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首页> 外文期刊>Journal of materials science >Chitosan/bovine serum albumin co-micropatterns on functionalized titanium surfaces and their effects on osteoblasts
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Chitosan/bovine serum albumin co-micropatterns on functionalized titanium surfaces and their effects on osteoblasts

机译:壳聚糖/牛血清白蛋白共微模式在功能化钛表面上的变化及其对成骨细胞的影响

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摘要

Chitosan (CS)/bovine serum albumin (BSA) micropatterns were prepared on functionalized Ti surfaces by micro-transfer molding (μ-TM). μ-TM realized the spatially controlled immobilization of cells and offered a new way of studying the interaction between micropatterns and cells. Two kinds of micropatterns were produced: (1) microgrooves representing a discontinuously grooved co-micropattern, with the rectangular CS region separated by BSA walls; (2) microcylinders representing a continuously interconnected co-micropattern, with the net-like CS region separated by BSA cylinders. A comparison of cell behaviors on the two types of micropatterns indicated that the shape rather than the size had a dominant effect on cell proliferation. The micropattern size in the same range of cell diameters favored cell proliferation. However, cell differentiation was more sensitive to the size rather than to the shape of the micropatterns. In conclusion, cell behavior can be regulated by micropatterns integrating different materials.
机译:通过微传递模塑(μ-TM)在功能化的Ti表面上制备了壳聚糖(CS)/牛血清白蛋白(BSA)微图案。 μ-TM实现了细胞的空间控制固定化,并提供了一种研究微模式与细胞之间相互作用的新方法。产生两种类型的微图案:(1)代表不连续开槽的共微图案的微沟槽,矩形CS区域被BSA壁隔开; (2)微型圆柱体,代表连续互连的共微型图形,网状CS区域由BSA圆柱体隔开。比较两种类型的微模式上的细胞行为表明,形状而不是大小对细胞增殖起主要作用。在相同细胞直径范围内的微图案尺寸有利于细胞增殖。但是,细胞分化对大小而不是对微图案的形状更敏感。总之,可以通过整合不同材料的微图案来调节细胞行为。

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  • 来源
    《Journal of materials science》 |2013年第2期|489-502|共14页
  • 作者单位

    Key Lab of Advanced Technologies of Materials, Ministry of Education, School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu 610031, Sichuan, China;

    Key Lab of Advanced Technologies of Materials, Ministry of Education, School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu 610031, Sichuan, China;

    Key Lab of Advanced Technologies of Materials, Ministry of Education, School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu 610031, Sichuan, China;

    Department of Mechanical Engineering, Hong Kong University of Science and Technology, Kowloon, Hong Kong, China;

    Department of Mechanical Engineering, Hong Kong University of Science and Technology, Kowloon, Hong Kong, China;

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