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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Bone cell behavior on Matrigel-coated Ca/P coatings of varying crystallinities.
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Bone cell behavior on Matrigel-coated Ca/P coatings of varying crystallinities.

机译:在不同结晶度的Matrigel涂层Ca / P涂层上的骨细胞行为。

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Rat calvarial cell mitogenic behavior was investigated on various biomaterials coated with Matrigel, a basement membrane matrix containing growth factors. Low (20-40%) and high (70-90%) crystallinity hydroxyapatite (rHA and cHA), rough titanium (Ti), and tissue culture polystyrene (TP) surfaces were compared. Surface chemistry and calcium resorption of HA coatings, alkaline phosphatase activity (APA), and growth of cells were measured for Matrigel-coated and uncoated surfaces at 2, 7, and 14 days. Gene expression for four noncollagenous bone-related proteins (osteonectin, osteopontin, alkaline phosphatase, and osteocalcin) was also investigated by reverse transcription and polymerase chain reaction up to 28 days. Ca concentration in incubating solutions increased with time for the two types of HA coatings and was always greater for rHA than cHA. Surface chemistry and coating dissolution rates were not affected by the presence of Matrigel or cells throughout the study. APA of cells on the two HA-coated surfaces was comparably enhanced in the presence of Matrigel and was greater than on Ti surfaces. Only HA surfaces showed an increased APA of cells with time in the presence of Matrigel. Cell growth peaked at 7 days and was greatest for cells on the two HA surfaces and without Matrigel. At 14 days, cell growth was comparable on the four surfaces. The presence of HA and Matrigel enhanced cell-specific APA at 14 days. Gene expression for all four proteins investigated showed no differences between surfaces after 7 days. At 2 and 7 days, gene expression was indicative of proliferation for Ti, and of proliferation, differentiation, and mineralization for HA and TP more so without Matrigel. The addition of this matrix significantly enhanced mitogenicity of calvarial cells on HA only after 14 days. Matrigel eliminated differences seen between the two HA coatings. Gene expression was not enhanced or inhibited by the presence of Matrigel.
机译:在各种生物材料上涂了Matrigel(一种含有生长因子的基底膜基质),研究了大鼠颅盖细胞的促有丝分裂行为。比较了低(20-40%)和高(70-90%)结晶度的羟基磷灰石(rHA和cHA),粗糙的钛(Ti)和组织培养的聚苯乙烯(TP)表面。在2天,7天和14天测量Matrigel涂层和未涂层​​表面的表面化学和HA涂层的钙吸收,碱性磷酸酶活性(APA)和细胞生长。还通过长达28天的逆转录和聚合酶链反应研究了四种非胶原骨相关蛋白(骨连接蛋白,骨桥蛋白,碱性磷酸酶和骨钙蛋白)的基因表达。对于两种类型的HA涂层,孵育溶液中的Ca浓度随时间增加,而rHA的钙浓度始终大于cHA。在整个研究过程中,表面化学和涂层溶解速率不受基质胶或细胞存在的影响。在存在Matrigel的情况下,两个HA涂层表面上的细胞的APA相对增强,并且比Ti表面上的更大。在存在Matrigel的情况下,只有HA表面显示细胞的APA随时间增加。细胞生长在7天达到峰值,并且在两个HA表面且没有Matrigel的细胞中最大。在第14天,在四个表面上的细胞生长是可比的。 HA和Matrigel的存在可在14天时增强细胞特异性APA。 7天后,所有四种蛋白质的基因表达均显示表面之间无差异。在第2天和第7天,基因表达可以指示Ti的增殖,以及HA和TP的增殖,分化和矿化作用,而无需使用Matrigel。仅在14天后,该基质的添加显着增强了HA上颅盖细胞的有丝分裂性。 Matrigel消除了两种HA涂层之间的差异。基质胶的存在并未增强或抑制基因表达。

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