[1] Aguilar P, Linsuwanont P. Vital pulp therapy in vital permanent teeth with cariously exposed pulp: a systematic review[J]. J Endod, 2011,37(5):581-587.
[2] Iwaya SI,Ikawa M,Kubota M. Revascularization of an immature permanent tooth with apical periodontitis and sinus tract [J]. Dent Traumatol,2001,17(4):185-187.
[3] CDT 2011-2012: the ADA practical guide to dental procedure codes[C]. Chicago: American Dental Association, 2010.
[4] Huang GT, Yamaza T, Shea LD, et al. Stem/progenitor cell-mediated de novoregeneration of dental pulp with newly depositedcontinuous layer of dentin in an in vivo model[J]. Tissue Eng Part A, 2010,16(2): 605-615.
[5] Iohara K, Imabayashi K, Ishizaka R, et al. Complete pulp regeneration afterpulpectomy by transplantation of CD105+ stem cellswith stromal cell-derived factor-1[J]. Tissue Eng Part A,2011,17(15-16): 1911-1920.
[6] Ishizaka R, Iohara K, Murakami M, et al. Regeneration of dental pulp followingpulpectomy by fractionated stem/progenitor cells frombone marrow and adipose tissue[J]. Biomaterials, 2012,33(7): 2109-2118.
[7] Thesleff I, Tummers M. Tooth organogenesis and regeneration[J/OL]. StemBook,2008.[2014-03-27]. http://www.stembook.org/node/551.
[8] Jiang X, Iseki S, Maxson RE, et al. Tissue origins and interactions inthe mammalian skull vault[J]. Dev Biol, 2002, 241(1): 106-116.
[9] Mao JJ, Prockop DJ. Stem cells in the face: tooth regeneration and beyond[J]. Cell Stem Cell, 2012, 11(3): 291-301.
[10] Seo BM, Miura M, Gronthos S, et al. Investigation of multipotent postnatal stem cells from human periodontal ligament[J].Lancet, 2004, 364(9429): 149-155.
[11] Huang GT. Dental pulp and dentin tissue engineering and regeneration: advancement and challenge[J]. Front Biosci (Elite Ed), 2011, 3: 788-800.
[12] Huang GT, Gronthos S, Shi S. Mesenchymal stem cells derived from dental tissues vs. those from other sources: their biology and role in regenerative medicine[J]. J Dent Res, 2009, 88(9): 792-806.
[13] 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[J]. Regen Med, 2009,4(3):377-385.
[14] Kuo TF, Huang AT, Chang HH, et al. Regeneration of dentin-pulp complex with a.cementum and periodontal ligament formation using dental bud cells in b.gelatin-chondroitin-hyaluronan tri-copolymer scaffold in swine[J]. J Biomed Mater Res A, 2008,86(4):1062-1068.
[15] Cordeiro MM, Dong Z, Kaneko T, et al. Dental pulp tissue engineering with stem cells from exfoliated deciduous teeth[J]. J Endod, 2008,34(8):962-969.
[16] Iohara K, Zheng L, Ito M, et al. Side population cells isolated from porcine dentalpulp tissue with self-renewal and multipotency for dentinogenesis, chondrogenesis,adipogenesis, and neurogenesis[J]. Stem Cells, 2006,24(11):2493
[17] Laird DJ, von Andrian UH, Wagers AJ. Stem cell trafficking in tissue development, growth, and disease[J]. Cell, 2008,132(4):612-630.
[18] Chen FM, Wu LA, Zhang M, et al. Homing of endogenousstem/pregenitor cells for in situ tissue regeneration:promises, strategies, and translational perspectives[J].Biomaterials, 2011, 32(12):3189-3209.
[19] Mao JJ, Stosich MS, Moioli EK, et al. Facial reconstruction by biosurgery: cell transplantation versus cell homing[J]. Tissue Eng Part B Rev, 2010,16(2):257-262.
