#PAGE_PARAMS# #ADS_HEAD_SCRIPTS# #MICRODATA#

Maturogenesis Part 2. Irrigation Protocols, Intracanal Medication
(Review)


Authors: R. Žižka 1,2;  J. Šedý 3,4;  J. Škrdlant 2;  T. Anděl 5;  N. Němcová 1
Authors‘ workplace: Klinika zubního lékařství LF UP a FN, Olomouc 1;  Studio 2, soukromá zubní klinika, Praha 2;  Ústav normální anatomie LF UP, Olomouc 3;  Privátní stomatologická praxe, Praha 4;  Lékárna FN, Olomouc 5
Published in: Česká stomatologie / Praktické zubní lékařství, ročník 116, 2016, 2, s. 19-24
Category: Review Article

Overview

Objectives:
Disinfection of the root canal system is one of the most important steps in revascularization treatment. If the disinfection of root canal system is inadequate, the succes rate is decreased. On the other hand if the disinfection of root canal system is too aggresive, the probability of new hard tissue on the root canal walls is less probable. In this second article, bacterial contamination of root canal system and its decontamination are considered. Particular irrigation solutions are analysed from both their antimicrobial activity as well as translational medicine. Furthermore, possible intracanal medications, including suggestion of the new triple antibiotic paste are explored.

Keywords:
maturogenesis – revascularization – regenerative endodontic procedure – hypochloride – ethylendiamintetraacetic acid – chlorhexidin – triple antibiotic paste – calcium hydroxide


Sources

1. Althumary, R. I., Fabricio, B., Teixeria, F. B., Diogenes, A.: Effect of dentin conditioning with intracanal medicaments on survival of stem cells of apical papilla. Journal of Endodontics [online], roč. 40, 2014, č. 5, s. 521–525 [cit. 2015-07-20]. DOI: 10.1016/j.joen.2013.11.008.

2. Banchs, F., Trope, M.: Revascularization of immature permanent teeth with apical periodontitis: new treatment protocol? J. Endodont., roč. 30, 2004, č. 4, s. 196–200.

3. Berkhoff, J. A., Paul, B. Chen, P. B., Teixeira, F. B., Diogenes, A.: Evaluation of triple antibiotic paste removal by different irrigation procedures. Journal of Endodontics [online], roč. 40, 2014, č. 8(8), s.1172–1177 [cit. 2015-07-20]. DOI: 10.1016/j.joen.2013.12.027.

4. Bose, R. P., Numikovski, T., Hargeaves, A.: A retrospective evaluation of radiographic outcomes in immature teeth with necrotic root canal systems treated with regenerative endodontic procedures. Journal of Endodontics [online], roč. 35, 2009, č. 10, s. 1343–1349 [cit. 2015-07-20]. DOI: 10.1016/j.joen.2009.06.021.

5. Casagrande, L., DeMarco, F. F., Zhang, F. B,. Araujo, S., Shi, N.: Dentin-derived BMP-2 and odontoblast differentiation. Journal of Dental Research [online], roč. 89, 2010, č. 6, s. 603–608 [cit. 2015-07-20]. DOI: 10.1177/0022034510364487.

6, Curzon, M., Kennedy, J. D.: Kennedy‘s paediatric operative dentistry. 4th ed. Boston: Wright, 1996, s.143–177. ISBN 0723610169.

7. Diogenes, A. R., Ruparel, R. B., Teixeira, F. B., Hargereaves, K. M: Translational science in disinfection for regenerative endodontics. Journal of Endodontics [online], roč. 40, 2014, č. 4, s. 55–57 [cit. 2015-07-16]. DOI: 10.1016/j.joen.2014.01.015.

8. Galler, K. M., D Sousa, R., a kol: Dentin conditioning codetermines cell cate in degenerative endodontics. Journal of Endodontics [online], roč. 37, 2011, č. 11, s. 1536–1541 [cit. 2015-07-20]. DOI: 10.1016/j.joen.2011.08.027.

