Lim Miyoung, Jung Chanyong, Shin Dong-Hoon, Cho Yong-Bum, Song Minju
Department of Conservative Dentistry, College of Dentistry, Dankook University, Cheonan, Korea.
Restor Dent Endod. 2020 Jun 9;45(3):e35. doi: 10.5395/rde.2020.45.e35. eCollection 2020 Aug.
Epoxy resin-based sealers are currently widely used, and several studies have considered AH Plus to be the gold-standard sealer. However, it still has limitations, including possible mutagenicity, cytotoxicity, inflammatory response, and hydrophobicity. Drawing upon the advantages of mineral trioxide aggregate, calcium silicate-based sealers were introduced with high levels of biocompatibility and hydrophilicity. Because of the hydrophilic environment in root canals, water resorption and solubility of root canal sealers are important factors contributing to their stability. Sealers displaying lower microleakage and stronger push-out bond strength are also needed to endure the dynamic tooth environment. Although the physical properties of calcium silicate-based sealers meet International Organization for Standardization recommendations, and they have consistently reported to be biocompatible, they have not overcome conventional resin-based sealers in actual practice. Therefore, further studies aiming to improve the physical properties of calcium silicate-based sealers are needed.
基于环氧树脂的封闭剂目前被广泛使用,并且多项研究认为AH Plus是金标准封闭剂。然而,它仍然存在局限性,包括可能的致突变性、细胞毒性、炎症反应和疏水性。借鉴三氧化矿物凝聚体的优点,引入了具有高生物相容性和亲水性的硅酸钙基封闭剂。由于根管内的亲水环境,根管封闭剂的吸水性和溶解性是影响其稳定性的重要因素。还需要具有较低微渗漏和较强推出粘结强度的封闭剂来耐受动态的牙齿环境。尽管硅酸钙基封闭剂的物理性能符合国际标准化组织的建议,并且一直报道其具有生物相容性,但在实际应用中它们尚未超过传统的树脂基封闭剂。因此,需要进一步开展旨在改善硅酸钙基封闭剂物理性能的研究。