首页> 外文会议>NASA Materials Science Conference >THE EFFECT OF SIMULATED MICROGRAVITY ENVIRONMENT OF RWV BIOREACTORS ON SURFACE REACTIONS AND ADSORPTION OF SERUM PROTEINS ON BONE-BIOACTIVE MICROCARRIERS
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THE EFFECT OF SIMULATED MICROGRAVITY ENVIRONMENT OF RWV BIOREACTORS ON SURFACE REACTIONS AND ADSORPTION OF SERUM PROTEINS ON BONE-BIOACTIVE MICROCARRIERS

机译:RWV生物反应器模拟微疱疹环境对骨生物 - 生物活性微载体表面反应及血清蛋白的吸附的影响

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Biomimetically modified bioactive materials with bone-like surface properties are attractive candidates for use as microcarriers for 3-D bone-like tissue engineering under simulated microgravity conditions of NASAdesigned rotating wall vessel (RWV) bioreactors. The simulated microgravity environment is attainable under suitable parametric conditions of the RWV bioreactors. Ca-P containing bioactive glass (BG), whose stimulatory effect on bone cell function had been previously demonstrated, was used in the present study. BG surface modification via reactions in solution, resulting formation of bone-like minerals at the surface and adsorption of serum proteins is critical for obtaining the stimulatory effect. In this paper, we report on the major effects of simulated microgravity conditions of the RWV on the BG reactions surface reactions and protein adsorption in physiological solutions. Control tests at normal gravity were conducted at static and dynamic conditions. The study revealed that simulated microgravty remarkably enhanced reactions involved in the BG surface modification, including BG dissolution, formation of bone-like minerals at the surface and adsorption of serum proteins. Simultaneously, numerical models were developed to simulate the mass transport of chemical species to and from the BG surface under normal gravity and simulated microgravity conditions. The numerical results showed an excellent agreement with the experimental data at both testing conditions.
机译:与骨样表面性质仿生修饰的生物活性材料是用作微载体3-d有吸引力的候选骨样NASAdesigned旋转壁容器(RWV)的生物反应器的模拟失重条件下组织工程。在RWV生物反应器的合适参数条件下可实现模拟的微匍匐环境。含有生物活性玻璃(BG)的Ca-P,其刺激作用已经在本研究中进行了对骨细胞功能的刺激作用。通过溶液中的反应进行表面改性,得到表面上形成的骨状矿物质和血清蛋白的吸附对于获得刺激作用至关重要。在本文中,我们报告了RWV对BG反应表面反应和生理溶液中蛋白质吸附的主要影响。在静态和动态条件下进行正常重力的控制试验。该研究表明,模拟的微血管显着增强了BG表面改性中所涉及的反应,包括BG溶解,在表面的表面形成和血清蛋白的吸附形成的骨状矿物质。同时,开发了数值模型,以在正常重力和模拟微匍匐条件下模拟化学物质的质量传输到BG表面。数值结果表明,与测试条件的实验数据显示出很好的一致性。

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