[体外培养人成纤维细胞样细胞在牙根上初始附着的超微结构研究]。

H Tanaka
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引用次数: 3

摘要

本研究旨在探讨牙根表面脱矿处理对人牙周韧带成纤维细胞样细胞体外初始附着、生长和分化的纵向影响。牙骨质和牙本质碎片的制备是为了正畸的目的。一组根碎片未脱矿。其余各组分别用柠檬酸(pH = 1.0, 3 min)或EDTA (pH = 7.4, 30 min)脱矿。塑料布作为控制。将人牙周韧带成纤维细胞样细胞培养于牙根碎片和塑料片上。孵育后,用电子显微镜观察根碎片和塑料片。胶原纤维通过脱矿根表面暴露于根表面。暴露的胶原纤维对细胞的附着和生长有影响,细胞在根表面的细胞外空间产生胶原纤维。牙本质碎片脱矿比牙骨质碎片脱矿对细胞附着、生长和分化的影响更大。牙本质碎片柠檬酸脱矿对细胞附着、生长和分化的影响大于EDTA脱矿。结果表明,牙周治疗后,柠檬酸脱矿牙本质碎片可为结缔组织附着体的建立提供最有效的牙表面。
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[Ultrastructural study of initial attachment by human fibroblast-like cells on tooth roots in vitro].

The purpose of this study was to determine the longitudinal effect of demineralized treatment of root surfaces on initial attachment, growth and differentiation of human periodontal ligament fibroblast-like cells in vitro. Cementum and dentin fragments were prepared from intact extracted human teeth for orthodontic reason. The root fragments of one group were not demineralized. Those of the other groups were demineralized by either citric acid (pH = 1.0, 3 min) or EDTA (pH = 7.4, 30 min). Plastic sheets served as controls. Human periodontal ligament fibroblast-like cells were incubated on root fragments and plastic sheets. After incubation, the root fragments and plastic sheets were examined by electron microscopy. The collagen fibers were exposed to the root surface by demineralized root surface. The exposed collagen fibers showed an effect on the cell attachment and growth, and the cells produced collagen fibers in the extra-cellular space of the root surface. Demineralization of dentin fragments were more strongly affected in cell attachment, growth and differentiation than demineralization of cementum fragments. Citric acid demineralization of dentin fragments had a greater effect on cell attachment, growth and differentiation than EDTA demineralization of dentin fragments. The results suggest that citric acid demineralization of dentin fragments may provide the most effective dental surface for the establishment of connective tissue attachment after periodontal treatment.

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[Experimental studies on morphological changes of microvascular architecture following the free gingival autograft on denuded alveolar bone]. [A study of lipopolysaccharide derived from Bacteroides gingivalis]. [Distribution of enzymatically pathogenic bacteria from periodontal pocket in advancing periodontitis]. [The effect of superoxide dismutase on the inflammation induced by periodontal pathogenic bacteria and wound healing of gingival incision]. [Immunohistochemical localization of the chondroitin sulfate proteoglycan in demineralized rat periodontal tissue].
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