[20] Crisan M, Yap S, Casteilla L, et al. A perivascular origin for mesenchymal stem cells in multiple human organs[J]. Cell Stem Cell, 2008,3(3):301-313.
[21] Krankel N, Spinetti G, Amadesi S, et al. Targeting stem cell niches and trafficking for cardiovascular therapy[J]. Pharmacol Ther,2011,129(1):62-81.
[22] Kim JY, Xin X, Moioli EK, et al. Regeneration of dental-pulp-like tissue by chemotaxis-induced cell homing[J]. Tissue Eng Part A, 2010,16(10):3023-3031.
[23] Zhang W, Walboomers XF, van Kuppevelt TH, et al. The performance of humandental pulp stem cells on different three-dimensional scaffold materials[J]. Biomaterials,2006,27(33):5658-5668.
[24] El-Backly RM, Massoud AG, El-Bacdry AM,et al. Regeneration of dentine /pulp-like tissue using a dental pulp stem cell/poly( lactic-co-glycolic) acid scaffold construct in New Zealand white rabbits[J]. Aust Endod J,2008, 34(2): 52-67.
[25] Xiong X, Ghosh R, Hiller E, et al. A new procedure for rapid, high yield purification of type I collagen for tissue engineering[J]. Process Biochemistry,2009,44(11): 1210-1212.
[26] Reyes CD, García AJ. Alpha-2 beta-1 integrin-specific collagen mimetic surfaces supporting osteoblastic differentiation[J]. J Biomed Mater Res A,2004,69( 4) : 591-600.
[27] Prescott RS, Alsanea R,Fayad MI,et al. In vivo generation of dental pulp-like tissue by using dental pulp stem cells,a collagen scaffold,and dentin matrix protein 1 after subcutaneous transplantation in mice[J]. J Endod, 2008,34( 4) : 421-426.
[28] Grando Mattuella L,Westphalen Bento L,de Figueiredo JA, et al.Vascular endothelial growth factor and its relationship with the dental pulp[J]. J Endod, 2007,33(5):524-530.
[29] Smith AJ, Murray PE, Lumley PJ. Preserving vital pulp in operative dentistry: I. A biological approach[J]. Dent Update, 2002, 29(2):64-69.
[30] Hellberg C, Ostman A, Heldin CH. PDGF and vessel maturation[J]. Recent Results Cancer Res, 2010, 180:103-114.
[31] Rutherford RB, TrailSmith MD, Ryan ME, et al. Synergistic effects of dexamethasone on platelet-derived growth factor mitogenesis in vitro[J]. Arch Oral Biol, 1992, 37(2):139-145.
[32] Roberts-Clark DJ, Smith AJ. Angiogenic growth factors in human dentine matrix[J]. Arch Oral Biol, 2000, 45(11):1013-1016.
[33] Gu K, Smoke RH, Rutherford RB. Expression of genes for bone morphogenetic proteins and receptors in human dental pulp[J]. Arch Oral Biol, 1996, 41(10):919-923.
[34] Yang W, Harris MA, Cui Y, et al. Bmp2 is requiredfor odontoblast differentiation and pulp vasculogenesis[J]. J Dent Res, 2012, 91(1):58-64.
[35] Liang RF, Nishimura S, Sato S. Effects of epidermal frowth factor and transforming growth factor-beta on insulin-induced differentiation in rat dental pulp cells[J]. Arch Oral Biol, 1992, 37(10):789-795.
[36] Melin M, Joffre-Romeas A, Farges JC, et al. Effects of TGF-β1 on dental pulp cells in cultured human tooth slices[J]. J Dent Res, 2000, 79(9):1689-1696.
[37] Kwon, SM, Kin SA, Yoon JH, et al. Transforming growth factor beta1-induced heat shock protein 27 activation promotes migration of mouse dental papilla-derived MDPC-23 cells[J]. J Endod, 2010, 36(8):1332-1335. |