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开发含有新型亲水性和高聚合性丙烯酰胺单体的自粘性盖髓剂。

Development of self-adhesive pulp-capping agents containing a novel hydrophilic and highly polymerizable acrylamide monomer.

机构信息

National Institute of Advanced Industrial Science and Technology (AIST), Health Research Institute, 2217-14 Hayashi-cho, Takamatsu, Kagawa 761-0395, Japan.

Okayama University Dental School, Advanced Research Center for Oral and Craniofacial Sciences, 2-5-1 Shikata-cho, Kita-ku, Okayama 700-8558, Japan.

出版信息

J Mater Chem B. 2020 Jun 24;8(24):5320-5329. doi: 10.1039/d0tb00079e.

Abstract

Several studies have shown the clinical success of hydraulic calcium-silicate cements (hCSCs) for direct and indirect pulp capping and root repair. However, hCSCs have various drawbacks, including long setting time, poor mechanical properties, low bond strength to dentin, and relatively poor handling characteristics. To overcome these limitations, a light-curable, resin-based hCSC (Theracal LC, Bisco) was commercially introduced; however, it did not exhibit much improvement in bond strength. We developed a light-curable self-adhesive pulp-capping material that contains the novel acrylamide monomer N,N'-{[(2-acrylamido-2-[(3-acrylamidopropoxy)methyl]propane-1,3-diyl)bis(oxy)]bis(propane-1,3-diyl)}diacrylamide (FAM-401) and the functional monomer 4-methacryloxyethyl trimellitate anhydride (4-MET). Two experimental resin-based hCSCs containing different calcium sources (portlandite: Exp_Pl; tricalcium silicate cement: Exp_TCS) were prepared, and the commercial hCSCs Theracal LC and resin-free hCSC Biodentine served as controls. The performance of each cement was evaluated based on parameters relevant for vital pulp therapy, such as curing degree on a wet surface, mechanical strength, as determined using a three-point bending test, shear bond strength to dentin, cytotoxicity, as determined using an MTT assay, and the amount of calcium released, as determined using inductively coupled plasma atomic emission spectrometry. Both experimental cements cured on wet surfaces and showed relatively low cytotoxicity. Furthermore, their flexural and shear bond strength to dentin were significantly higher than those of the commercial references. High calcium release was observed for both Exp_Pl and Biodentine. Thus, Exp_Pl as a new self-adhesive pulp-capping agent performed better than the commercial resin-based pulp-capping agent in terms of mechanical strength, bond strength, and calcium release.

摘要

几项研究表明,水硬性硅酸钙水泥(hCSCs)在直接和间接盖髓和根面修复方面具有临床成功。然而,hCSCs 有许多缺点,包括凝固时间长、机械性能差、与牙本质的结合强度低以及相对较差的操作特性。为了克服这些限制,一种光固化、基于树脂的 hCSC(Theracal LC,Bisco)被商业化推出;然而,它在结合强度方面并没有表现出很大的改善。我们开发了一种光固化自粘结盖髓材料,其中包含新型丙烯酰胺单体 N,N'-{[(2-丙烯酰胺基-2-[(3-丙烯酰胺基丙氧基)甲基]丙烷-1,3-二基)双(氧基)]双(丙烷-1,3-二基)}二丙烯酰胺(FAM-401)和功能单体 4-甲丙烯酰氧基乙基偏苯三酸酐(4-MET)。制备了两种含有不同钙源的实验性基于树脂的 hCSC(熟石灰:Exp_Pl;硅酸三钙水泥:Exp_TCS),并将市售 hCSC Theracal LC 和无树脂 hCSC Biodentine 作为对照。根据与活髓治疗相关的参数,如湿表面的固化程度、使用三点弯曲试验测定的机械强度、与牙本质的剪切结合强度、使用 MTT 测定的细胞毒性以及释放的钙量,对每种水泥的性能进行了评估。两种实验性水泥都在湿表面上固化,并表现出相对较低的细胞毒性。此外,它们与牙本质的弯曲和剪切结合强度明显高于商业参考物。Exp_Pl 和 Biodentine 都观察到了高钙释放。因此,Exp_Pl 作为一种新的自粘结盖髓剂,在机械强度、结合强度和钙释放方面优于商业性基于树脂的盖髓剂。

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