

, DDS PhD &
Pages 1143-1154 | Published online: 05 Aug 2009

Bibliography

  • Butler PM. Ontogenetic aspects of dental evolution. Int J Dev Biol 1995;39(1):25-34
  • Tucker A, Sharpe P. The cutting-edge of mammalian development; how the embryo makes teeth. Nat Rev Genet 2004;5(7):499-508
  • Maas R, Bei M. The genetic control of early tooth development. Crit Rev Oral Biol Med 1997;8(1):4-39
  • Lumsden AG, Buchanan JA. An experimental study of timing and topography of early tooth development in the mouse embryo with an analysis of the role of innervation. Arch Oral Biol 1986;31(5):301-11
  • Ruch JV, Lesot H, Begue-Kirn C. Odontoblast differentiation. Int J Dev Biol 1995;39(1):51-68
  • Thesleff I, Sharpe P. Signalling networks regulating dental development. Mech Dev 1997;67(2):111-23
  • Thesleff I. Epithelial–mesenchymal signalling regulating tooth morphogenesis. J Cell Sci 2003;116(Pt 9):1647-8
  • Nanci A. Ten Cate's Oral Histology: Development, Structure, and Function. 7th edition. St Louis MO: Mosby, 2007
  • Fitzgerald M, Chiego DJ Jr, Heys DR. Autoradiographic analysis of odontoblast replacement following pulp exposure in primate teeth. Arch Oral Biol 1990;35(9):707-15
  • Smith AJ, Murray PE, Sloan AJ, et al. Trans-dentinal stimulation of tertiary dentinogenesis. Adv Dent Res 2001;15:51-4
  • Gronthos S, Mankani M, Brahim J, et al. Postnatal human dental pulp stem cells (DPSCs) in vitro and in vivo. Proc Natl Acad Sci USA 2000;97(25):13625-30
  • Shi S, Robey PG, Gronthos S. Comparison of human dental pulp and bone marrow stromal stem cells by cDNA microarray analysis. Bone 2001;29(6):532-9
  • Shi S, Bartold PM, Miura M, et al. The efficacy of mesenchymal stem cells to regenerate and repair dental structures. Orthod Craniofac Res 2005;8(3):191-9
  • Senzaki H. A histological study of reparative dentinogenesis in the rat incisor after colchicine administration. Arch Oral Biol 1980;25(11-12):737-43
  • Gronthos S, Brahim J, Li W, et al. Stem cell properties of human dental pulp stem cells. J Dent Res 2002;81(8):531-5
  • Goodell M, Brose K, Paradis G, et al. Isolation and functional properties of murine hematopoietic stem cells that are replicating in vivo. J Exp Med 1996;183(4):1797-806
  • Goodell M, Rosenzweig M, Kim H, et al. Dye efflux studies suggest that hematopoietic stem cells expressing low or undetectable levels of CD34 antigen exist in multiple species. Nat Med 1997;3(12):1337-45
  • Iohara K, Zheng L, Ito M, et al. Side population cells isolated from porcine dental pulp tissue with self-renewal and multipotency for dentinogenesis, chondrogenesis, adipogenesis, and neurogenesis. Stem Cells 2006;24(11):2493-503
  • Honda M, Nakashima F, Satomura K, et al. Side population cells expressing ABCG2 in human adult dental pulp tissue. Int Endod J 2007;40(12):949-58
  • Miura M, Gronthos S, Zhao M, et al. SHED: stem cells from human exfoliated deciduous teeth. Proc Natl Acad Sci USA 2003;100(10):5807-12
  • Batouli S, Miura M, Brahim J, et al. Comparison of stem-cell-mediated osteogenesis and dentinogenesis. J Dent Res 2003;82(12):976-81
  • Laino G, D'Aquino R, Graziano A, et al. A new population of human adult dental pulp stem cells: a useful source of living autologous fibrous bone tissue (LAB). J Bone Miner Res 2005;20(8):1394-402
  • Kerkis I, Kerkis A, Dozortsev D, et al. Isolation and characterization of a population of immature dental pulp stem cells expressing OCT-4 and other embryonic stem cell markers. Cells Tissues Organs 2006;184(3-4):105-16
