Page 473 - Read Online
P. 473
Citterio et al. Plast Aesthet Res 2020;7:41 I http://dx.doi.org/10.20517/2347-9264.2020.29 Page 17 of 20
16. Claffey N, Egelberg J. Clinical indicators of probing attachment loss following initial periodontal treatment in advanced periodontitis
patients. J Clin Periodontol 1995;22:690-6.
17. Graziani F, Gennai S, Cei S, Cairo F, Baggiani A, et al. Clinical performance of access flap surgery in the treatment of the intrabony
defect. A systematic review and meta-analysis of randomized clinical trials. J Clin Periodontol 2012;39:145-56.
18. Aimetti M, Mariani GM, Ferrarotti F, Ercoli E, Audagna M, et al. Osseous resective surgery with and without fibre retention technique in
the treatment of shallow intrabony defects: a split-mouth randomized clinical trial. J Clin Periodontol 2015;42:182-9.
19. Ferrarotti F, Giraudi M, Citterio F, Fratini A, Gualini G, et al. Pocket elimination after osseous resective surgery: a systematic review and
meta-analysis. J Clin Periodontol 2020; doi: 10.1111/jcpe.13281.
20. Cortellini P, Tonetti MS. Clinical performance of a regenerative strategy for intrabony defects: scientific evidence and clinical experience.
J Periodontol 2005;76:341-50.
21. Kao RT, Nares S, Reynolds MA. Periodontal regeneration - intrabony defects: a systematic review from the AAP Regeneration Workshop.
J Periodontol 2015;86:S77-104.
22. Avila-Ortiz G, De Buitrago JG, Reddy MS. Periodontal regeneration - furcation defects: a systematic review from the AAP Regeneration
Workshop. J Periodontol 2015;86:S108-30.
23. Cortellini P, Tonetti MS. Clinical concepts for regenerative therapy in intrabony defects. Periodontol 2000 2015;68:282-307.
24. Gottlow J, Nyman S, Karring T, Lindhe J. New attachment formation as the result of controlled tissue regeneration. J Clin Periodontol
1984;11:494-503.
25. Cortellini P, Tonetti MS. A minimally invasive surgical technique with an enamel matrix derivative in the regenerative treatment of intra-
bony defects: a novel approach to limit morbidity. J Clin Periodontol 2007;34:87-93.
26. Cortellini P, Tonetti MS. Improved wound stability with a modified minimally invasive surgical technique in the regenerative treatment of
isolated interdental intrabony defects. J Clin Periodontol 2009;36:157-63.
27. Harrel SK. A minimally invasive surgical approach for periodontal regeneration: surgical technique and observations. J Periodontol
1999;70:1547-57.
28. Trombelli L, Farina R, FrancESCshetti G, Calura G. Single-flap approach with buccal access in periodontal reconstructive procedures. J
Periodontol 2009;80:353-60.
29. Hammarström L. The role of enamel matrix proteins in the development of cementum and periodontal tissues. Ciba Found Symp
1997;205:246-60.
30. Trombelli L, Farina R. Clinical outcomes with bioactive agents alone or in combination with grafting or guided tissue regeneration. J Clin
Periodontol 2008;35:117-35.
31. Palmer RM, Cortellini P. Group B of European Workshop on Periodontology. Periodontal tissue engineering and regeneration: Consensus
Report of the Sixth European Workshop on Periodontology. J Clin Periodontol 2008;35:83-6.
32. Biehl JK, Russell B. Introduction to stem cell therapy. J CardiovASCs Nurs 2009;24:98-105.
33. Kobolak J, Dinnyes A, Memic A, Khademhosseini A, Mobasheri A. Mesenchymal stem cells: identification, phenotypic characterization,
biological properties and potential for regenerative medicine through biomaterial micro-engineering of their niche. Methods 2016;99:62-8.
34. 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 Dent Res 2009;88:792-806.
35. Gronthos S, Mankani M, Brahim J, Robey PG, Shi S. Postnatal human dental pulp stem cells (DPSCs) in vitro and in vivo. Proc Natl
Acad Sci U S A 2000;97:13625-30.
36. Miura M, Gronthos S, Zhao M, Lu B, Fisher LW, et al. SHEDs: stem cells from human exfoliated deciduous teeth. Proc Natl Acad Sci U
S A 2003;100:5807-12.
37. Seo BM, Miura M, Gronthos S, Bartold PM, Batouli S, et al. Investigation of multipotent postnatal stem cells from human periodontal
ligament. Lancet 2004;364:149-55.
38. Morsczeck C, Moehl C, Götz W, Heredia A, Schäffer TE, et al. In vitro differentiation of human dental follicle cells with dexamethasone
and insulin. Cell Biol Int 2005;29:567-75.
39. Sonoyama W, Liu Y, Yamaza T, Tuan RS, Wang S, et al. Characterization of the apical papilla and its residing stem cells from human
immature permanent teeth: a pilot study. J Endod 2008;34:166-71.
40. Gronthos S, Brahim J, Li W, Fisher LW, Cherman N, et al. Stem cell properties of human dental pulp stem cells. J Dent Res 2002;81:531-5.
41. Tziafas D, Kodonas K. Differentiation potential of dental papilla, dental pulp, and apical papilla progenitor cells. J Endod 2010;36:781-9.
42. Yu J, He H, Tang C, Zhang G, Li Y, et al. Differentiation potential of STRO-1+ dental pulp stem cells changes during cell passaging.
BMC Cell Biol 2010;11:32.
43. Graziano A, d’Aquino R, Cusella-De Angelis MG, Francesco FD, Giordano A, et al. Scaffold’s surface geometry significantly affects
human stem cell bone tissue engineering. J Cell Physiol 2008;214:166-72.
44. Papaccio G, Graziano A, d’Aquino R, Graziano MF, Pirozzi G, et al. Long-term cryopreservation of dental pulp stem cells (SBP-DPSCs)
and their differentiated osteoblasts: a cell source for tissue repair. J Cell Physiol 2006;208:319-25.
45. Su WT, Chiou WL, Yu HH, Huang TY. Differentiation potential of SHEDs using biomimetic periosteum containing dexamethasone.
Mater Sci Eng C Mater Biol Appl 2016;58:1036-45.
46. Gao X, Shen Z, Guan M, Huang Q, Chen L, et al. Immunomodulatory role of stem cells from human exfoliated deciduous teeth on
periodontal regeneration. Tissue Eng Part A 2018;24:1341-53.
47. Nakamura S, Yamada Y, Katagiri W, Sugito T, Ito K, et al. Stem cell proliferation pathways comparison between human exfoliated
deciduous teeth and dental pulp stem cells by gene expression profile from promising dental pulp. J Endod 2009;35:1536-42.