On the issue of composite materials

Olga Mohamed Hassan Bait Said , S. V. Razumova , E. V. Velichko

Russian Journal of Dentistry ›› 2020, Vol. 24 ›› Issue (4) : 278 -282.

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Russian Journal of Dentistry ›› 2020, Vol. 24 ›› Issue (4) : 278 -282. DOI: 10.17816/1728-2802-2020-24-4-278-282
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On the issue of composite materials

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Abstract

Caries is the pathological process of hard tissue demineralization in teeth caused by various factors. As a result, necrotic areas within the tooth are formed that require removal and subsequent reconstruction in order to re-establish tooth function. This is achieved by replacing the demineralized areas with dental filling materials. With a wide variety of available dental filling materials, the dentist is faced with the task of choosing the correct material depending on the nature of the lesion. To date, the most widely used permanent filling materials are composites, which constitute one of the largest groups of filling materials. They gained their popularity due to their numerous good qualities, and the continuous research within the field of dental materials enables further improvement of their properties. Currently, a new composite has appeared in dentistry, which helps to neutralize the salivary pH during acidosis, thereby preventing the development of dental caries

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filling materials / composite materials / review

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Olga Mohamed Hassan Bait Said, S. V. Razumova, E. V. Velichko. On the issue of composite materials. Russian Journal of Dentistry, 2020, 24(4): 278-282 DOI:10.17816/1728-2802-2020-24-4-278-282

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References

[1]

Emelina GV, Grinin VM, Ivanov PV, Kuznetsova NK, Zyulkina LA. The analysis of dental disease in the choice of methods and approaches of individual prevention of individual prevention of dental caries and paradont diseases. Sovremennye problemy nauki i obrazovaniya. 2011;(2):9. (in Russian)

[2]

Емелина Г.В., Гринин В.М., Иванов П.В., Кузнецова Н.К., Зюлькина Л.А. Анализ стоматологической заболеваемости в выборе методов и подхо-дов индивидуальной профилактики кариеса зубов и заболеваний пародонта. Современные проблемы науки и образования. 2011;(2):9.

[3]

Griffin SO, Regnier E, Griffin PM, Huntley V. Effectiveness of fluoride in preventing caries in adults. J. Dent Res. 2007;86(5):410–5. Doi: 10.1177/154405910708600504.

[4]

Griffin S.O., Regnier E., Griffin P.M., Huntley V. Effectiveness of fluoride in preventing caries in adults. J. Dent Res. 2007;86(5):410–5. Doi: 10.1177/154405910708600504.

[5]

Taubman MA, Nash DA. The scientific and public-health imperative for a vaccine against dental caries. Nat. Rev. Immunol. 2006;6(7):555–63. Doi: 10.1038/nri1857.

[6]

Taubman M.A., Nash D.A. The scientific and public-health imperative for a vaccine against dental caries. Nat. Rev. Immunol. 2006;6(7):555–63. Doi: 10.1038/nri1857.

[7]

Maslak EE. Dental caries prevalence and the recent trends in caries prevention. Meditsinskii alfavit. 2015;1(1):28–31. (in Russian)

[8]

Маслак Е.Е. Распространенность кариеса зубов и современные направления профилактики кариеса. Медицинский алфавит. 2015;1(1):28–31.

[9]

Spirichev VB. Scientific rationale for the use of vitamins in the prophylactic and therapeutic purposes. Report 1. Lack of vitamins in the diet of modern human: reasons, consequences and correction. Voprosy pitaniya. 2010;79(5):4–14. (in Russian)

[10]

Спиричев В.Б. Научное обоснование применения витаминов в профилактических целях. Сообщение 1. Недостаток витаминов в рационе со-временного человека: причины, последствия и пути коррекции. Вопросы питания. 2010;79(5):4–14.

[11]

Poyurovskaya IYa. New materials in therapeutic dentistry: review. Zubovrachebnyi Vestnik. 1992;(1):19–26. (in Russian)

[12]

Поюровская И.Я. Новые материалы в терапевтической стоматологии: обзор. Зубоврачебный Вестник. 1992;(1):19–26.

[13]

Abramova NE, Kibrotsashvili IA, Rubezhova NV, Tumanova SA. Dental materials science. Composites: Study guide. [Stomatologicheskoe materialovedenie. Kompozity: Uchebnoe posobie]. St. Petersburg: Izdatel'stvo GBOU VPO SZGMU im. I.I. Mechnikova; 2013. (in Russian)

[14]

Абрамова Н.Е., Киброцашвили И.А., Рубежова Н.В., Туманова С.А. Стоматологическое материаловедение. Композиты: Учебное пособие. СПб.: Издательство ГБОУ ВПО СЗГМУ им. И.И. Мечникова; 2013.

