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Immunocytochemical and Neurobiological study on Periodontal Nerve Fibers : A Developmental Approach and Experimental Model

Immunocytochemical and Neurobiological study on Periodontal Nerve Fibers : A Developmental Approach and Experimental Model
牙周神经纤维的免疫细胞化学和神经生物学研究:发育方法和实验模型
批准号:
08457478
负责人:
MAEDA Takeyasu
金额:
$4.54万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (B)
财政年份:
1996
资助国家:
日本
项目状态:
已结题
起止时间:
1996 至 1997

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中文摘要
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英文摘要
1. Postnatal development of periodontal Ruffini endings was investigated in rat incisors by immunoelectron microscopy using PGP 9.5-antibody. The immunoelectron microscopic findings suggested that mechanical stimuli due to tooth eruption and occlusal forces might be a prerequisite for the final differentiation and maturation of the periodontal Ruffini endings.2. In an experimental model, artificial occlusal forces easily induced the forms of the periodontal Ruffini endings, but the damaged terminal formation recovered to normal morphology after complement of tissue repair. Furthermore, thin nerve fibers, beaded in appearance, occurred in the period when tissue remodeling took place.3. In an experimental tooth model, the expression pattern of growth associated protein-43 (GAP-43), a key molecule in neural plasticity, was altered in the axon terminals of the periodontal Ruffini endings. On day 3-5 after tooth movement, immunoreactivity for GAP-43 was temporally found in the axon terminals which lack immunoreaction in physiological conditions.4. The periodontal Ruffini endings exhibited immunoreactivities for calbindin D28k and calretinin, both of which play important roles in mechanotransduction.5. In the nerve injury model to crush inferior alveolar nerves, immunoelectron microscopy revealed the temporal expression of neuropeptide Y,which is usually co-localized in noradrenalin in the sympathetic nervous system, in the axon terminals of the periodontal Ruffini endings.6. Scanning electron microscopy using a chemical maceration technique revealed a three-dimensional structure of the periodontal Ruffini endings. Furthermore, they developed Schwann cell processes which serve as an anchor of these endings in the periodontal ligament.To obtain these findings mentioned above, the ultramicrotome, which was purchased by grant #08457478, was utilized throughout this research project.
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H.Takahashi-Iwanaga ほか2名: "Scanning electron microscopic observation of Ruffini endings in the periodontal ligament of rat incisors." J.Comparative Neurology. 389・1. 177-184 (1997)
H. Takahashi-Iwanaga 等 2 人:“大鼠门牙牙周韧带中 Ruffini 末端的扫描电子显微镜观察。”J. 比较神经学 389・1(1997 年)。
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通讯作者:
H.Kobayashi, K.Ochi, I.Saito, K,Hanada and T.Maeda: "Alterations of ultrastructural localization of growth associated protein-43 (GAP-43) in periodontal Ruffini endings of rat molars during experimental tooth movement." J.Dental Research. (in press). (199
H.Kobayashi、K.Ochi、I.Saito、K、Hanada 和 T.Maeda:“实验性牙齿移动过程中大鼠磨牙牙周 Ruffini 末端中生长相关蛋白 43 (GAP-43) 超微结构定位的改变。”
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Kamasaki,N.他4名: "Immunohistochemical study on responses of nerve fibers in rat dental pulp during tooth movement." Dentin Pulp Complex:Proceeding of the International Conference on Dentin Pulp Complex 1995. 268-271 (1996)
Kamasaki, N. 和其他 4 人:“牙齿运动期间大鼠牙髓神经纤维反应的免疫组织化学研究:牙本质髓复合物国际会议记录 1995 年。268-271 (1996)
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T.Maeda and H.Ohshima: "Morphological basis on periodontal Ruffini endings" Acta Anatomica Nippon. (印刷中). (1998)
T.Maeda 和 H.Ohshima:“牙周 Ruffini 结局的形态学基础”Acta Anatomica Nippon(出版中)。
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