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Review Article

Which procedures and materials could be applied for full pulpotomy in permanent mature teeth? A systematic review

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Pages 541-551 | Received 16 Oct 2018, Accepted 27 Apr 2019, Published online: 30 May 2019

References

  • Alqaderi H, Lee C, Borzangy S, et al. Coronal pulpotomy for cariously exposed permanent posterior teeth with closed apices: a systematic review and meta-analysis. J Dent. 2016;44:1–7.
  • Tabarsi B, Parirokh M, Eghbal MJ, et al. A comparative study of dental pulp response to several pulpotomy agents. Int Endod J. 2010;43:565–571.
  • Kunert G, Kunert I, da Costa Filho L, et al. Permanent teeth pulpotomy survival analysis: retrospective follow-up. J Dent. 2015;43:1125–1131.
  • Cotton WR. Bacterial contamination as a factor in healing of pulp exposures. Oral Surg Oral Med Oral Pathol. 1974;38:441–450.
  • Kakehashi S, Stanley HR, Fitzgerald RJ. The effects of surgical exposures of dental pulps in germ-free and conventional laboratory rats. Oral Surg Oral Med Oral Pathol. 1965;20:340–349.
  • Cvek M, Granath L, Cleaton-Jones P, et al. Hard tissue barrier formation in pulpotomized monkey teeth capped with cyanoacrylate or calcium hydroxide for 10 and 60 minutes. J Dent Res. 1987;66:1166–1174.
  • Möller AJ, Fabricius L, Dahlén G, et al. Influence on periapical tissues of indigenous oral bacteria and necrotic pulp tissue in monkeys. Scand J Dent Res. 1981;89:475–484.
  • Englander H, Massler M, Curter W. Clinical evaluation of pulpotomy in young adults. J Dent Children. 1956;23:48–53.
  • Moher D, Shamseer L, Clarke M, et al. Preferred reporting items for systematic review and meta-analysis protocols (PRISMA-P) 2015 statement. Syst Rev. 2015;4:1.
  • Shamseer L, Moher D, Clarke M, et al. Preferred reporting items for systematic review and meta-analysis protocols (PRISMA-P) 2015: elaboration and explanation. Br Med J. 2015;349:g7647.
  • Zafar K, Khan FR. The need for more evidence for MTA pulpotomy in mature permanent teeth with periapical rarefaction. Int Endod J. 2017;50:1104.
  • Chien MM, Setzer S, Cleaton-Jones P. How does zinc oxide-eugenol compare to ferric sulphate as a pulpotomy material? SADJ. 2001;56:130–135.
  • Goldberg F, Massone EJ, Spielberg C. Evaluation of the dentinal bridge after pulpotomy and calcium hydroxide dressing. J Endod. 1984;10:318–320.
  • Khayat A, Abbasi A, Tanideh N. A comparative study of dentin bridge formation following pulpotomy using calcium hydroxide and mineral trioxide aggregate in young dogs. Iran J Vet Med. 2004;5:47–54.
  • Kozlov M, Massler M. Histologic effects of various drugs on amputated pulps of rat molars. Oral Surg Oral Med Oral Pathol. 1960;13:455–469.
  • Oguntebi BR, DeSchepper EJ, Taylor TS, et al. Postoperative pain incidence related to the type of emergency treatment of symptomatic pulpitis. Oral Surg Oral Med Oral Pathol. 1992;73:479–483.
  • Wolner SZ. Permanent tooth pulpotomy-report of a case. NYJ Dent. 1975;45:6–7.
  • Yilmaz Y, Guler C, Sahin H, et al. Evaluation of tooth-fragment reattachment: a clinical and laboratory study. Dent Traumatol. 2010;26:308–314.
  • Holland R, de Souza V, de Mello W, et al. Healing process of the pulp stump and periapical tissues in dog teeth. I. Histopathological findings following pulp extirpation. Rev Fac Odontol Aracatuba. 1977;6:47–57.
