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首页> 外文期刊>Journal of robotics and mechatronics >Rapid and Direct Cell-to-Cell Adherence Using Avidin-Biotin Binding System: Large Aggregate Formation in Suspension Culture and Small Tissue Element Formation Having a Precise Microstructure Using Optical Tweezers
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Rapid and Direct Cell-to-Cell Adherence Using Avidin-Biotin Binding System: Large Aggregate Formation in Suspension Culture and Small Tissue Element Formation Having a Precise Microstructure Using Optical Tweezers

机译:使用抗生物素蛋白-生物素结合系统的快速和直接的细胞间粘附:悬浮培养中的大聚集体形成和使用光镊的具有精确微结构的小组织元素形成

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摘要

Effectively organizing isolated cells to tissue elements having an appropriate microstructure is a fundamental issue in future tissue engineering, but biological cell-to-cell adhesion is too weak to assemble single cells directly. In order to overcome the difficulty, we applied an Avidin-Biotin Binding System (ABBS) to cell surfaces, and avidinylated and biotinylated cells could mutually bind in the short time they were mixed together. Unlike conventional intact cells, ABBS helped make larger spheroids. Interestingly, avidinylated and biotinylated cell adherence occurred within 1 sec using laser trapping, enabling single cell manipulation. We showed precise, direct single-cell-based tissue assembly using ABBS and optical tweezers, followed by damage-free tissue culture. The combination of ABBS and single cell manipulation has considerable potential for use in application such as tissue engineering, regenerative medicine, and drug screening system.
机译:有效地将分离的细胞组织成具有适当微结构的组织元件是未来组织工程学中的一个基本问题,但是生物细胞间粘附力太弱,无法直接组装单个细胞。为了克服这一困难,我们将抗生物素蛋白-生物素结合系统(ABBS)应用于细胞表面,而抗生物素化和生物素化的细胞在混合在一起的短时间内可以相互结合。与传统的完整细胞不同,ABBS帮助制造了更大的球体。有趣的是,使用激光捕获技术在1秒内发生了亲和素化和生物素化的细胞粘附,从而实现了单细胞操作。我们展示了使用ABBS和光学镊子进行精确,直接的基于单细胞的组织组装,然后进行无损伤的组织培养。 ABBS和单细胞处理的结合在组织工程,再生医学和药物筛选系统等应用中具有巨大的潜力。

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