[15]

Nikolaev AI, Tsepov LM. Practical therapeutic dentistry: Textbook. [Prakticheskaya terapevticheskaya stomatologiya: Uchebnoe posobie]. 9th ed. Moscow: MEDpress-inform; 2014. (in Russian)

[16]

Николаев А.И., Цепов Л.М. Практическая терапевтическая стоматология: учебное пособие. 9-е изд. М.: МЕДпресс-информ; 2014.

[17]

Maksimovskii YuM, Ul'yanova TV, Zablotskaya NV. Modern filling materials in clinical dentistry. [Sovremennye plombirovochnye materialy v klinicheskoi stomatologii]. Moscow: MED press-inform; 2008. (in Russian)

[18]

Максимовский Ю.М., Ульянова Т.В., Заблоцкая Н.В. Современные пломбировочные материалы в клинической стоматологии. М.: МЕД-пресс-информ; 2008.

[19]

Yadiki JV, Jampanapalli SR, Konda S, Inguva HC, Chimata VK. Comparative evaluation of the antimicrobial properties of glass ionomer cements with and without chlorhexidine gluconate. Int. Clin. Pediatr. Dent. 2016;9(2):99–103. Doi: 10.5005/jp-journals-10005-1342.

[20]

Yadiki J.V., Jampanapalli S.R., Konda S., Inguva H.C., Chimata V.K. Comparative evaluation of the antimicrobial properties of glass ionomer cements with and without chlorhexidine gluconate. Int. Clin. Pediatr. Dent. 2016;9(2):99–103. Doi: 10.5005/jp-journals-10005-1342.

[21]

Kim GE, Leme-Kraus AA, Phansalkar R, Viana G, Wu C, Chen SN, et al. Effect of bioactive primers on bacterial-induced secondary caries at the tooth-resin interface. Oper. Dent. 2017;42(2):196–202. Doi: 10.2341/16-107-l.

[22]

Kim G.E., Leme-Kraus A.A., Phansalkar R., Viana G., Wu C., Chen S.N., et al. Effect of bioactive primers on bacterial-induced secondary caries at the tooth-resin interface. Oper. Dent. 2017;42(2):196–202. Doi: 10.2341/16-107-l.

[23]

Schenck L, Burtscher P, Vogel K, Weinhold HC. Major breakthrough in the field of direct posterior composite resins — thanks to the combined use of Tetric EvoCeram Bulk Fill and Bluephase Style. Die ZahnarztWoche. Special Feature. 2011;38(11):3–15.

[24]

Schenck L., Burtscher P., Vogel K., Weinhold H.C. Major breakthrough in the field of direct posterior composite resins — thanks to the combined use of Tetric EvoCeram Bulk Fill and Bluephase Style. Die ZahnarztWoche. Special Feature. 2011;38(11):3–15.

[25]

Demarco FF, Collares K, Coelho-de-Souza FH, Correa MB, Cenci MS, Moraes RR, Opdam NJ. Anterior composite restorations: a systematic review on long-term survival and reasons for failure. Dent. Mater. 2015;31(10):1214–24. Doi: 10.1016/j.dental.2015.07.005.

[26]

Demarco F.F., Collares K., Coelho-de-Souza F.H., Correa M.B., Cenci M.S., Moraes R.R., Opdam N.J. Anterior composite restorations: a systematic review on long-term survival and reasons for failure. Dent. Mater. 2015;31(10):1214–24. Doi: 10.1016/j.dental.2015.07.005.

[27]

Miletic V, ed. Dental composite materials for direct restorations. Cham: Springer; 2018. Doi: 10.1007/978-3-319-60961-4.

[28]

Miletic V., ed. Dental composite materials for direct restorations. Cham: Springer; 2018. Doi: 10.1007/978-3-319-60961-4.

[29]

Wisniewska-Jarosinska M, Poplawski T, Chojnacki CJ, Pawlowska E, Krupa R, Szczepanska J, Blasiak J. Independent and combined cytotoxicity and genotoxicity of triethylene glycol dimethacrylate and urethane dimethacrylate. Mol. Biol. Rep. 2011;38(7):4603–11. Doi: 10.1007/s11033-010-0593-1.

