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Histological evaluation of tissue reactions to newly synthetized calcium silicate- and hydroxyapatite-based bioactive materials: in vivo study

机译:组织反应对新合成的基于硅酸钙和羟基磷灰石的生物活性材料的组织学评价:体内研究

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Introduction/Objective. Development of materials which could be used as biological bone substitutes is one of the most valuable and active fields of biomaterial research. The goal of the study was to research the reaction of tissue on calcium silicate- (CS) and hydroxyapatitebased (CS-HA) newly synthesized nanomaterials, after being implanted into the subcutaneous tissue of a rats and direct pulp capping of rabbit teeth. Methods. The tested materials were implanted in 40 Wistar male rats, sacrificed after seven, 15, 30, and 60 days. The direct pulp capping was performed on the teeth of rabbits. Cavities were prepared on the vestibular surface of the incisors. The animals were sacrificed after 10 and 15 days. The control material was mineral trioxide aggregate (MTA). Histological analysis covered the tracking of inflammatory reaction cellular components, presence of gigantic cells, and necrosis of the tissue. Results. Seven days after the implantation, the strongest inflammatory response was given by the MTA (3.3 ?} 0.48), while CS and CS-HA scored 3 ± 0.71. After 60 days, the rate of inflammatory reactions dropped, which was the least visible with CS-HA (0.2 ± 0.45). The least visible inflammatory reaction of the rabbits’ pulp tissue was spotted with the CS (1.83 ± 0.75), than with the MTA and CS-HA (2.67 ± 1.53, 3 ± 0.63). Conclusion. The newly synthesized materials caused a slight reaction of the subcutaneous tissue. CS-HA showed the best tissue tolerance. Nanostructural biomaterials caused a slight to moderate inflammatory reaction of the rabbits’ pulp tissue only in the immediate vicinity of the implanted material.
机译:简介/目的。可用作生物骨替代物的材料的开发是生物材料研究中最有价值和最活跃的领域之一。该研究的目的是研究在植入大鼠的皮下组织并直接覆盖兔牙后,组织在硅酸钙-(CS)和羟基磷灰石基(CS-HA)新型纳米材料上的反应。方法。将测试的材料植入40只Wistar雄性大鼠中,在7、15、30和60天后处死。直接在兔子的牙齿上进行牙髓覆盖。在门齿的前庭表面上准备腔体。 10和15天后处死动物。对照材料是三氧化二矿骨料(MTA)。组织学分析涵盖了炎症反应细胞成分的追踪,巨大细胞的存在以及组织的坏死。结果。植入后7天,MTA产生最强的炎症反应(3.3?0.48),而CS和CS-HA得分为3±0.71。 60天后,炎症反应的速率下降,这在CS-HA中最不明显(0.2±0.45)。 CS(1.83±0.75)比MTA和CS-HA(2.67±1.53,3±0.63)少,是兔牙髓组织中最不可见的炎症反应。结论。新合成的材料引起皮下组织的轻微反应。 CS-HA显示出最佳的组织耐受性。纳米结构生物材料仅在植入材料的附近才引起兔子牙髓组织的轻度至中度炎症反应。

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