Применение биологической пасты биодент для сохранения жизнеспособности пульпы
- № 3(80) 2020
Страницы:
19
–
21
Язык: русский
Аннотация
Повышение эффективности лечения кариеса дентина и гиперемии пульпы с
сохранением жизнеспособности пульпы с помощью биологической пасты. Материал
и методы: под наблюдением находились 130 пациентов в возрасте 18-55 лет, обратившихся в учреждения здравоохранения «Областная стоматологическая поликлиника» г. Андижана.Предмет лабораторных – 40 удаленных зубов вследствие пародонтоза, в которых in vitro проведено непрямое покрытие пульпы биологической пастой. Предмет клинических исследований – 202 зуба с кариесом дентина и гиперемией пульпы, в которых проведено прямое и непрямое покрытие пульпы. Результаты:
биологическая паста положительно влияет на микроэлементный состав дентина, что повышает кариесрезистентность околопульпарного дентина.По темпу подъема и значению рН (11,82) биологическая паста превосходит материалы на основе гидроксида кальция, эффективно проявляя свои антимикробные свойства и не оказывая
агрессивного воздействия на пульпу зуба. Выводы:несмотря на множество методов и материалов,способствующих сохранению жизнеспособности пульпы, наиболее перспективным является метод лечения биологической пастой.
To increase the effectiveness of the treatment of dentin caries and pulp hyperemia with the preservation of pulp viability using biological paste.Results. The biocompatibility of biological paste was established during direct and indirect pulp coating in the experiment, the ability to stimulate the formation of tertiary dentin, as well as the high stability of the material compared to the material based on calcium hydroxide, is substantiated. Biological paste positively affects the microelement composition of dentin, which increases the caries resistance of peri-pulp dentine.The marginal adhesion of the biological paste to dentin (80.5%), as well as to hybrid glass-ionomer cement (71.9%) is the highest among the studied therapeutic cushioning materials, which ensures high sealing and durability of the restoration. In terms of rate of rise and pH value (11.82), biological paste is superior to materials based on calcium hydroxide, effectively exhibiting its antimicrobial properties and not exerting an aggressive effect on the tooth pulp. Conclusion.The pulp of the tooth has a unique structure, performs the most important functions and has a high potential for regeneration and replacement dentin production.Currently, there are many methods and materials that contribute to the preservation of pulp viability, but the most promising method is the treatment of biological paste.
To increase the effectiveness of the treatment of dentin caries and pulp hyperemia with the preservation of pulp viability using biological paste.Results. The biocompatibility of biological paste was established during direct and indirect pulp coating in the experiment, the ability to stimulate the formation of tertiary dentin, as well as the high stability of the material compared to the material based on calcium hydroxide, is substantiated. Biological paste positively affects the microelement composition of dentin, which increases the caries resistance of peri-pulp dentine.The marginal adhesion of the biological paste to dentin (80.5%), as well as to hybrid glass-ionomer cement (71.9%) is the highest among the studied therapeutic cushioning materials, which ensures high sealing and durability of the restoration. In terms of rate of rise and pH value (11.82), biological paste is superior to materials based on calcium hydroxide, effectively exhibiting its antimicrobial properties and not exerting an aggressive effect on the tooth pulp. Conclusion.The pulp of the tooth has a unique structure, performs the most important functions and has a high potential for regeneration and replacement dentin production.Currently, there are many methods and materials that contribute to the preservation of pulp viability, but the most promising method is the treatment of biological paste.