Skip to main content
Erschienen in: Clinical Oral Investigations 2/2019

10.05.2018 | Original Article

The evaluation of MTA and Biodentine as a pulpotomy materials for carious exposures in primary teeth

verfasst von: Burcu Nihan Çelik, Merve Safa Mutluay, Volkan Arıkan, Şaziye Sarı

Erschienen in: Clinical Oral Investigations | Ausgabe 2/2019

Einloggen, um Zugang zu erhalten

Abstract

Objective

This study examined the effects of MTA and Biodentine on the clinical and radiographic success rates of pulpotomies performed on primary teeth with carious pulp exposures.

Materials and methods

This study was conducted with 44 mandibular primary molars requiring vital pulpotomy. Carious dentin surrounding the exposure site was used as the inclusion criteria for all teeth, which were randomly divided into two groups according to pulpotomy material [MTA group (n = 24), Biodentine group (n = 20)]. Treatment was followed up clinically and radiologically for 24 months. Pulp canal obliteration was not regarded as a failure.

Results

Clinical and radiographic success rates at the end of 24 months were 100% for the MTA group and 89.4% for the Biodentine group. Success rates did not vary significantly between the groups (p = 0.646). Pulp canal obliteration was observed in two teeth (8.3%) in the MTA group at 6 months, but the teeth were found to be stabilized by 24 months.

Conclusion

The long-term clinical and radiographic success rates obtained in this study indicate that both MTA and Biodentine are appropriate options for pulpotomy treatment of primary teeth with carious exposure in patients whose teeth should be retained for long periods of time.