9. Gomes, J. E., Durate, P. C., a kol.: Tissue reaction to a triantibiotic taste used for endodontic tissue self-regeneration of nonvital immature permanent teeth. Journal of Endodontics [online], roč. 38, 2012, č. 1, s. 91–94 [cit. 2015-07-20]. DOI: 10.1016/j.joen.2011.09.020.

10. Gravehr, M., Sener, T., Zehnder, M.: Interactions of ethylenediamine tetraacetic acid with sodium hypochlorite in aqueous solutions. Int. Endod. J., roč 36, 2003, č. 6, s. 411–417.

11. Hoshino, E., Kurihara-Nando, N., a kol.: In vitro antibacterial susceptibility of bacteria taken from infected root dentine to a mixture of ciprofloxacin, metronidazole and minocycline. Int. Endod. J., roč. 29, 1996, č. 2, s. 125–130.

12. Chen, M. Y., Chen, C. A., Chen, F., a kol.: Responses of immature permanent teeth with infected necrotic pulp tissue and apical periodontitis/abscess to revascularization procedures. International Endodontic Journal [online], roč 45, 2011, č. 3, s. 294–305 [cit. 2015-07-20]. DOI: 10.1111/j.1365-2591.2011.01978.x.

13. Kim, J. H., Kim, Y., Kim, S., a kol.: Tooth discoloration of immature permanent incisor associated with triple antibiotic therapy: A case report. Journal of Endodontics [online], roč. 36, 2010, č. 6, s. 1086–1091 [cit. 2015-07-20]. DOI: 10.1016/j.joen.2010.03.031.

14. King, S. R., Mcwhorter, A. G., Seale, N. S.: Concentration of formocresol used by pediatric dentists in primary tooth pulpotomy. Pediatr. Dent., roč. 24, 2002, č. 2., s. 157–159.

15. Ležovič, J.: Detské zubné lekárstvo. 2., dopln. vyd. Bratislava: Dali-BB, 2012, 377 s. ISBN 9788081410109.

16. Marending, M., Luder, H. U., Brunner, T. J.: Effect of sodium hypochlorite on human root dentine – mechanical, chemical and structural evaluation. Int. Endodont. J., roč. 40, 2007, č. 10, s. 786–793.

17. Martin, D. E., De Almeida, J. F., De Almeida, M., a kol.: Concentration-dependent effect of sodium hypochlorite on stem cells of apical papilla survival and differentiation. Journal of Endodontics[online], roč 40, 2014, č. 1, s. 51–55 [cit. 2015-07-20]. DOI: 10.1016/j.joen.2013.07.026.

18. Milnes, A. R.: Persuasive evidence that formocresol use in pediatric dentistry is safe. J. Can. Dent. Assoc., roč. 72, 2006, č. 3, s. 247–248.

19. Mohammadi, Z., Soltani, M. K., Shalavi, S.: An update on the management of endodontic biofilms using root canal irrigants and medicaments. Iran. Endod. J., roč 9, 2014, č. 2, s. 93–97.

20. Mohammadi, Z. :Sodium hypochlorite in endodontics: an update review. Int. Dent. J., roč. 58, 2008, č. 6, s. 329–341.

21. Mohammadi, Z., Abbott, P. V.: The properties and applications of chlorhexidine in endodontics. International Endodontic Journal [online], roč. 42, 2009, č. 4, s. 288–302 [cit. 2015-07-20]. DOI: 10.1111/j.1365-2591.2008.01540.x.

22. Nagata, J. Y., Soares, A. J., Souza-Filho, F. J., a kol.: Microbial evaluation of traumatized teeth treated with triple antibiotic paste or calcium hydroxide with 2% chlorhexidine gel in pulp revascularization. Journal of Endodontics [online], roč. 40, 2014, č. 6, s. 778–783 [cit. 2015-07-20]. DOI: 10.1016/j.joen.2014.01.038.

23. Portenier, I., Haapasalo, H., Rye, A., Waltimo, T. O.: Inactivation of root canal medicaments by dentine, hydroxylapatite and bovine serum albumin. Int. Endod. J., roč. 34, 2001, č. 3., s. 184–188.