  • Holland R, de Souza V, de Mello W, et al. Healing process of the pulp stump and periapical tissues in dog teeth. II. Histopathological findings following root filling with zinc oxide-eugenol. Rev Fac Odontol Aracatuba. 1977;6:59–67.
  • Holland R, de Souza V, de Mello W, et al. Healing process of the pulp stump and periapical tissue in dog teeth. III. Histopathological findings following root filling with calcium hydroxide. Rev Fac Odontol Aracatuba. 1978;7:25–37.
  • Granath LE, Hagman G. Experimental pulpotomy in human bicuspids with reference to cutting technique. Acta Odontol Scand. 1971;29:155–163.
  • Mohammad SG, Raheel SA, Baroudi K. Histological evaluation of Allium sativum oil as a new medicament for pulp treatment of permanent teeth. J Contemp Dent Pract. 2015;16:85–90.
  • Sheikh-Nezami M, Mokhber N, Shamsian K, et al. Management of a midroot and complicated crown fracture: a case report. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 2009;107:e65–67.
  • Massone JE, Goldberg F, Barros RE. Histological evaluation of the effect of intrapulpal anesthesia in pulpotomies. Dent Traumatol. 1987;3:259–262.
  • Wang G, Wang C, Qin M. Pulp prognosis following conservative pulp treatment in teeth with complicated crown fractures - A retrospective study. Dent Traumatol. 2017;33:255–260.
  • Santini A. Assessment of the pulpotomy technique in human first permanent mandibular molars. Use of two direct inspection criteria. Br Dent J. 1983;155:151–154.
  • Santini AH. Intraoral comparison of calcium hydroxide (Calnex) alone and in combination with Ledermix in first permanent mandibular molars using two direct inspection criteria. J Dent. 1985;13:52–59.
  • Santini A. Long-term clinical assessment of pulpotomies with calcium hydroxide containing Ledermix in human permanent premolars and molars. Acta Odontol Pediatr. 1986;7:45–50.
  • Berk H. Maintaining vitality of injured permanent anterior teeth. J Am Dent Assoc. 1954;49:391–401.
  • Berk H, Krakow AA. A comparison of the management of pulpal pathosis in deciduous and permanent teeth. Oral Surg Oral Med Oral Pathol. 1972;34:944–955.
  • Yazdani S, Jadidfard M, Tahani B, et al. Health technology assessment of CEM pulpotomy in permanent molars with irreversible pulpitis. Iran Endod J. 2014;9:23–29.
  • Asgary S, Shirvai A. Pulpotomy with calcium hydroxide may be an effective alternative to root canal therapy in vital teeth. J Evid Based Dent Pract. 2016;16:64–66.
  • Bimstein E, Rotstein I. Cvek pulpotomy – Revisited. Dent Traumatol. 2016;32:438–442.
  • James VE, Englander HR, Massler M. Histologic response of amputated pulps to calcium compounds and antibiotics. Oral Surg Oral Med Oral Pathol. 1957;10:975–986.
  • Langer M, Ulmansky M, Sela J. Behaviour of human dental pulp to Calxyl with or without zinc oxide eugenol. Arch Oral Biol. 1970;15:189–194.
  • Schröder U, Granath LE. Early reaction of intact human teeth to calcium hydroxide following experimental pulpotomy and its significance to the development of hard tissue barrier. Odontol Revy. 1971;22:379–395.
  • Schröder U. Evaluation of healing following experimental pulpotomy of intact human teeth and capping with calcium hydroxide. Odontol Revy. 1972;23:329–340.
  • Schröder U, Granath LE. Scanning electron microscopy of hard tissue barrier following experimental pulpotomy of intact human teeth and capping with calcium hydroxide. Odontol Revy. 1972;23:211–220.
  • Schröder U. Effect of an extra-pulpal blood clot on healing following experimental pulpotomy and capping with calcium hydroxide. Odontol Revy. 1973;24:257–268.
  • Schröder U, Sundström B. Transmission electron microscopy of tissue changes following experimental pulpotomy of intact human teeth and capping with calcium hydroxide. Odontol Revy. 1974;25:57–68.
