首页> 外文期刊>Journal of Periodontology >Application of periodontal tissue engineering using enamel matrix derivative and a human fibroblast-derived dermal substitute to stimulate periodontal wound healing in Class III furcation defects.
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Application of periodontal tissue engineering using enamel matrix derivative and a human fibroblast-derived dermal substitute to stimulate periodontal wound healing in Class III furcation defects.

机译:应用牙釉质基质衍生物和人成纤维细胞衍生的真皮替代物刺激牙周组织愈合在III类牙根分叉缺损中的应用。

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BACKGROUND: Enamel matrix derivative (EMD) has been shown to promote several aspects of periodontal regeneration in vitro and in vivo. Recently, a bioengineered tissue (DG) was developed to promote wound healing of chronic skin ulcers. This pilot study sought to assess the effects of EMD and DG, alone or in combination, on periodontal wound healing in surgically created Class III furcation defects. METHODS: Six female baboons received bilateral ostectomy of approximately 10 mm around the first and second mandibular molars to achieve Class III, subclass C furcation defects. Wire ligatures and cotton pellets were left in place for 2 months to maintain the depth of the defects and promote plaque accumulation. Each furcally involved molar was then assigned to one of four treatments: open flap debridement (OFD), OFD plus EMD, OFD plus DG, or OFD plus DG and EMD. This resulted in six total sites per treatment group. Seven months after defect creation and 5 months after treatment, and after no oral hygiene, tissue blocks of the mandible were taken for blinded histometric analysis to assess parameters of periodontal regeneration adjacent to furcal root surfaces and from the mid-furcal aspect (i.e., new bone, new connective tissue attachment, new epithelial attachment, and new cementum formation). RESULTS: Histometric analysis demonstrated differential regenerative responses with respect to treatment within each animal. However, statistically significant differences between treatments from all six animals were not observed (P >0.20, mixed-model analysis of variance). EMD-treated sites presented mildly positive regenerative results and no negative responses. Both DG only and combination therapy demonstrated similar or less than positive responses relative to OFD controls. CONCLUSION: The descriptive analysis may suggest a positive effect of enamel matrix proteins and a negative effect of DG used alone or in combination with enamel matrix proteins on the regeneration of Class III furcation defects in baboons.
机译:背景:牙釉质基质衍生物(EMD)已显示出在体外和体内促进牙周再生的几个方面。最近,开发了生物工程组织(DG)以促进慢性皮肤溃疡的伤口愈合。这项初步研究旨在评估EMD和DG单独或组合对手术产生的III类牙根分叉缺损牙周伤口愈合的影响。方法:六个雌性狒狒在第一和第二下颌磨牙周围进行了约10 mm的双侧造口术,以达到III类,C类亚分叉缺损。将金属丝绑扎带和棉丸放置2个月,以保持缺陷的深度并促进斑块积聚。然后将每个分叉的磨牙参与以下四个处理之一:开放皮瓣清创术(OFD),OFD加EMD,OFD加DG或OFD加DG和EMD。这导致每个治疗组总共六个部位。缺陷形成后七个月和治疗后五个月,并且在没有口腔卫生之后,取下颌骨的组织块进行盲法组织学分析,以评估邻近牙根根表面和牙根中部的牙周再生参数(即新牙骨骼,新的结缔组织附着,新的上皮附着和新的牙骨质形成)。结果:直方图分析表明,每只动物在治疗方面都有不同的再生反应。但是,未观察到所有六只动物的治疗之间的统计学显着差异(P> 0.20,方差的混合模型分析)。 EMD处理的位点显示出轻微的正再生结果,而没有阴性反应。相对于OFD对照,仅DG和联合治疗均显示出相似或少于阳性反应。结论:描述性分析可能表明釉质基质蛋白的正作用和单独或与釉质基质蛋白结合使用的DG对狒狒III类分叉缺损再生的负作用。

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