Clinical relevance

The etiology of exposure determines pulpal response, making it crucial to distinguish between mechanical and carious exposures. The carious exposure is presumed to be accompanied by severe inflammation, which makes the prognosis of treatment unpredictable. Biomaterials can be used especially in cases with carious pulp exposures.
Literatur
1.
Zurück zum Zitat Ranly DM, Garcia-Godoy F (2000) Current and potential pulp therapies for primary and young permanent teeth. Review. J Dent 28:153–161CrossRef Ranly DM, Garcia-Godoy F (2000) Current and potential pulp therapies for primary and young permanent teeth. Review. J Dent 28:153–161CrossRef
2.
Zurück zum Zitat Rodd HD, Waterhouse PJ, Fuks AB, Fayle SA, Moffat MA (2006) Pulp therapy for primary molars. British Society of Paediatric Dentistry. Int J Paediatr Dent 16(Suppl 1):15–23CrossRef Rodd HD, Waterhouse PJ, Fuks AB, Fayle SA, Moffat MA (2006) Pulp therapy for primary molars. British Society of Paediatric Dentistry. Int J Paediatr Dent 16(Suppl 1):15–23CrossRef
4.
Zurück zum Zitat Starkey P (1968) The management of deep caries and pulpally involved teeth in children. In: Goldman HM Current therapy in dentistry, vol.: 3, St Louis: Mosby. Chapter 41. p.:896–941 Starkey P (1968) The management of deep caries and pulpally involved teeth in children. In: Goldman HM Current therapy in dentistry, vol.: 3, St Louis: Mosby. Chapter 41. p.:896–941
5.
Zurück zum Zitat Cvek M, Cleaton-Jones PE, Austin JC, Andreasen JO (1982) Pulp reactions to exposure after experimental crown fractures or grinding in adult monkeys. J Endod 8:391–397CrossRef Cvek M, Cleaton-Jones PE, Austin JC, Andreasen JO (1982) Pulp reactions to exposure after experimental crown fractures or grinding in adult monkeys. J Endod 8:391–397CrossRef
6.
Zurück zum Zitat Hoshino E, Ando N, Sato M, Kota K (1992) Bacterial invasion of non-exposed dental pulp. Int Endod J 25:2–5CrossRef Hoshino E, Ando N, Sato M, Kota K (1992) Bacterial invasion of non-exposed dental pulp. Int Endod J 25:2–5CrossRef
7.
Zurück zum Zitat Camp JH (2008) Diagnosis dilemmas in vital pulp therapy: treatment for the toothache is changing, especially in young, immature teeth. Review. Pediatr Dent 30:197–205PubMed Camp JH (2008) Diagnosis dilemmas in vital pulp therapy: treatment for the toothache is changing, especially in young, immature teeth. Review. Pediatr Dent 30:197–205PubMed
8.
Zurück zum Zitat Beltrame AP, Bolan M, Serratine AC, Rocha MJ (2012) Bacterial intensity and localization in primary molars with caries disease. J Indian Soc Pedod Prev Dent 30:32–40CrossRef Beltrame AP, Bolan M, Serratine AC, Rocha MJ (2012) Bacterial intensity and localization in primary molars with caries disease. J Indian Soc Pedod Prev Dent 30:32–40CrossRef
9.
Zurück zum Zitat Doğan S, Durutürk L, Orhan AI, Batmaz I (2013) Determining treatibility of primary teeth with pulpal exposure. J Clin Pediatr Dent 37:345–350CrossRef Doğan S, Durutürk L, Orhan AI, Batmaz I (2013) Determining treatibility of primary teeth with pulpal exposure. J Clin Pediatr Dent 37:345–350CrossRef
10.
Zurück zum Zitat Heys DR, Cox CF, Heys RJ, Avery JK (1981) Histological considerations of direct pulp capping agents. J Dent Res 60:1371–1379CrossRef Heys DR, Cox CF, Heys RJ, Avery JK (1981) Histological considerations of direct pulp capping agents. J Dent Res 60:1371–1379CrossRef
11.
Zurück zum Zitat G B, Spångberg L (2004) Controversies in endodontics. Crit Rev Oral Biol Med 15:99–114CrossRef G B, Spångberg L (2004) Controversies in endodontics. Crit Rev Oral Biol Med 15:99–114CrossRef
12.
Zurück zum Zitat Sönmez D, Durutürk L (2008) Ca(OH)2 pulpotomy in primary teeth. Part I: Internal resorption as a complication following pulpotomy. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 106:94–98CrossRef Sönmez D, Durutürk L (2008) Ca(OH)2 pulpotomy in primary teeth. Part I: Internal resorption as a complication following pulpotomy. Oral Surg Oral Med Oral Pathol Oral Radiol Endod 106:94–98CrossRef
13.