  • M de C R, De Souza V, Holland R. Effects of the dressing with calcium hydroxide under pressure on the pulpal healing of pulpotomized human teeth. Rev Fac Odontol Aracatuba. 1974;3:303–311.
  • Russo MC, Holland R, de Souza V. Radiographic and histological evaluation of the treatment of inflamed dental pulps. Int Endod J. 1982;15:137–142.
  • Inoue H, Taniguchi K, Okamura K, et al. Ultrastructural relation between nerve terminals and dentine bridge formation after pulpotomy in human teeth. Arch Oral Biol. 1995;40:669–675.
  • Asgary S, Ehsani S. Permanent molar pulpotomy with a new endodontic cement: a case series. J Conserv Dent. 2009;12:31–36.
  • Eghbal M, Asgary S, Baglue R, et al. MTA pulpotomy of human permanent molars with irreversible pulpitis. Aust Endod J. 2009;35:4–8.
  • Chueh L, Chiang C. Histology of Irreversible pulpitis premolars treated with mineral trioxide aggregate pulpotomy. Oper Dent. 2010;35:370–374.
  • Nosrat A, Peimani A, Asgary S. A preliminary report on histological outcome of pulpotomy with endodontic biomaterials vs calcium hydroxide. Restor Dent Endod. 2013;38:227.
  • Bhagat D, Sunder R, Devendrappa S, et al. A comparative evaluation of ProRoot mineral trioxide aggregate and Portland cement as a pulpotomy medicament. J Indian Soc Pedod Prev Dent. 2016;34:172–176.
  • Foreman PC. Resolution of a periapical radiolucency following renewal of the pulpotomy dressing. Int Endod J. 1980;13:41–43.
  • Moule AJ, Oswald RJ. Resolution of periapical radiolucency following pulpotomy. J Endod. 1983;9:388–389.
  • Calişkan MK. Clinical reliability of the dentine bridge formed after pulpotomy: a case report. Int Endod J. 1994;27:52–55.
  • Asgary S. Calcium-enriched mixture pulpotomy of a human permanent molar with irreversible pulpitis and condensing apical periodontitis. J Conserv Dent. 2011;14:90–93.
  • Hiremath H, Saikalyan S, Kulkarni SS, et al. Second-generation platelet concentrate (PRF) as a pulpotomy medicament in a permanent molar with pulpitis: a case report. Int Endod J. 2012;45:105–112.
  • Barngkgei I, Halboub E, Alboni R. Pulpotomy of symptomatic permanent teeth with carious exposure using mineral trioxide aggregate. Iran Endod J. 2013;8:65–68.
  • Asgary S, Fazlyab M, Sabbagh S, et al. Outcomes of different vital pulp therapy techniques on symptomatic permanent teeth: a case series. Iran Endod J. 2014;9:295–300.
  • Asgary S, Kemal Çalışkan M. Vital pulp therapy of a mature molar with concurrent hyperplastic pulpitis, internal root resorption and periradicular periodontitis: a case report. Iran Endod J. 2015;10:284–286.
  • Borkar SA, Ataide I. Biodentine pulpotomy several days after pulp exposure: four case reports. J Conserv Dent. 2015;18:73–78.
  • Solomon R, Faizuddin U, Karunakar P, et al. Coronal pulpotomy technique analysis as an alternative to pulpectomy for preserving the tooth vitality, in the context of tissue regeneration: a correlated clinical study across 4 adult permanent molars. Case Rep Dent. 2015;2015:916060.
  • Soni H. Biodentine pulpotomy in mature permanent molar: a case report. J Clin Diagn Res. 2016;10:ZD09–ZD11.
  • Asgary S, Verma P, Nosrat A. Treatment outcomes of full pulpotomy as an alternative to tooth extraction in molars with hyperplastic/irreversible pulpitis: a case report. Iran Endod J. 2017;12:261–265.
  • Caliskan MK. Success of pulpotomy in the management of hyperplastic pulpitis. Int Endod J. 1993;26:142–148.
