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Regeneration of hard tissue by the osteoblasts-collagen matrix complex

Regeneration of hard tissue by the osteoblasts-collagen matrix complex
成骨细胞-胶原基质复合物促进硬组织再生
批准号:
05559001
负责人:
MIZUNO Morimichi
金额:
$3.52万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Developmental Scientific Research (B)
财政年份:
1993
资助国家:
日本
项目状态:
已结题
起止时间:
1993 至 1995

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中文摘要
翻译
在本研究中,我们研究了骨髓细胞-胶原基质复合物是否在体内诱导成骨。从大鼠股骨中提取骨髓细胞,在胶原基质上分化成成骨细胞。在常规培养条件下,骨髓细胞呈成纤维细胞形态,不表达典型的成骨细胞表型。相反,胶原基质上的骨髓细胞呈多边形,碱性磷酸酶活性高,骨钙素合成高,这是成骨细胞表型的标志。然后将骨髓细胞-胶原基质复合物植入裸鼠皮下。直到植入后第2周,胶原基质仍然存在,两者之间形成结缔组织。第三周,骨骼形成,第四周,骨髓在骨骼之间被识别出来。实验期间未形成软骨。这些发现表明骨髓细胞-胶原基质以直接成骨的方式形成骨。骨髓细胞在植入前分化为成熟的成骨细胞是体内成骨的先决条件。骨髓细胞本身或成骨前细胞与胶原基质结合在体内植入后均不诱导成骨。在本项目中,我们成功地利用骨髓细胞和胶原基质诱导成骨。骨髓细胞和胶原基质形成骨的确切机制尚不清楚。因此,我们将继续这个项目,并希望开发一种新的治疗骨缺损的方法。
英文摘要
In this study, we investigated whether the bone marrow cells-collagen matrix complex induced bone in vivo. Bone marrow cells which were harvested from rat femur, differentiated to osteoblasts on collagen matrix. Under the conventional culture condition, bone marrow cells showed fibroblastic-form, and did not express the typical osteoblastic phenotypes. On the contrary, bone marrow cells on collagen matrix showed polygonal-form, and expressed high alkaline phosphatase activity and synthesized osteocalcin which were markers of osteoblastic phenotypes. Next bone marrow cells-collagen matrix complexes were implanted into the subcutaneous region of nude mouse. Until week two after implantation, collagen matrix remained, and connective tissue were formed between them. On week three, bone was formed, and bone marrow was recognized between bone on week four. No cartilage was formed for the duration of experiment. These findings indicate that bone marrow cells -collagen matrix formed bone in a direct bone formation manner. Bone marrow cells differentiated to mature osteoblasts before the implantation is a prerequisite for the bone formation in vivo. Bone marrow cells themselves or preosteoblasts did not induce bone when combined with collagen matrix and was implanted in vivo. In this project we succeeded to induce bone by the bonemarrow cells and collagen matrix. The precise mechanism of bone formation by bone marrow cells and collagen matrix is unclear. Therefore we are going to continue this project and would like to develop a new therapy for cure the bone defect.
期刊论文(6)
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科研奖励(0)
会议论文
Mizuno M.et al: "TGFβ accelerated the osteogenic differentiation of bone marrow cells induced by collagen matrix" Biochem,Biophys,Res,Commun.211. 1091-1098 (1995)
Mizuno M.等人:“TGFβ加速胶原基质诱导的骨髓细胞的成骨分化”Biochem,Biophys,Res,Commun.211(1995)。
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Mizuno M.et al: "The osteoblasti MC3T3-E1 cells synthesized C-terminal propeptide of type I collagen which promoted cell-attachment of osteobblan" Biochem,Biophys,Acba. 1310. 97-102 (1996)
Mizuno M.et al:“成骨细胞 MC3T3-E1 细胞合成了 I 型胶原蛋白的 C 末端前肽,促进了骨细胞的附着”Biochem、Biophys、Acba。
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