Zurück zum Zitat Sönmez D, Durutürk L (2010) Success rate of calcium hydroxide pulpotomy in primary molars restored with amalgam and stainless steel crowns. Br Dent J 208: E18, E18; discussion 409 Sönmez D, Durutürk L (2010) Success rate of calcium hydroxide pulpotomy in primary molars restored with amalgam and stainless steel crowns. Br Dent J 208: E18, E18; discussion 409
14.
Zurück zum Zitat Raslan N, Wetzel WE (2006) Exposed human pulp caused by trauma and/or caries in primary dentition: a histological evaluation. Dent Traumatol 22:145–153CrossRef Raslan N, Wetzel WE (2006) Exposed human pulp caused by trauma and/or caries in primary dentition: a histological evaluation. Dent Traumatol 22:145–153CrossRef
15.
Zurück zum Zitat Özdemir Y, Kütükçüler N, Topaloğlu-Ak A, Köse T, Eronat C (2015) Comparative evaluation of pro-inflammatory cytokine levels in pulpotomized primary molars. J Oral Sci 57:145–150CrossRef Özdemir Y, Kütükçüler N, Topaloğlu-Ak A, Köse T, Eronat C (2015) Comparative evaluation of pro-inflammatory cytokine levels in pulpotomized primary molars. J Oral Sci 57:145–150CrossRef
16.
Zurück zum Zitat Sönmez D, Sarı S, Çetinbaş T (2008) A comparison of four pulpotomy techniques in primary molars: a long-term follow-up. J Endod 34:950–955CrossRef Sönmez D, Sarı S, Çetinbaş T (2008) A comparison of four pulpotomy techniques in primary molars: a long-term follow-up. J Endod 34:950–955CrossRef
17.
Zurück zum Zitat Niranjani K, Prasad MG, Vasa AA, Divya G, Thakur MS, Saujanya K (2015) Clinical evaluation of success of primary teeth pulpotomy using Mineral Trioxide Aggregate (®), Laser and Biodentine(TM)—an in vivo study. J Clin Diagn Res 9:35–37 Niranjani K, Prasad MG, Vasa AA, Divya G, Thakur MS, Saujanya K (2015) Clinical evaluation of success of primary teeth pulpotomy using Mineral Trioxide Aggregate (®), Laser and Biodentine(TM)—an in vivo study. J Clin Diagn Res 9:35–37
18.
Zurück zum Zitat Rajasekharan S, Martens L, Vandenbulcke J, Jacquet W, Bottenberg P, Cauwels R (2017) Efficacy of three different pulpotomy agents in primary molars—a randomised control trial. Int Endod J 50:215–228CrossRef Rajasekharan S, Martens L, Vandenbulcke J, Jacquet W, Bottenberg P, Cauwels R (2017) Efficacy of three different pulpotomy agents in primary molars—a randomised control trial. Int Endod J 50:215–228CrossRef
19.
Zurück zum Zitat Tziafas D, Smith AJ, Lesot H (2000) Designing new treatment strategies in vital pulp therapy. Review J Dent 28:77–92CrossRef Tziafas D, Smith AJ, Lesot H (2000) Designing new treatment strategies in vital pulp therapy. Review J Dent 28:77–92CrossRef
20.
Zurück zum Zitat Camilleri J (2008) The biocompatibility of modified experimental Portland cements with potential for use in dentistry. Int Endod J 41:1107–1114CrossRef Camilleri J (2008) The biocompatibility of modified experimental Portland cements with potential for use in dentistry. Int Endod J 41:1107–1114CrossRef
21.
Zurück zum Zitat Fuks AB (2008) Vital pulp therapy with new materials for primary teeth: new directions and treatment perspectives. Pediatr Dent 30:211–219PubMed Fuks AB (2008) Vital pulp therapy with new materials for primary teeth: new directions and treatment perspectives. Pediatr Dent 30:211–219PubMed
22.
Zurück zum Zitat Mestieri LB, Gomes-Cornélio AL, Rodrigues EM, Salles LP, Bosso-Martelo R, Guerreiro-Tanomaru JM, Tanomaru-Filho M (2015) Biocompatibility and bioactivity of calcium silicate-based endodontic sealers in human dental pulp cells. J Appl Oral Sci 23:467–471CrossRef Mestieri LB, Gomes-Cornélio AL, Rodrigues EM, Salles LP, Bosso-Martelo R, Guerreiro-Tanomaru JM, Tanomaru-Filho M (2015) Biocompatibility and bioactivity of calcium silicate-based endodontic sealers in human dental pulp cells. J Appl Oral Sci 23:467–471CrossRef
23.
Zurück zum Zitat Cuadros-Fernández C, Lorente Rodríguez AI, Sáez-Martínez S, García-Binimelis J, About I, Mercadé M (2016) Short-term treatment outcome of pulpotomies in primary molars using mineral trioxide aggregate and Biodentine: a randomized clinical trial. Clin Oral Investig 20:1639–1645CrossRef Cuadros-Fernández C, Lorente Rodríguez AI, Sáez-Martínez S, García-Binimelis J, About I, Mercadé M (2016) Short-term treatment outcome of pulpotomies in primary molars using mineral trioxide aggregate and Biodentine: a randomized clinical trial. Clin Oral Investig 20:1639–1645CrossRef