  • Calişkan MK. Pulpotomy of carious vital teeth with periapical involvement. Int Endod J. 1995;28:172–176.
  • Demarco F, Rosa M, Tarquínio S, et al. Influence of the restoration quality on the success of pulpotomy treatment: a preliminary retrospective study. J Appl Oral Sci. 2005;13:72–77.
  • McDougal RA, Delano EO, Caplan D, et al. Success of an alternative for interim management of irreversible pulpitis. J Am Dent Assoc. 2004;135:1707–1712.
  • DeRosa TA. A retrospective evaluation of pulpotomy as an alternative to extraction. Gen Dent. 2006;54:37–40.
  • Nyerere J, Matee M, Simon E. Emergency pulpotomy in relieving acute dental pain among Tanzanian patients. BMC Oral Health. 2006;6:1.
  • Simon S, Perard M, Zanini M, et al. Should pulp chamber pulpotomy be seen as a permanent treatment? Some preliminary thoughts. Int Endod J. 2013;46:79–87.
  • Alqaderi H, Al-Mutawa S, Qudeimat M. MTA pulpotomy as an alternative to root canal treatment in children’s permanent teeth in a dental public health setting. J Dent. 2014;42:1390–1395.
  • Cousson P, Nicolas E, Hennequin M. A follow-up study of pulpotomies and root canal treatments performed under general anaesthesia. Clin Oral Invest. 2014;18:1155–1163.
  • Linsuwanont P, Wimonsutthikul K, Pothimoke U, et al. Treatment outcomes of mineral trioxide aggregate pulpotomy in vital permanent teeth with carious pulp exposure: the retrospective study. J Endod. 2017;43:225–230.
  • Qudeimat MA, Alyahya A, Hasan AA, et al. Mineral trioxide aggregate pulpotomy for permanent molars with clinical signs indicative of irreversible pulpitis: a preliminary study. Int Endod J. 2017;50:126–134.
  • Taha NA, Ahmad MB, Ghanim A. Assessment of mineral trioxide aggregate pulpotomy in mature permanent teeth with carious exposures. Int Endod J. 2017;50:117–125.
  • Taha NA, Abdulkhader SZ. Full pulpotomy with biodentine in symptomatic young permanent teeth with carious exposure. J Endod. 2018;44:932–937.
  • Taha NA, Abdelkhader SZ. Outcome of full pulpotomy using Biodentine in adult patients with symptoms indicative of irreversible pulpitis. Int Endod J. 2018;51:819–828.
  • Teixeira LS, Demarco FF, Coppola MC, et al. Clinical and radiographic evaluation of pulpotomies performed under intrapulpal injection of anaesthetic solution. Int Endod J. 2001;34:440–446.
  • Asgary S, Eghbal M, Ghoddusi J, et al. One-year results of vital pulp therapy in permanent molars with irreversible pulpitis: an ongoing multicenter, randomized, non-inferiority clinical trial. Clin Oral Invest. 2013;17:431–439.
  • Asgary S, Eghbal M. Treatment outcomes of pulpotomy in permanent molars with irreversible pulpitis using biomaterials: a multi-center randomized controlled trial. Acta Odontol Scand. 2013;71:130–136.
  • Asgary S, Eghbal M, Ghoddusi J. Two-year results of vital pulp therapy in permanent molars with irreversible pulpitis: an ongoing multicenter randomized clinical trial. Clin Oral Invest. 2014;18:635–641.
  • Asgary S, Eghbal M, Fazlyab M, et al. Five-year results of vital pulp therapy in permanent molars with irreversible pulpitis: a non-inferiority multicenter randomized clinical trial. Clin Oral Invest. 2015;19:335–341.
  • Kumar V, Juneja R, Duhan J, et al. Comparative evaluation of platelet-rich fibrin, mineral trioxide aggregate, and calcium hydroxide as pulpotomy agents in permanent molars with irreversible pulpitis: a randomized controlled trial. Contemp Clin Dent. 2016;7:512–518.
