Antibacterial effectiveness of drug combinations with calcium hydroxide in apical periodontitis: A systematic review

Authors

DOI:

https://doi.org/10.33448/rsd-v10i4.14593

Keywords:

Calcium hydroxide; Apical periodontitis; Antibacterial effectiveness; Systematic review.

Abstract

The aim of this systematic review was to compare the clinical performance of calcium hydroxide (Ca(OH)2) as an intracanal medicament alone or combined with other antimicrobial agents. The PICO question was “Is the antibacterial effectiveness of calcium hydroxide paste as an intracanal medication combined with other drugs greater than that of calcium hydroxide paste alone in apical periodontitis?” The study was carried out according PRISMA guidelines and is registered in PROSPERO (CRD42020205741). Searches were performed in the PubMed/MEDLINE, Web of Science and Cochrane databases without publication date restrictions. Inclusion: randomized clinical trials, non-randomized intervention studies, studies including a minimum of 10 patients, studies comparing the use of Ca(OH)2 alone and in combination with other compounds,  studies evaluating primary and permanent teeth with apical periodontitis, and studies including teeth not submitted to retreatment. The Cochrane risk-of-bias tool for randomized clinical trials (RoB 2.0) was used to assess the internal validity (risk of bias) of the included studies. A total of 986 articles were retrieved and 12 randomized clinical trials were selected, totaling 499 patients included in the studies. The effectiveness of Ca(OH)2 plus chlorhexidine was similar to that of Ca(OH)2 alone in eight articles, while a better antibacterial effect was reported in three studies. The combination with ciprofloxacin was more effective than the use of Ca(OH)2 alone in the only study that tested this antibiotic. In teeth with asymptomatic apical periodontitis, the effectiveness of the combination of antimicrobial agents with Ca(OH)2 was similar to that of Ca(OH)2 alone.

References

Belladonna, F. G., et al. (2018) Micro–computed tomography shaping ability assessment of the new blue thermal treated reciproc instrument. Journal of Endodontics, 44 (7), 1146–50. 10.1016/j.joen.2018.03.008.

Byström, A., et al. (1985) The antibacterial effect of camphorated paramonochlorophenol, camphorated phenol and calcium hydroxide in the treatment of infected root canals. Dental Traumatology, 1(5),170-5. 10.1111/j.1600-9657.1985.tb00652.x.

Byström, A., & Sundqvist, G. (1981) Bacteriologic evaluation of the efficacy of mechanical root canal instrumentation in endodontic therapy. Scandinavian Journal of Dental Research, 89 (4), 321-8. 10.1111/j.1600-0722.1981.tb01689.x.

Camargo, C. H., et al. (2006) Vehicle influence on calcium hydroxide pastes diffusion in human and bovine teeth. Dental Traumatology, 22(6), 302-6. 10.1111/j.1600-9657.2005.00326.x.

De Deus, G., et al. (2019) Shaping efficiency as a function of time of a new heat-treated instrument. International Endodontic Journal, 52 (3), 337-42. 10.1111/iej.13000.

Dutta, B., et al. (2017) Evaluation ofAntimicrobial Efficacy of various Intracanal Medicaments in Primary Teeth: An in vivo Study. International Journal of Clinical Pediatric Dentistry, 10 (3), 267-71. 10.5005/jp-journals-10005-1448.

Freitas, R. P., et al. (2017) Efect of the association of nosteroidal anti-inflammatory and antibiotic drugs on antibiofilm activity and pH of calcium hydroxide pastes. Journal of Endodontics 43, 131-4.

Ferreira, N. S., et al. (2015) Microbiological profile resistant to different intracanal medications in primary endodontic infections Journal of Endodontics, 41(6), 824-30. 10.1016/j.joen.2015.01.031.

Gavini, G., et al. (2018) Nickel–titanium instruments in endodontics: a concise review of the state of the art. Brazilian Oral Researc, 32 (suppl 1), 44-65. 10.1590/1807-3107bor-2018.vol32.0067.

Gazzaneo, I., et al. (2019) Root canal disinfection by single- and multiple instrument systems: effects of sodium hypochlorite volume, concentration, and retention time. Journal of Endodontics, 45 (6), 736-4110.1016/j.joen.2019.02.017.

Gomes, B. P., et al. (2003) Evaluation of time required for recontamination of coronally sealed canals medicated with calcium hydroxide and chlorhexidine. International Endodontic Journal, 36 (9), 604-09. 10.1046/j.1365-2591.2003.00694.x.

Gomes, B P., et al. (2006) In vitro evaluation of the antimicrobial activity of calcium hydroxide combined with chlorhexidine gel used as intracanal medicament. Oral Surgery, Oral Medicine, Oral Pathology and Oral Radiology, 102(4), 544-50. 10.1016/j.tripleo.2006.04.010.

Gondim, J O., et al. 2011) Effect of a calcium hydroxide/chlorhexidine paste as intracanal dressing in human primary teethwith necrotic pulp against Porphyromonas gingivalis and Enterococcus faecalis. International Journal of Paediatric Dentistry, 22(2), 116-24. 10.1111/j.1365-263X.2011.01174.x.

