[1] Zhang W, Yelick PC. Vital pulp therapy-current progress of dental pulp regeneration and revascularization [J]. Int J Dent, 2010, 2010: 1-9. [2] Peng L, Ye L, Zhou XD. Mesenchymal stem cells and tooth engineering [J]. Int J Oral Sci, 2009, 1(1): 6-12. [3] Sakai VT, Cordeiro MM, Dong Z, et al. Tooth slice/scaffold model of dental pulp tissue engineering [J]. Adv Dent Res, 2011, 23(3): 325-332. [4] Trope M. Treatment of the immature tooth with a non-vital pulp and apical periodontitis [J]. Dent Clin North Am, 2010, 54(2): 313-324. [5] Windley W, Teixeira F, Levin L, et al. Disinfection of immature teeth with a triple antibiotic paste [J]. J Endod, 2005, 31(6): 439-443. [6] Adl A, Hamedi S, Sedigh Shams M, et al. The ability of triple antibiotic paste and calcium hydroxide in disinfection of dentinal tubules [J]. Iran Endod J, 2014, 9(2): 123-126. [7] Devaraj S, Jagannathan N, Neelakantan P. Antibiofilm efficacy of photoactivated curcumin, triple and double antibiotic paste, 2% chlorhexidine and calcium hydroxide against Enterococcus fecalis in vitro [J]. Sci Rep, 2016, 6: 24797. [8] Albuquerque MT, Ryan SJ, Munchow EA, et al. Antimicrobial effects of novel triple antibiotic paste-mimic scaffolds on actinomyces naeslundii biofilm [J]. J Endod, 2015, 41(8): 1337-1343. [9] Alyas SM, Fischer BI, Ehrlich Y, et al. Direct and indirect antibacterial effects of various concentrations of triple antibiotic pastes loaded in a methylcellulose system [J]. J Oral Sci, 2016, 58(4): 575-582. [10] Chuensombat S, Khemaleelakul S, Chattipakorn S, et al. Cytotoxic effects and antibacterial efficacy of a 3-antibiotic combination: an in vitro study [J]. J Endod, 2013, 39(6): 813-819. [11] Kamocki K, Nor JE, Bottino MC. Dental pulp stem cell responses to novel antibiotic-containing scaffolds for regenerative endodontics [J]. Int Endod J, 2015, 48(12): 1147-1156. [12] Sabrah AH, Yassen GH, Liu WC, et al. The effect of diluted triple and double antibiotic pastes on dental pulp stem cells and established Enterococcus faecalis biofilm [J]. Clin Oral Investig, 2015, 19(8): 2059-2066. [13] Pankajakshan D, Albuquerque MT, Evans JD, et al. Triple antibiotic polymer nanofibers for intracanal drug delivery: effects on dual species biofilm and cell function [J]. J Endod, 2016, 42(10): 1490-1495. [14] Soory M. A role for non-antimicrobial actions of tetracyclines in combating oxidative stress in periodontal and metabolic diseases: a literature review [J]. Open Dent J, 2008, 2: 5-12. [15] Ramamurthy NS, Rifkin BR, Greenwald RA, et al. Inhibition of matrix metalloproteinase-mediated periodontal bone loss in rats: a comparison of 6 chemically modified tetracyclines [J]. J Periodontol, 2002, 73(7): 726-734. [16] Bose R, Nummikoski P, Hargreaves K. A retrospective evaluation of radiographic outcomes in immature teeth with necrotic root canal systems treated with regenerative endodontic procedures [J]. J Endod, 2009, 35(10): 1343-1349. [17] Scarparo RK, Dondoni L, Bottcher DE, et al. Apical periodontium response to enamel matrix derivative as an intracanal medication in rat immature teeth with pulp necrosis: radiographic and histologic findings [J]. J Endod, 2012, 38(4): 449-453. [18] Schmoeckel J, Mourad MS, Splieth CH, et al. Management of an immature, partially necrotic permanent molar by pulp revascularization: Two-year follow-up [J]. Quintessence Int, 2017, 48(4): 309-313. [19] Solomon RV, Faizuddin U, Guniganti SS, et al. Analysis of the rate of maturogenesis of a traumatized Cvek's stage 3 anterior tooth treated with platelet-rich fibrin as a regenerative tool using three-dimensional cone-beam computed tomography: an original case report [J]. Indian J Dent Res, 2015, 26(1): 90-95. [20] Jung IY, Lee SJ, Hargreaves KM. Biologically based treatment of immature permanent teeth with pulpal necrosis: a case series [J]. J Endod, 2008, 34(7): 876-887. [21] Ding RY, Cheung GS, Chen J, et al. Pulp revascularization of immature teeth with apical periodontitis: a clinical study [J]. J Endod, 2009, 35(5): 745-749. [22] Yassen GH, Sabrah AH, Eckert GJ, et al. Effect of different endodontic regeneration protocols on wettability, roughness, and chemical composition of surface dentin [J]. J Endod, 2015, 41(6): 956-960. [23] Yilmaz S, Dumani A, Yoldas O. The effect of antibiotic pastes on microhardness of dentin [J]. Dent Traumatol, 2016, 32(1): 27-31. [24] Akcay M, Arslan H, Yasa B, et al. Spectrophotometric analysis of crown discoloration induced by various antibiotic pastes used in revascularization [J]. J Endod, 2014, 40(6): 845-848. [25] Santos LG, Felippe WT, Souza BD, et al. Crown discoloration promoted by materials used in regenerative endodontic procedures and effect of dental bleaching: spectrophotometric analysis [J]. J Appl Oral Sci, 2017, 25(2): 234-242. [26] Porter ML, Munchow EA, Albuquerque MT, et al. Effects of novel 3-dimensional antibiotic-containing electrospun scaffolds on dentin discoloration [J]. J Endod, 2016, 42(1): 106-112. [27] Hausermann P, Scherer K, Weber M, et al. Ciprofloxacin-induced acute generalized exanthematous pustulosis mimicking bullous drug eruption confirmed by a positive patch test [J]. Dermatology, 2005, 211(3): 277-280. [28] De Paz S, Perez A, Gomez M, et al. Severe hypersensitivity reaction to minocycline [J]. J Investig Allergol Clin Immunol, 1999, 9(6): 403-404. [29] Hoefnagel JJ, Van Leeuwen RL, Mattie H, et al. Side effects of minocycline in the treatment of acne vulgaris [J]. Ned Tijdschr Geneeskd, 1997, 141(29): 1424-1427. |