[30]

Wisniewska-Jarosinska M., Poplawski T., Chojnacki C.J., Pawlowska E., Krupa R., Szczepanska J., Blasiak J. Independent and combined cytotoxicity and genotoxicity of triethylene glycol dimethacrylate and urethane dimethacrylate. Mol. Biol. Rep. 2011;38(7):4603–11. Doi: 10.1007/s11033–010–0593–1.

[31]

Falconi M, Teti G, Zago M, Pelotti S, Breschi L, Mazzotti G. Effects of HEMA on type I collagen protein in human gingival fibroblasts. Cell Biol. Toxicol. 2007;23(5):313–22. Doi: 10.1007/s10565-006-0148-3.

[32]

Falconi M., Teti G., Zago M., Pelotti S., Breschi L., Mazzotti G. Effects of HEMA on type I collagen protein in human gingival fibroblasts. Cell Biol. Toxi-col. 2007;23(5):313–22. Doi: 10.1007/s10565-006-0148-3.

[33]

Razumova SN, Lebedenko IYu, Ivanov SYu, eds. Propaedeutics of dental diseases. [Propedevtika stomatologicheskikh zabolevanii]. Moscow: GE-OTAR-Media; 2019. (in Russian)

[34]

Разумова С.Н., Лебеденко И.Ю, Иванов С.Ю., ред. Пропедевтика стоматологических заболеваний. М.: ГЭОТАР-Медиа; 2019.

[35]

Salova AV, Rekhachev VM. Features of aesthetic restoration in dentistry. [Osobennosti esteticheskoi restavratsii v stomatologii]. St. Petersburg: Chelovek; 2008. (in Russian)

[36]

Салова А.В., Рехачев В.М. Особенности эстетической реставрации в стоматологии. СПб.: Человек; 2008.

[37]

Bragunova RM, Razumova SN, Volina EG. Adhesive activity of cariesogenic microorganisms to composite material with antibacterial additive. Med-itsinskii alfavit. 2018;3(24):26–7. (in Russian)

[38]

Брагунова Р.М., Разумова С.Н., Волина Е.Г. Адгезивная активность кариесогенных микроорганизмов к образцам композитного материала с антибактериальной добавкой. Медицинский алфавит. 2018;3(24):26–7.

[39]

Razumova SN, Gapochkina LL, Bragunova RM, Brago AS, Khaskhanova LM, Manvelyan AS. Estimation of antimicrobial additive influence on composite properties. Meditsinskii alfavit. 2017;4(36):24–7. (in Russian)

[40]

Разумова С.Н., Гапочкина Л.Л., Брагунова Р.М., Браго А.С., Хасханова Л.М., Манвелян А.С. Оценка влияния антимикробной добавки на свой-ства композита. Медицинский алфавит. 2017;4(36):24–7.

[41]

Bragunova RM, Razumova SN, Melkumyan AR, Brago AS, Khaskhanova LM, Grigoryan IE, Safronova OV. Study of antimicrobial activity of composite materials. Meditsinskii alfavit. 2018;1(2):54–8. (in Russian)

[42]

Брагунова Р.М., Разумова С.Н., Мелкумян А.Р., Браго А.С., Хасханова Л.М., Григорян И.Э., Сафронова О.В. Изучение антимикробной актив-ности композитных материалов. Медицинский алфавит. 2018;1(2):54–8.

[43]

Ivoclar Vivadent. Cention N. 2016. Available at: https://www.ivoclarvivadent.in/p/all/cention-n (accessed 12 Jul 2020).

[44]

Didem A, Gozde Y, Nurhan O. Comparative mechanical properties of bulk-fill resins. Open Journal of Composite Materials. 2014;4(2):117–21. Doi: 10.4236/ojcm.2014.42013.

[45]

Didem A., Gozde Y., Nurhan O. Comparative mechanical properties of bulk-fill resins. Open Journal of Composite Materials. 2014;4(2):117–21. Doi: 10.4236/ojcm.2014.42013.

[46]

Ilie N, Hickel R. Investigations on a methacrylate-based flowable composite based on the SDR™ technology. Dent. Mater. 2011;27(4):348–55. Doi: 10.1016/j.dental.2010.11.014.

[47]

Ilie N., Hickel R. Investigations on a methacrylate-based flowable composite based on the SDR™ technology. Dent. Mater. 2011;27(4):348–55. Doi: 10.1016/j.dental.2010.11.014.