Heithersay, G. S. (1975) Calcium hydroxide in the treatment of pulpless teeth with associated pathology. International Endodontic Journal, 8(2), 74-93. 10.1111/j.1365-2591.1975.tb01000.x.

Higgins, J. P. T., et al. (2018) ROB2 Development Group. A revised tool for assessing risk of bias in randomized trials. In: Chandler J, McKenzie J, Boutron I, Welch V, eds. Cochrane Methods. London: Cochrane, pp 1–69.

Ito, I. Y., et al. (2011) Microbial cultureand checkboard DNA-DNA hybridization assessment of bacteria in root canals of primary teeth pre- and post-endodontic therapy with calcium hydroxide/chlorhexidine paste. International Journal and Paediatric Dentistry, 21(5), 353-60. 10.1111/j.1365-263X.2011.01131.x.

Karataş, E., et al.. (2020) Antibacterial effectiveness of calcium hydroxide alone ou in combination with Ibuprofen and Ciprofloxacin in teeth with asymptomatic apical periodontitis: a randomized clinical study. International Endodontic Journal, 53 (6), 742-53. 10.1111/iej.13277.

Manzur, A., et al. (2007) Bacterial quantification in teeth with apical periodontitis related to instrumentation and diferente intracanal medications: a randomized clinical trial. Journal of Endodontics, 33(2), 114-18.

Martinho, F. C., et al. (2018) Clinical comparison of the effectiveness of 7- and 14-day intracanal medications in root canal disinfection and inflammatory cytokines. Clinical Oral Investigation, 22(1), 523-30. . 10.1007/s00784-017-2143-x.

Martinho, F. C., et al. (2015) Clinical influence of different intracanal medications on Th1-type and Th2-type cytokine responses in apical periodontitis. Journal of Endodontics, 41(2),169-75. 10.1016/j.joen.2014.09.028.

McGurkin-Smith, R., et al. (2005) Reduction of intracanal bacteria using GT rotary instrumentation, 5.25% NaOCl, EDTA, and Ca(OH)2. Journal of Endodontics, 31(5), 359–63. 10.1097/01.don.0000145035.85272.7c.

Mohammadi, Z., & Abbott, P. V. (2009) The properties and applications of chlorhexidine in endodontics. International Endodontic Journal, 42(4), 288-302. doi:10.1111/j.1365-2591.2008.01540.x.

Moher, D., et al. (2015) Preferred reporting items for systematic review and meta-analysis protocols (PRISMA-P) statement. Systematic Reviews 4(1).

Mori, G. G et al. (2009) Evaluation of the diffusion capacity of calcium hydroxide pastes through the dentinal tubules. Brazilian Oral Research, 23(2), 113-8. doi:10.1590/S1806-83242009000200004.

Mourad, O., et al. (2016) Rayyan - a web and mobile app for systematic reviews. Systematic Reviews 5, 210.

Ørstavik, D., & Haapasalo M. (1990) Disinfection by endodontic irrigants and dressings of experimentally infected dentinal tubules. Dental Traumatology, 6(4),142-9. 10.1111/j.1600-9657.1990.tb00409.x.

Onçag, O., et al. (2006) Efficacy of various intracanal medicaments against Enterococcus faecalis in primary teeth: an in vivo study. Journal Clinical Pediatric Dentistry, 30(3), 233-7.

Paiva, S. S. M., et al. (2013) Clinical antimicrobial efficacy of Niti Rotary instrumentation with NaOCl irrigation, final rinse with chlorhexidine and inter-appointment medication: a molecular study. International Endodontic Journal, 46(3), 225-33. 10.1111/j.1365-2591.2012.02111.x.

Peters, L., et al. (1995) The fate and the role of bactéria left in root dentinal tubules. International Endodontic Journal, 28(2), 95-9. 10.1111/j.1365-2591.1995.tb00166.x.

Peters, L. B., et al. (2002) Effects of instrumentation, irrigation and dressing with calcium hydroxide on infection in pulpless teeth with periapical bone lesions. International Endodontic Journal, 35 (10), 13–21. 10.1046/j.0143-2885.2001.00447.x.

Saatchi, M., et al. (2014) Antibacterial effect of calcium hydroxide combined with chlorhexidine on Enterococcus faecalis: a systematic review and meta-analysis. Journal of Applied Oral Science, 22(5), 356-65. 10.1590/1678-775720140032.

Santos, A. L., et al. (2011) Comparing the bacterial diversity of acute and chronic dental root canal infections. PLoS One, 6(11), e28088. 10.1371/journal.pone.0028088.

Sathorn, C., et al. (2005) Effectiveness of single- versus multiple-visit endodontic treatment of teeth with apical periodontitis: a systematic review and meta-analysis. International Endodontic Journal,38(6), 47-55. 10.1111/j.1365-2591.2005.00955.x.

Shuping, G. B., et al. (2000) Reduction of intracanal bacteria using nickel-titanium rotary instrumentation and various medications. Journal of Endodontics, 26(12), 751–5. 10.1097/00004770-200012000-00022.