  • Siqueira da Fonseca SA, Abdelmassih S, de Mello Cintra Lavagnolli T, et al. Human immature dental pulp stem cells' contribution to developing mouse embryos: production of human/mouse preterm chimaeras. Cell Prolif 2009;42(2):132-40
  • McCulloch CA. Progenitor cell populations in the periodontal ligament of mice. Anat Rec 1985;211(3):258-62
  • Seo BM, Miura M, Gronthos S, et al. Investigation of multipotent postnatal stem cells from human periodontal ligament. Lancet 2004;364(9429):149-55
  • Seo BM, Miura M, Sonoyama W, et al. Recovery of stem cells from cryopreserved periodontal ligament. J Dent Res 2005;84(10):907-12
  • Gronthos S, Mrozik K, Shi S, Bartold PM. Ovine periodontal ligament stem cells: isolation, characterization, and differentiation potential. Calcif Tissue Int 2006;79(5):310-7
  • Brent AE, Schweitzer R, Tabin CJ. A somitic compartment of tendon progenitors. Cell 2003;113(2):235-48
  • Brent AE, Tabin CJ. Developmental regulation of somite derivatives: muscle, cartilage and tendon. Curr Opin Genet Dev 2002;12(5):548-57
  • McCulloch CA, Nemeth E, Lowenberg B, Melcher AH. Paravascular cells in endosteal spaces of alveolar bone contribute to periodontal ligament cell populations. Anat Rec 1987;219(3):233-42
  • Fang D, Seo BM, Liu Y, et al. Transplantation of mesenchymal stem cells is an optimal approach for plastic surgery. Stem Cells 2007;25(4):1021-8
  • Huang GT, Sonoyama W, Liu Y, et al. The hidden treasure in apical papilla: the potential role in pulp/dentin regeneration and bioroot engineering. J Endod 2008;34(6):645-51
  • Sonoyama W, Liu Y, Fang D, et al. Mesenchymal stem cell-mediated functional tooth regeneration in Swine. PLoS ONE 2006;1:e79. Published online 20 December 2006, doi:10.1371/journal.pone.0000079
  • Sonoyama W, Liu Y, Yamaza T, et al. Characterization of the apical papilla and its residing stem cells from human immature permanent teeth: a pilot study. J Endod 2008;34(2):166-71
  • Abe S, Yamaguchi S, Watanabe A, et al. Hard tissue regeneration capacity of apical pulp derived cells (APDCs) from human tooth with immature apex. Biochem Biophys Res Commun 2008;371(1):90-3
  • Degistirici O, Jaquiery C, Schönebeck B, et al. Defining properties of neural crest-derived progenitor cells from the apex of human developing tooth. Tissue Eng A 2008;14(2):317-30
  • Ross MH, Pawlina W. Histology: A text and atlas with correlated cell and molecular biology. 5th edition: Philadelphia: Lippincott Williams & Wilkins, 2003
  • Young CS, Terada S, Vacanti JP, et al. Tissue engineering of complex tooth structures on biodegradable polymer scaffolds. J Dent Res 2002;81(10):695-700
  • Honda M, Sumita Y, Kagami H, Ueda M. Histological and immunohistochemical studies of tissue engineered odontogenesis. Arch Histol Cytol 2005;68(2):89-101
  • Handa K, Saito M, Tsunoda A, et al. Progenitor cells from dental follicle are able to form cementum matrix in vivo. Connect Tissue Res 2002;43(2-3):406-8
  • Handa K, Saito M, Yamauchi M, et al. Cementum matrix formation in vivo by cultured dental follicle cells. Bone 2002;31(5):606-11
  • Morsczeck C, Gotz W, Schierholz J, et al. Isolation of precursor cells (PCs) from human dental follicle of wisdom teeth. Matrix Biol 2005;24(2):155-65
  • Luan X, Ito Y, Dangaria S, Diekwisch TG. Dental follicle progenitor cell heterogeneity in the developing mouse periodontium. Stem Cells Dev 2006;15(4):595-608
  • Tsuchiya S, Honda M, Shinohara Y, et al. Collagen type I matrix affects molecular and cellular behavior of purified porcine dental follicle cells. Cell Tissue Res 2008;331(2):447-59
  • McCollum M, Sharpe PT. Evolution and development of teeth. J Anat 2001;199(Pt 1-2):153-9
