METHODS OF TREATMENT OF INFLAMMATORY CHANGES IN THE AREA OF PERIAPICAL TISSUES (LITERATURE REVIEW)

Authors

  • Juraeva N.I. Andijan State Medical Institute

Keywords:

chronic periodontitis, obturation, root canals.

Abstract

Calcium-containing preparations occupy an important place in modern dentistry due to their unique properties, allowing for successful treatment of both pulp tissues and periapical tissues. The basis of the action of these preparations is the formation of calcium hydroxide (Ca(OH)₂), which exhibits reparative and antibacterial properties. However, if accidentally released into the surrounding vital structures, it can cause serious harm, lead to thrombosis if it enters the blood vessels, damage the connective tissue and cause skin necrosis. Modern calcium-containing preparations contain additional components, such as silicon hydroxide, strontium ions, phosphates, which enhance their biocompatibility and clinical effectiveness. Also, drugs with prolonged action are being developed, which simplifies their use in dental practice. The article presents modern literature data describing the main mechanisms of action of drugs for temporary obturation of root canals and the most common methods of non-surgical treatment of periapical changes.

References

Манак Т.Н. // Стоматологический журнал. -2015. - Т.16, №2. - С.99-104.

Матвеев А.М. // Современная стоматология. -2016. - №2. - С.2-8.

Матвеев А.М. // Современная стоматология. -2018. - №3. - С.15-23.

Реброва О.Ю. Статистический анализ медицинских данных. Применение пакета прикладных программ STATISTICA. - М., 2002. - 312 с.

Юдина Н.А. // Современная стоматология. -2012. - №1. - С.5-9.

Cintra L.T., Ribeiro T.A., Gomes-Filho J.E., Bernabé P.F., Watanabe S., Facundo A.C., Samuel R.O., Dezan-JuniorE. Biocompatibilityand biomineralization assessment of a new root canal sealer and root-end Alling material. Dent. Traumatol. 2013; 29(2): 145150. DOI: 10.1111/j.1600-9657.2012.01142.x

Effects of calcium hydroxide addition on the physical and chemical properties of a calcium silicate-based sealer. J. Appl. Oral. Sci. 2014; 22(3):180-184. DOI: 10.1590/1678-775720130032

Eur. J. Dent. 2015; 9(1): 31-35. DOI: 10.4103/13057456.149635

Fonseca D.A., Paula A.B., Marto C.M., Coelho A., Paulo S., Martinho J.P., Carrilho E., Ferreira M.M. Biocompatibility of root canal sealers: a systematic review of in vitro and in vivo studies. Materials (Basel). 2019; 12(24): 4113. DOI: 10.3390/ ma12244113

Giacomino C.M.,Wealleans J.A., Kuhn N., Diogenes A. Comparative biocompatibility and osteogenic potential of two bioceramic sealers. J. Endod. 2019; 45(1): 5156. DOI: 10.1016/j.joen.2018.08.007

Holland R., Gomes J.E. Filho, Cintra L.T.A., Queiroz i.O.A., Estrela C. Factors affecting the periapical healing process of endodontically treated teeth. J. Appl. Oral. Sci. 2017; 25(5): 465-476. DOI: 10.1590/1678-7757-2016-0464

Jitaru S., Hodisan I., Timis L., Lucian A., Bud M. The use of bioceramics in endodontics — literature review. Clujul. Med. 2016; 89(4): 470-473. DOI: 10.15386/ cjmed-612

Jung S., Libricht V., Sielker S., Hanisch M.R., Schäfer E., Dammaschke T. Evaluation of the biocompatibility of root canal sealers on human periodontal ligament cells ex vivo. Odontology. 2019; 107(1): 54-63. DOI: 10.1007/s10266-018-0380-3

Jung S., Sielker S., Hanisch M.R., Libricht V., Schäfer E., Dammaschke T. Cytotoxic effects of four different root canal sealers on human osteoblasts. PLoS. One. 2018; 13(3): e0194467. DOI: 10.1371/ journal.pone.0194467

Kaur A., Shah N., Logani A., Mishra N. Biotoxicity of commonly used root canal sealers: A metaanalysis. J. Conserv. Dent. 2015; 18(2): 83-88. DOI:10.4103/0972-0707.153054

Komabayashi T., Colmenar D., Cvach N., Bhat A., Primus C., Imai Y. Comprehensive review of current endodontic sealers. Dent. Mater. J. 2020; 39(5): 703720. DOI: 10.4012/dmj.2019-288

Kuga M.C., Duarte M.A., Sant'anna-Junior A., Keine K.C., Faria G., Dantas A.A., Guiotti F.A.

Mendes A.T., Silva P.B.D., So B.B., Hashizume L.N., Vivan R.R., Rosa R.A.D., Duarte M.A.H., So M.V.R. Evaluation of physicochemical properties of new calcium silicate-based sealer. Braz. Dent. J. 2018; 29(6): 536-540. DOI: 10.1590/0103-6440201802088

Oh H., Kim E., Lee S., Park S., Chen D., Shin S.J., Kim E., Kim S. Comparison of biocompatibility of calcium silicate-based sealers and epoxy resin-based sealer on human periodontal ligament stem cells. Materials (Basel). 2020; 13(22): 5242. DOI: 10.3390/ma13225242

Reszka P., Nowicka A., Lipski M., Dura W., Drozdzik A., Wozniak K. A comparative chemical study of calcium silicate-containing and epoxy resin-based root canal sealers. Biomed. Res. Int. 2016; 2016: 9808432. DOI: 10.1155/2016/9808432

Santos J.M., Pereira S., Sequeira D.B., Messias A.L., Martins J.B., Cunha H., Palma P.J., Santos A.C. Biocompatibility of a bioceramic silicone-based sealer in subcutaneous tissue. J. Oral. Sci. 2019; 61(1): 171177. DOI: 10.2334/josnusd.18-0145

Simsek N., Akinci L., Gecor O., Alan H., Ahmetoglu F., Taslidere E. Biocompatibility of a new epoxy resin-based root canal sealer in subcutaneous tissue of rat.

Troiano G., Perrone D., Dioguardi M., Buonavoglia A., Ardito F., Lo Muzio L. In vitro evaluation of the cytotoxic activity of three epoxy resin-based endodontic sealers. Dent. Mater. J. 2018; 37(3): 374-378. DOI: 10.4012/dmj.2017-148

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Published

2025-01-28

How to Cite

Juraeva N.I. (2025). METHODS OF TREATMENT OF INFLAMMATORY CHANGES IN THE AREA OF PERIAPICAL TISSUES (LITERATURE REVIEW). Ethiopian International Journal of Multidisciplinary Research, 12(01), 537–542. Retrieved from https://eijmr.org/index.php/eijmr/article/view/2544