Silva, L. A., et al. (2017) Antibacterial effect of calcium hydroxide with or without chlorhexidine as intracanal dressing in primary teeth with apical periodontitis. Pediatric Dentistry, 39(1), 28-33.

Sinha, N., et al. (2013) Evaluation of antimicrobial efficacy of calcium hydroxide paste, chlorhexidine gel, and a combination of both as intracanal medicament: an in vivo comparative study. Journal Conservative Dentistry, 16(1), 65-70. 10.4103/0972-0707.105302.

Siqueira, J. F. Jr, et al. (2011) Pyrosequencing analysis of the apical root canal microbiota. Journal of Endodontic, 37(11), 1499–03. 10.1016/j.joen.2011.08.012.

Siqueira, J. F. Jr., & Lopes H. (1999) Mechanisms of antimicrobial activity of calcium hydroxide: a critical review. International Endodontic Journal, 32(5), 361-9. 10.1046/j.1365-2591.1999.00275.x.

Siqueira, J. F. Jr,, et al. (2007) Reduction in the cultivable bacterial populations in infected root canals by a chlorhexidine based antimicrobial protocol. Journal of Endodontics, 33(5), 541–47. 10.1016/j.joen.2007.01.008.

Siqueira, J. F., et al. (2005) Exploiting molecular methods to explore endodontic infections: part 1 – current molecular technologies for microbiological diagnosis. Journal of Endodontics, 31(6), 411-23. 10.1097/01.don.0000157989.44949.26.

Slim, K., et al. (2003). Methodological index for non-randomized studies (MINORS): development and validation of a new instrument. ANZ Journal of Surgery, 73(9), 712–16. 10.1046/j.1445-2197.2003.02748.x.

Tavares, W. L., et al. (2012) Effects of calcium hydroxide on cytokine expression in endodontic infections. Journal of Endodontics, 38(10),1368– 71. 10.1016/j.joen.2012.06.036.

Tavares, W. L., et al. (2013) The impact of chlorhexidine-based endodontic treatment on periapical cytokine expression in teeth. Journal of Endodontics, 39(7), 889–92. 10.1016/j.joen.2013.02.005.

Velozo, C., et al. (2020) Shaping ability of XP-endo Shaper and ProTaper Next in long oval-shaped canals: a micro-computed tomography study. International Endodontic Journal, 53(7), 998-1006. 10.1111/iej.13301.

Versiani, M. A., et al. (2018) Micro-computed Tomographic Evaluation of the Shaping Ability of XP-endo Shaper, iRaCe, and EdgeFile Systems in Long Oval-shaped Canals. Journal of Endodontics, 44(3), 489-95. 10.1016/j.joen.2017.09.008.

Vianna, M. E., et al. (2008) Comparative analysis of endodontic pathogens using checkerboard hybridization in relation to culture. Oral Microbiology and Immunology, 23(4), 282-90. doi.org/10.1111/j.1399-302X.2007.00425.x

Vianna, M. E., et al. (2007) Effect of root canal procedures on endotoxins and endodontic pathogens. Oral Microbiology and Immunology, 22(6), 411–18. 10.1111/j.1399-302X.2007.00379.x.

Waltimo, T., et al. (2005) Clinical efficacy of treatment procedures in endodontic infection control and one year follow-up of periapical healing. Journal of Endodontics, 31(12), 863–6. doi:10.1097/01.don.0000164856.27920.85.

Zerella, J. A., et al. (2005) Effectiveness of a calcium hydroxide and chlorhexidine digluconate mixture as disinfectant during retreatment of failed endodontic cases. Oral Surgery, Oral Medicine, Oral Pathology, Oral Radiology, and Endodontology 100 (6), 756-61. 10.1016/j.tripleo.2005.05.072.

Zhao, Y., et al. (2019) Evaluation of several instrumentation techniques and irrigation methods on the percentage of untouched canal wall and accumulated dentine debris in C-shaped canals. International Endodontic Journal, 52(9), 1354–65. 10.1111/iej.13119.

Zhang, G-F., et al. (2018) Ciprofloxacin derivatives and their antibacterial activities. European Journal of Medicinal Chemistry, 146, 599-612. 10.1016/j.ejmech.2018.01.078.

Zuolo, M. L., et al. (2018) Micro-CT assessment of the shaping ability of four root canal instrumentation systems in oval-shaped canals. International Endodontic Journal, 51(5), 564–71. 10.1111/iej.12810.

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Published

23/04/2021

How to Cite

VELOZO, C.; LEMOS , C. A. A. .; ALBUQUERQUE, D. S. de .; VASCONCELOS, B. C. do E. .; MORAES , S. L. D. .; PELLIZZER, E. P. . Antibacterial effectiveness of drug combinations with calcium hydroxide in apical periodontitis: A systematic review. Research, Society and Development, [S. l.], v. 10, n. 4, p. e55810414593, 2021. DOI: 10.33448/rsd-v10i4.14593. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/14593. Acesso em: 19 apr. 2024.

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Health Sciences