24. Reynolds, K., Johnson, J. D., Cohenca, N.: Pulp revascularization of necrotic bilateral bicuspids using a modified novel technique to eliminate potential coronal discolouration: a case report. International Endodontic Journal[online], roč. 42, 2001, č. 1, s. 84–92 [cit. 2015-07-20]. DOI: 10.1111/j.1365-2591.2008.01467.x.

25. Rödig, T., Vogel, S., Zapf, A., Hülsmann, M.: Efficacy of different irrigants in the removal of calcium hydroxide from root canals. International Endodontic Journal [online], roč. 43, 2010, č. 6, s. 519–527 [cit. 2015-07-21]. DOI: 10.1111/j.1365-2591.2010.01709.x.

26. Rosenthal, S., Spangberg, L., Savi, K.: Chlorhexidine substantivity in root canal dentin. Oral Surg. Oral Med. Oral Pathol. Oral Radiol. Endod., roč. 98, 2004, č. 4, s. 488–492.

27. Ruparel, N. B., Teixeira, F. B., Ferraz, C. R., Diogenes, A.: Direct effect of intracanal medicaments on survival of stem cells of the apical papilla. Journal of Endodontics [online], roč. 38, 2012, č. 10, s. 1372–1375 [cit. 2015-07-20]. DOI: 10.1016/j.joen.2012.06.018.

28. Sathorn, C., Parashos, P., Messer, H.: Antibacterial efficacy of calcium hydroxide intracanal dressing: a systematic review and meta-analysis. Int. Endod. J., roč. 40, 2007, č. 1, s. 2–10.

29. Sato, I., Ando-Kurihara, N., Kota, K., a kol.: Sterilization of infected root-canal dentine by topical application of a mixture of ciprofloxacin, metronidazole and minocycline in situ. Int. Endod. J., roč. 29, 1996, č. 2, s. 118–124.

30. Shah, N., Logani, A., Bhaskar, U., Aggarwal, V.: Efficacy of revascularization to induce apexification/apexogensis in infected, nonvital, immature teeth: A pilot clinical study. Journal of Endodontics[online], roč. 34, 2008, č. 8, s. 919–925 [cit. 2015-07-21]. DOI: 10.1016/j.joen.2008.05.001.

31. Shin, S. Y., Albert, J. S., Mortman, R. E.: One step pulp revascularization treatment of an immature permanent tooth with chronic apical abscess: a case report. International Endodontic Journal [online], roč. 42, 2009, č. 12, s. 1118–1126 [cit. 2015-07-20]. DOI: 10.1111/j.1365-2591.2009.01633.x.

32. Thibodeau, B.: Case report: pulp revascularization of a necrotic, infected, immature, permanent tooth. Pediatr. Dent., roč. 31, 2009, č. 2, s.145–148.

33. Thomson, A., Kahler, B.: Regenerative endodontics – biologically-based treatment for immature permanent teeth: a case report and review of the literature. Australian Dental Journal [online], roč. 55, 2010, č. 4, s. 446–452 [cit. 2015-07-20]. DOI: 10.1111/j.1834-7819.2010.01268.x.

34. Torabinejad, M., Rurman, M.: Revitalization of tooth with necrotic pulp and open apex by using platelet-rich plasma: A case report. Journal of Endodontics [online], roč. 37, 2011, č. 2, s. 265–268 [cit. 2015-07-20]. DOI: 10.1016/j.joen.2010.11.004.

35. Trevino, E. G., Patwerdhan, A. N., Henry, M. A., Parry, G., Dybdal-Hargreaves, K. M., Diogenes, A.: Effect of irrigants on the survival of human stem cells of the apical papilla in a platelet-rich plasma scaffold in human root tips. Journal of Endodontics [online], roč. 37, 2011, č. 8, s. 1109–1115 [cit. 2015-07-20]. DOI: 10.1016/j.joen.2011.05.013.

Labels
Maxillofacial surgery Orthodontics Dental medicine
Login
Forgotten password

Enter the email address that you registered with. We will send you instructions on how to set a new password.

Login

Don‘t have an account?  Create new account

#ADS_BOTTOM_SCRIPTS#