Department of Oral Medicine, Division of Endodontics, Kanagawa Dental College, 82 Inaoka-cho, Yokosuka, Kanagawa 238-8580, Japan.
Dent Mater J. 2011;30(2):176-82. doi: 10.4012/dmj.2010-095. Epub 2011 Mar 10.
We aimed to establish an experimental animal model to evaluate materials for endodontic therapy. We focused on the biocompatibility of new paste-type zinc oxide-eugenol (ZOE) sealer. The results of this sealer were compared with those of conventional powder/liquid ZOE and eugenol-free sealers. The molars of Wistar rats were extracted and repositioned in the original socket after application of the sealers on the root apices. Mild inflammation occurred in the periapical tissue of the replanted teeth with both ZOE sealers on day 7, whereas the eugenol-free sealer induced severe inflammation. On day 14, the lesions induced by all types of sealers were healed and replaced predominantly by fibrous connective tissue. Thus, all endodontic materials showed high biocompatibility, although the extent of inflammatory reactions during the early stages varied depending on the types of materials. We demonstrated that our animal model was useful for the assessment of the biocompatibility of endodontic materials.
我们旨在建立一种实验动物模型,以评估牙髓治疗用材料。我们专注于新型糊剂型氧化锌丁香酚(ZOE)封料的生物相容性。将该封料的结果与传统的粉/液 ZOE 封料和无丁香酚封料进行了比较。将 Wistar 大鼠的磨牙拔出并重新置于原来的牙槽窝中,然后在根尖处应用封料。在应用 ZOE 封料后的第 7 天,再植牙的根尖周组织出现轻度炎症,而无丁香酚封料则引起严重的炎症。在第 14 天,所有类型的封料诱导的病变均已愈合,主要由纤维结缔组织替代。因此,所有牙髓材料均显示出较高的生物相容性,尽管在早期阶段炎症反应的程度取决于材料的类型。我们证明,我们的动物模型可用于评估牙髓材料的生物相容性。