24.
Zurück zum Zitat Camilleri J, Sorrentino F, Damidot D (2013) Investigation of the hydration and bioactivity of radiopacified tricalcium silicate cement, Biodentine and MTA Angelus. Dent Mater 29:580–593CrossRef Camilleri J, Sorrentino F, Damidot D (2013) Investigation of the hydration and bioactivity of radiopacified tricalcium silicate cement, Biodentine and MTA Angelus. Dent Mater 29:580–593CrossRef
25.
Zurück zum Zitat Kim JR, Nosrat A, Fouad AF (2015) Interfacial characteristics of Biodentine and MTA with dentine in simulated body fluid. J Dent 43:241–247CrossRef Kim JR, Nosrat A, Fouad AF (2015) Interfacial characteristics of Biodentine and MTA with dentine in simulated body fluid. J Dent 43:241–247CrossRef
26.
Zurück zum Zitat Akçay M, Sari S (2014) The effect of sodium hypochlorite application on the success of calcium hydroxide and mineral trioxide aggregate pulpotomies in primary teeth. Pediatr Dent 36:316–321PubMed Akçay M, Sari S (2014) The effect of sodium hypochlorite application on the success of calcium hydroxide and mineral trioxide aggregate pulpotomies in primary teeth. Pediatr Dent 36:316–321PubMed
27.
Zurück zum Zitat Akcay M, Sari S, Duruturk L, Gunhan O (2015) Effects of sodium hypoclorite as disinfectant material previous to pulpotomies in primary teeth. Clin Oral Investig 19:803–811CrossRef Akcay M, Sari S, Duruturk L, Gunhan O (2015) Effects of sodium hypoclorite as disinfectant material previous to pulpotomies in primary teeth. Clin Oral Investig 19:803–811CrossRef
28.
Zurück zum Zitat Parirokh M, Torabinejad M (2010) Mineral trioxide aggregate: a comprehensive literature review—Part III: Clinical applications, drawbacks, and mechanism of action. J Endod 36:400–413CrossRef Parirokh M, Torabinejad M (2010) Mineral trioxide aggregate: a comprehensive literature review—Part III: Clinical applications, drawbacks, and mechanism of action. J Endod 36:400–413CrossRef
29.
Zurück zum Zitat Camilleri J (2014) Color stability of white mineral trioxide aggregate in contact with hypochlorite solution. J Endod 40:436–440CrossRef Camilleri J (2014) Color stability of white mineral trioxide aggregate in contact with hypochlorite solution. J Endod 40:436–440CrossRef
30.
Zurück zum Zitat Tran XV, Gorin C, Willig C, Baroukh B, Pellat B, Decup F, Opsahl Vital S, Chaussain C, Boukpessi T (2012) Effect of a calcium-silicate-based restorative cement on pulp repair. J Dent Res 91:1166–1171CrossRef Tran XV, Gorin C, Willig C, Baroukh B, Pellat B, Decup F, Opsahl Vital S, Chaussain C, Boukpessi T (2012) Effect of a calcium-silicate-based restorative cement on pulp repair. J Dent Res 91:1166–1171CrossRef
31.
Zurück zum Zitat Shayegan A, Jurysta C, Atash R, Petein M, Abbeele AV (2012) Biodentine used as a pulp-capping agent in primary pig teeth. Pediatr Dent 34:e202–e208PubMed Shayegan A, Jurysta C, Atash R, Petein M, Abbeele AV (2012) Biodentine used as a pulp-capping agent in primary pig teeth. Pediatr Dent 34:e202–e208PubMed
32.
Zurück zum Zitat Nowicka A, Lipski M, Parafiniuk M, Sporniak-Tutak K, Lichota D, Kosierkiewicz A, Kaczmarek W, Buczkowska-Radlińska J (2013) Response of human dental pulp capped with biodentine and mineral trioxide aggregate. J Endod 39:743–747CrossRef Nowicka A, Lipski M, Parafiniuk M, Sporniak-Tutak K, Lichota D, Kosierkiewicz A, Kaczmarek W, Buczkowska-Radlińska J (2013) Response of human dental pulp capped with biodentine and mineral trioxide aggregate. J Endod 39:743–747CrossRef
33.
Zurück zum Zitat Agamy HA, Bakry NS, Mounir MM, Avery DR (2004) Comparison of mineral trioxide aggregate and formocresol as pulp-capping agents in pulpotomized primary teeth. Pediatr Dent 26:302–309PubMed Agamy HA, Bakry NS, Mounir MM, Avery DR (2004) Comparison of mineral trioxide aggregate and formocresol as pulp-capping agents in pulpotomized primary teeth. Pediatr Dent 26:302–309PubMed