  • Awawdeh L, Al-Qudah A, Hamouri H, et al. Outcomes of vital pulp therapy using mineral trioxide aggregate or biodentine: a prospective randomized clinical trial. J Endod. 2018;44:1603–1609.
  • Asgary S, Hassanizadeh R, Torabzadeh H, et al. Treatment outcomes of 4 vital pulp therapies in mature molars. J Endod. 2018;44:529–535.
  • Galani M, Tewari S, Sangwan P, et al. Comparative evaluation of postoperative pain and success rate after pulpotomy and root canal treatment in cariously exposed mature permanent molars: a randomized controlled trial. J Endod. 2017;43:1953–1962.
  • Asgary S, Eghbal MJ. A clinical trial of pulpotomy vs. root canal therapy of mature molars. J Dent Res. 2010;89:1080–1085.
  • OCEBM Levels of Evidence Working Group. The Oxford 2011 Levels of Evidence [Internet]. Oxford Centre for Evidence-Based Medicine; 2011. [cited 12 avr 2019] Available from: https://www.cebm.net/wp-content/uploads/2014/06/CEBM-Levels-of-Evidence-2.1.pdf
  • Asgary S, Eghbal MJ. The effect of pulpotomy using a calcium-enriched mixture cement versus one-visit root canal therapy on postoperative pain relief in irreversible pulpitis: a randomized clinical trial. Odontology. 2010;98:126–133.
  • Asgary S, Eghbal MJ, Bagheban AA. Long-term outcomes of pulpotomy in permanent teeth with irreversible pulpitis: a multi-center randomized controlled trial. Am J Dent. 2017;30:151–155.
  • American Association of Endodontists. Endodontic Diagnosis [Internet]. 2013 [cited 12 avr 2019] p. 1‒6. Available from: https://www.aae.org/specialty/newsletter/endodontic-diagnosis/
  • European Society of Endodontology. Quality guidelines for endodontic treatment: consensus report of the European Society of Endodontology. Int Endod J. 2006;39:921–930.
  • Asgary S, Eghbal M, Parirokh M, et al. Sealing ability of three commercial mineral trioxide aggregates and an experimental root-end filling material. Iran Endod J. 2006;1:101–105.
  • Parirokh M, Torabinejad M. Mineral trioxide aggregate: a comprehensive literature review–Part I: chemical, physical, and antibacterial properties. J Endod. 2010;36:16–27.
  • Utneja S, Nawal RR, Talwar S, et al. Current perspectives of bio-ceramic technology in endodontics: calcium enriched mixture cement - review of its composition, properties and applications. Restor Dent Endod. 2015;40:1–13.
  • Heyeraas KJ. Pulpal, microvascular, and tissue pressure. J Dent Res. 1985;64:585–589.
  • Langeland K. Tissue response to dental caries. Dent Traumatol. 1987;3:149–171.
  • Zanini M, Meyer E, Simon S. Pulp inflammation diagnosis from clinical to inflammatory mediators: a systematic review. J Endod. 2017;43:1033–1051.
  • Duarte MAH, Marciano MA, Vivan RR, et al. Tricalcium silicate-based cements: properties and modifications. Braz Oral Res. 2018;32:e70.
  • Opdam NJ, Bronkhorst EM, Loomans BA, et al. 12-year survival of composite vs. amalgam restorations. J Dent Res. 2010;89:1063–1067.
  • UNEP. Global Mercury Assessment 2013: Sources, emissions, releases, and environmental transport [Internet]. Geneva, Switzerland: UNEP Chemicals Branch; 2013; [cité 16 janv 2019]. Disponible sur: https://wedocs.unep.org/handle/20.500.11822/7984
  • Mahood Q, Van Eerd D, Irvin E. Searching for grey literature for systematic reviews: challenges and benefits. Res Synth Methods. 2014;5:221–234.
  • Yaylali IE, Alaçam T. Critical assessment of search strategies in systematic reviews in endodontics. J Endod. 2016;42:854–860.

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