  • Unda FJ, Martin A, Hilario E, et al. Dissection of the odontoblast differentiation process in vitro by a combination of FGF1, FGF2, and TGFβ1. Dev Dyn 2000;218(3):480-9
  • Laino G, Carinci F, Graziano A, et al. In vitro bone production using stem cells derived from human dental pulp. J Craniofac Surg 2006;17(3):511-5
  • D'Aquino R, Graziano A, Sampaolesi M, et al. Human postnatal dental pulp cells co-differentiate into osteoblasts and endotheliocytes: a pivotal synergy leading to adult bone tissue formation. Cell Death Differ 2007;14(6):1162-71
  • Seo BM, Sonoyama W, Yamaza T, et al. SHED repair critical-size calvarial defects in mice. Oral Dis 2008;14(5):428-34
  • Kerkis I, Ambrosio CE, Kerkis A, et al. Early transplantation of human immature dental pulp stem cells from baby teeth to golden retriever muscular dystrophy (GRMD) dogs: Local or systemic? J Transl Med 2008;6:35
  • Pierdomenico L, Bonsi L, Calvitti M, et al. Multipotent mesenchymal stem cells with immunosuppressive activity can be easily isolated from dental pulp. Transplantation 2005;80(6):836-42
  • Arminan A, Gandia C, Bartual C, et al. Cardiac differentiation is driven by NKX2.5 and GATA4 nuclear translocation in tissue specific mesenchymal stem cells. Stem Cells Dev 2009;18(6):907-18
  • Gandia C, Arminan A, Garcia-Verdugo JM, et al. Human dental pulp stem cells improve left ventricular function, induce angiogenesis, and reduce infarct size in rats with acute myocardial infarction. Stem Cells 2008;26(3):638-45
  • Nosrat IV, Widenfalk J, Olson L, Nosrat CA. Dental pulp cells produce neurotrophic factors, interact with trigeminal neurons in vitro, and rescue motoneurons after spinal cord injury. Dev Biol 2001;238(1):120-32
  • Nosrat IV, Smith CA, Mullally P, et al. Dental pulp cells provide neurotrophic support for dopaminergic neurons and differentiate into neurons in vitro; implications for tissue engineering and repair in the nervous system. Eur J Neurosci 2004;19(9):2388-98
  • Arana-Chavez VE, Massa LF. Odontoblasts: the cells forming and maintaining dentine. Int J Biochem Cell Biol 2004;36(8):1367-73
  • Smith AJ, Cassidy N, Perry H, et al. Reactionary dentinogenesis. Int J Dev Biol 1995;39(1):273-80
  • Schroder U. Effects of calcium hydroxide-containing pulp-capping agents on pulp cell migration, proliferation, and differentiation. J Dent Res 1985;64 Spec No:541-8
  • Braut A, Kollar EJ, Mina M. Analysis of the odontogenic and osteogenic potentials of dental pulp in vivo using a Col1a1-2.3-GFP transgene. Int J Dev Biol 2003;47(4):281-92
  • MacDougall M, Simmons D, Luan X, et al. Dentin phosphoprotein and dentin sialoprotein are cleavage products expressed from a single transcript coded by a gene on human chromosome 4. Dentin phosphoprotein DNA sequence determination. J Biol Chem 1997;272(2):835-42
  • Ueno A, Kitase Y, Moriyama K, Inoue H. MC3T3-E1-conditioned medium-induced mineralization by clonal rat dental pulp cells. Matrix Biol 2001;20(5-6):347-55
  • Nakashima M, Toyono T, Akamine A, Joyner A. Expression of growth/differentiation factor 11, a new member of the BMP/TGFβ superfamily during mouse embryogenesis. Mech Dev 1999;80(2):185-9
  • Nakashima M, Mizunuma K, Murakami T, Akamine A. Induction of dental pulp stem cell differentiation into odontoblasts by electroporation-mediated gene delivery of growth/differentiation factor 11 (Gdf11). Gene Ther 2002;9(12):814-8
  • Nakashima M. Induction of dentine in amputated pulp of dogs by recombinant human bone morphogenetic proteins-2 and -4 with collagen matrix. Arch Oral Biol 1994;39(12):1085-9