[48]

Novikova ZhA. The content of fluoride in oral fluid in individuals with high intensity of tooth decay after the use of toothpastes with different concentra-tions of fluoride. Vestnik stomatologii. 2010;(2):75–8. (in Russian)

[49]

Новикова Ж.А. Содержание фтора в ротовой жидкости у лиц с высокой интенсивностью кариеса после применения зубных паст с разной кон-центрацией фтора. Вестник стоматологии. 2010;(2):75–8.

[50]

Lobko SS, Shul'ga OA. Fluoride toothpastes and health oral cavity. Meditsinskie novosti. 2015;(3):29–31. (in Russian)

[51]

Лобко С.С., Шульга О.А. Фторсодержащие зубные пасты и здоровье полости рта. Медицинские новости. 2015;(3):29–31.

[52]

Kashkina AA, Pylaykina VV, Nikonova AV. The use of glass-ionomer cements for the prevention and treatment of secondary dental caries. Sovremennye tendentsii razvitiya nauki i tekhnologii. 2016;11(5):47–9. (in Russian)

[53]

Кашкина А.А., Пылайкина В.В., Никонова А.В., Суворова М.Н. Применение стеклоиономерных цементов для профилактики и лечения вто-ричного кариеса зубов. Современные тенденции развития науки и технологий. 2016;11(5):47–9.

[54]

Gupta N, Jaiswal S, Nikhil V, Gupta S, Jha P, Bansal P. Comparison of fluoride ion release and alkalizing potential of a new bulk-fill alkasite. J. Conserv. Dent. 2019;22(3):296–9. Doi: 10.4103/jcd.jcd_74_19.

[55]

Gupta N., Jaiswal S., Nikhil V., Gupta S., Jha P., Bansal P. Comparison of fluoride ion release and alkalizing potential of a new bulk-fill alkasite. J. Con-serv. Dent. 2019;22(3):296–9. Doi: 10.4103/jcd.jcd_74_19.

[56]

Neelakantan P, John S, Anand S, Sureshbabu N, Subbarao C. Fluoride release from a new glass-ionomer cement. Oper. Dent. 2011;36:80–5. Doi: 10.2341/10-219-lr.

[57]

Neelakantan P., John S., Anand S., Sureshbabu N., Subbarao C. Fluoride release from a new glass-ionomer cement. Oper. Dent. 2011;36:80–5. Doi: 10.2341/10-219-lr.

[58]

Cardoso AM, Leitao AS, Neto JL, Almeida TL, Lima DM, Brandt LM, et al. Evaluation of fluoride release, pH and microhardness of glass ionomer ce-ments. Braz. Res. Pediatr. Dent. Int. Clin. 2015;15:23–9. Doi: 10.4034/pboci.2015.151.03.

[59]

Cardoso A.M., Leitao A.S., Neto J.L., Almeida T.L., Lima D.M., Brandt L.M., et al. Evaluation of fluoride release, pH and microhardness of glass iono-mer cements. Braz. Res. Pediatr. Dent. Int. Clin. 2015;15:23–9. Doi: 10.4034/pboci.2015.151.03.

[60]

Popruzhenko TV, Klenovskaya MI. Prevention of dental caries using fluoride, calcium and phosphate products: Guideline. [Profilaktika kariesa zubov s ispol'zovaniem sredstv, soderzhashchikh ftoridy, kal'tsii i fosfaty: Uchebno-metodicheskoe posobie]. Minsk: BGMU; 2010. (in Russian)

[61]

Попруженко Т.В., Кленовская М.И. Профилактика кариеса зубов с использованием средств, содержащих фториды, кальций и фосфаты: Учебно-методическое пособие. Минск: БГМУ; 2010.

[62]

Chole D, Shah HK, Kundoor S, Bakle S, Gandhi N, Hatte N. In Vitro comparision of flexural strength of cention-n, bulk-fill composites, light-cure nano-composites and resin-modified glass ionomer cement. IOSR Journal of Dental and Medical Sciences. 2018;17(10):79–82. Doi: 10.9790/0853-1710087982.

[63]

Chole D., Shah H.K., Kundoor S., Bakle S., Gandhi N., Hatte N. In vitro comparision of flexural strength of cention-n, bulk-fill composites, light-cure nanocomposites and resin-modified glass ionomer cement. IOSR Journal of Dental and Medical Sciences. 2018;17(10):79–82. Doi: 10.9790/0853-1710087982.

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