34.
Zurück zum Zitat Aeinehchi M, Dadvand S, Fayazi S, Bayat-Movahed S (2007) Randomized controlled trial of mineral trioxide aggregate and formocresol for pulpotomy in primary molar teeth. Int Endod J 40:261–267CrossRef Aeinehchi M, Dadvand S, Fayazi S, Bayat-Movahed S (2007) Randomized controlled trial of mineral trioxide aggregate and formocresol for pulpotomy in primary molar teeth. Int Endod J 40:261–267CrossRef
35.
Zurück zum Zitat Doyle TL, Casas MJ, Kenny DJ, Judd PL (2010) Mineral trioxide aggregate produces superior outcomes in vital primary molar pulpotomy. Pediatr Dent 32:41–47PubMed Doyle TL, Casas MJ, Kenny DJ, Judd PL (2010) Mineral trioxide aggregate produces superior outcomes in vital primary molar pulpotomy. Pediatr Dent 32:41–47PubMed
36.
Zurück zum Zitat Ibricevic H, Al-Jame Q (2000) Ferric sulfate as pulpotomy agent in primary teeth: twenty month clinical follow-up. J Clin Pediatr Dent 24:269–272CrossRef Ibricevic H, Al-Jame Q (2000) Ferric sulfate as pulpotomy agent in primary teeth: twenty month clinical follow-up. J Clin Pediatr Dent 24:269–272CrossRef
37.
Zurück zum Zitat Liu H, Zhou Q, Qin M (2011) Mineral trioxide aggregate versus calcium hydroxide for pulpotomy in primary molars. Chin J Dent Res 14:121–125PubMed Liu H, Zhou Q, Qin M (2011) Mineral trioxide aggregate versus calcium hydroxide for pulpotomy in primary molars. Chin J Dent Res 14:121–125PubMed
39.
Zurück zum Zitat Kusum B, Rakesh K, Richa K (2015) Clinical and radiographical evaluation of mineral trioxide aggregate, biodentine and propolis as pulpotomy medicaments in primary teeth. Restor Dent Endod 40:276–285CrossRef Kusum B, Rakesh K, Richa K (2015) Clinical and radiographical evaluation of mineral trioxide aggregate, biodentine and propolis as pulpotomy medicaments in primary teeth. Restor Dent Endod 40:276–285CrossRef
40.
Zurück zum Zitat Katge FA, Patil DP (2017) Comparative analysis of 2 calcium cilicate-based cements (Biodentine and Mineral Trioxide Aggregate) as direct pulp-capping agent in young permanent molars: a split mouth study. J Endod 43:507–513CrossRef Katge FA, Patil DP (2017) Comparative analysis of 2 calcium cilicate-based cements (Biodentine and Mineral Trioxide Aggregate) as direct pulp-capping agent in young permanent molars: a split mouth study. J Endod 43:507–513CrossRef
41.
Zurück zum Zitat Eidelman E, Holan G, Fuks AB (2001) Mineral trioxide aggregate vs. formocresol in pulpotomized primary molars: a preliminary report. Pediatr Dent 23:15–18PubMed Eidelman E, Holan G, Fuks AB (2001) Mineral trioxide aggregate vs. formocresol in pulpotomized primary molars: a preliminary report. Pediatr Dent 23:15–18PubMed
42.
Zurück zum Zitat Farsi N, Alamoudi N, Balto K, Mushayt A (2005) Success of mineral trioxide aggregate in pulpotomized primary molars. J Clin Pediatr Dent 29:307–311CrossRef Farsi N, Alamoudi N, Balto K, Mushayt A (2005) Success of mineral trioxide aggregate in pulpotomized primary molars. J Clin Pediatr Dent 29:307–311CrossRef
43.
Zurück zum Zitat Maroto M, Barbería E, Vera V, García-Godoy F (2007) Mineral trioxide aggregate as pulp dressing agent in pulpotomy treatment of primary molars: 42-month clinical study. Am J Dent 20:283–286PubMed Maroto M, Barbería E, Vera V, García-Godoy F (2007) Mineral trioxide aggregate as pulp dressing agent in pulpotomy treatment of primary molars: 42-month clinical study. Am J Dent 20:283–286PubMed
Metadaten
Titel
The evaluation of MTA and Biodentine as a pulpotomy materials for carious exposures in primary teeth
verfasst von
Burcu Nihan Çelik
Merve Safa Mutluay
Volkan Arıkan
Şaziye Sarı
Publikationsdatum
10.05.2018
Verlag
Springer Berlin Heidelberg
Erschienen in
Clinical Oral Investigations / Ausgabe 2/2019
Print ISSN: 1432-6981
Elektronische ISSN: 1436-3771
DOI
https://doi.org/10.1007/s00784-018-2472-4

Weitere Artikel der Ausgabe 2/2019

Clinical Oral Investigations 2/2019 Zur Ausgabe

Newsletter

Bestellen Sie unseren kostenlosen Newsletter Update Zahnmedizin und bleiben Sie gut informiert – ganz bequem per eMail.