  • Yu J, Deng Z, Shi J, et al. Differentiation of dental pulp stem cells into regular-shaped dentin-pulp complex induced by tooth germ cell conditioned medium. Tissue Eng 2006;12(11):3097-105
  • Li Y, Jin F, Du Y, et al. Cementum and periodontal ligament-like tissue formation induced using bioengineered dentin. Tissue Eng Part A 2008;14(10):1731-42
  • Lin L, Shovlin F, Skribner J, Langeland K. Pulp biopsies from the teeth associated with periapical radiolucency. J Endod 1984;10(9):436-48
  • Lin LM, Skribner J. Why teeth associated with inflammatory periapical lesions can have a vital response. Clin Prev Dent 1990;12(1):3-4
  • Whittle M. Apexification of an infected untreated immature tooth. J Endod 2000;26(4):245-7
  • Rule DC, Winter GB. Root growth and apical repair subsequent to pulpal necrosis in children. Br Dent J 1966;120(12):586-90
  • Saad AY. Calcium hydroxide and apexogenesis. Oral Surg Oral Med Oral Pathol 1988;66(4):499-501
  • Mooney DJ, Powell C, Piana J, Rutherford B. Engineering dental pulp-like tissue in vitro. Biotechnol Prog 1996;12(6):865-8
  • Iohara K, Zheng L, Ito M, et al. Regeneration of dental pulp after pulpotomy by transplantation of CD31-/CD146- side population cells from a canine tooth. Regen Med 2009;4(3):377-85
  • Margolis HC, Beniash E, Fowler CE. Role of macromolecular assembly of enamel matrix proteins in enamel formation. J Dent Res 2006;85(9):775-93
  • Shinmura Y, Tsuchiya S, Hata K, Honda MJ. Quiescent epithelial cell rests of Malassez can differentiate into ameloblast-like cells. J Cell Physiol 2008;217(3):728-38
  • Hu B, Unda F, Bopp-Kuchler S, et al. Bone marrow cells can give rise to ameloblast-like cells. J Dent Res 2006;85(5):416-21
  • Sodek J. A new approach to assessing collagen turnover by using a micro-assay. A highly efficient and rapid turnover of collagen in rat periodontal tissues. Biochem J 1976;160(2):243-6
  • Mina M, Kollar EJ. The induction of odontogenesis in non-dental mesenchyme combined with early murine mandibular arch epithelium. Arch Oral Biol 1987;32(2):123-7
  • Kollar EJ, Mina M. Role of the early epithelium in the patterning of the teeth and Meckel's cartilage. J Craniofac Genet Dev Biol 1991;11(4):223-8
  • Ohazama A, Modino SA, Miletich I, Sharpe PT. Stem-cell-based tissue engineering of murine teeth. J Dent Res 2004;83(7):518-22
  • Hu B, Nadiri A, Kuchler-Bopp S, et al. Tissue engineering of tooth crown, root, and periodontium. Tissue Eng 2006;12(8):2069-75
  • Hu B, Nadiri A, Bopp-Kuchler S, et al. Dental epithelial histomorphogenesis in vitro. J Dent Res 2005;84(6):521-5
  • Nakao K, Morita R, Saji Y, et al. The development of a bioengineered organ germ method. Nat Methods 2007;4(3):227-30
  • Scadden DT. The stem-cell niche as an entity of action. Nature 2006;441(7097):1075-9
  • Diaz-Romero J, Gaillard JP, Grogan SP, et al. Immunophenotypic analysis of human articular chondrocytes: changes in surface markers associated with cell expansion in monolayer culture. J Cell Physiol 2005;202(3):731-42
  • Barbero A, Ploegert S, Heberer M, Martin I. Plasticity of clonal populations of dedifferentiated adult human articular chondrocytes. Arthritis Rheum 2003;48(5):1315-25
  • Shi S, Gronthos S. Perivascular niche of postnatal mesenchymal stem cells in human bone marrow and dental pulp.J Bone Miner Res 2003;18(4):696-704
  • Gronthos S, Zannettino AC, Hay SJ, et al. Molecular and cellular characterisation of highly purified stromal stem cells derived from human bone marrow. J Cell Sci 2003;116(Pt 9):1827-35

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