ADHESION, GROWTH, AND MATRIX PRODUCTION BY OSTEOBLASTS ON COLLAGEN SUBSTRATA

被引:109
作者
MASI, L
FRANCHI, A
SANTUCCI, M
DANIELLI, D
ARGANINI, L
GIANNONE, V
FORMIGLI, L
BENVENUTI, S
TANINI, A
BEGHE, F
MIAN, M
BRANDI, ML
机构
[1] UNIV FLORENCE,DEPT CLIN PHYSIOPATHOL,ENDOCRINE UNIT,VIALE PIERACCINI 6,I-50139 FLORENCE,ITALY
[2] GENTILI INST,PISA,ITALY
[3] UNIV FLORENCE,INST MORBID ANAT & HISTOPATHOL,I-50139 FLORENCE,ITALY
[4] UNIV FLORENCE,DEPT HUMAN ANAT & HISTOL,I-50139 FLORENCE,ITALY
[5] UNIV FLORENCE,DEPT INTERNAL MED 3,I-50139 FLORENCE,ITALY
关键词
OSTEOBLASTS; COLLAGEN TYPE-I; ON GEL CULTURES; COLLAGEN SPONGES; OSTEOCALCIN;
D O I
10.1007/BF00334548
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
A number of studies have demonstrated the pivotal role of collagen molecules in modulating cell growth and differentiation. In order to analyze the direct effects of collagen type I on the osteoblastic phenotype, we have devised an in vitro culture system for studying the interactions between bovine collagen type I and Saos-2 cells, a human osteoblastic cell line. Saos-2 cells were cultured both on top of collagen-coated culture dishes as well as inside a three-dimensional collagen network. Plating on dishes treated with collagen induced maximal adhesion of Saos-2 cells after 24-hour incubation. Cells cultured on collagen gel matrix expressed about 2.5-fold more alkaline phosphatase when compared with untreated plastic dishes. On collagen-coated dishes the responsiveness of Saos-2 cells to parathyroid hormone was decreased, whereas no modifications were observed in the effect of vasoactive intestinal peptide on these cells. Using a microfluorimetric measurement of DNA, an increase of proliferation was observed in Saos-2 cells cultured on collagen gel. Saos-2 cells were also able to colonize collagen sponges and in this three-dimensional network they were able to synthesize osteocalcin, as assessed both by immunocytochemistry and radioimmunoassay. in this study we have demonstrated that bovine collagen type I exhibits favorable effects on attachment and functional and growth activities of a human osteoblastic cell line, encouraging its use as a bone graft material.
引用
收藏
页码:202 / 212
页数:11
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