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国家自然科学基金(30900315)

作品数:2 被引量:2H指数:1
相关作者:李刚罗娅慧陈强赵建龙更多>>
相关机构:中国科学院中国科学院研究生院更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划中国科学院科研装备研制项目更多>>
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基于渗透脱水的自动化蛋白质结晶高通量筛选芯片被引量:2
2012年
构建了一种基于渗透脱水模式的自动进样微流控结晶芯片.该芯片通过真空预脱气将包含蛋白质和结晶剂的液滴自动分配至结晶微腔阵列中,然后利用集成的一排包含不同浓度盐溶液的透析管道,通过渗透脱水方式经一层聚二甲基硅氧烷(PDMS)膜实现液滴的逐渐浓缩,使之趋于过饱和状态,进而形成结晶.此芯片可一次筛选较宽范围的过饱和状态,实现蛋白质结晶的快速优化.利用模式蛋白溶菌酶的结晶实验验证了该芯片的性能。
罗娅慧李刚陈强赵建龙
关键词:高通量筛选渗透脱水蛋白质结晶
Study of Neural Cell Growth on Different Microelectrode Surfaces
2012年
The paper is aimed to investigate the adhesion and growth of neural cells on different microelectrode surfaces and their possible mechanism, thereby an optimum interfacial material or substrate for neural microelectrode can be chosen. Three different materials including platinum, gold, and pyrolyzed photoresist derived carbon material, in the forms of plasma-treated and non-treated ones, were tested. Surface properties of the microelectrodes in terms of surface morphology and wettability were examined; then their biocompatibility was tested by co-culturing with SK-N-SH neuroblastoma cells. Results of experiments demonstrated that, compared with platinum and gold, carbon could be a better substrate for cell adhesion and growth,especially for the plasma-treated carbon surface. The high wetting property of plasma-treated carbon accounted for the preferable adhesion of cell on its surface. Therefore, plasma-treated carbon can potentially be employed for fabrication of biocompatible and stable neural electrodes, which is beneficial for neural engineering research, such as regeneration from injury or disease therapy of neural system.
张华朱壮晖吴蕾陈强金庆辉李刚赵建龙
关键词:CARBON
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