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A NOVEL, LASER-BASED TECHNIQUE TO FABRICATE AND PRECISELY PATTERN CELL-ENCAPSULATED ALGINATE MICROBEADS

机译:一种基于激光的新颖技术,可精确且精确地形成细胞包囊的藻酸盐微珠

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摘要

Microbeads are three-dimensional, generally spherical microstructures that are currently being investigated for applications in tissue engineering and for delivery of drugs, proteins, and DNA, Current microbead fabrication devices such as electrostatic bead generators, microfluidic devices, and micro-vibrators, function by using cross-linkable polymers into a crosslinking solution, such as calcium chloride in the case of alginate. These procedures allow for the controlled manipulation of microbead size, e.g., increasing electric field voltage for the electrostatic bead generator during polymer extrusion. Popular devices such as electrostatic bead generators are limited to polyelectrolyte materials because of the electric field extrusion method. In addition, despite their ability to create monodispersed beads of different size, none of these technologies can precisely control microbead placement.
机译:微珠是三维的,通常是球形的微结构,目前正在研究中,用于组织工程以及药物,蛋白质和DNA的传递。目前的微珠制造设备(如静电微珠发生器,微流控设备和微振动器)的功能如下:使用可交联的聚合物到交联溶液中,例如在藻酸盐的情况下为氯化钙。这些程序允许微珠尺寸的受控操纵,例如,在聚合物挤出过程中增加静电珠产生器的电场电压。由于电场挤压方法,诸如静电珠发生器之类的流行设备仅限于聚电解质材料。另外,尽管它们具有产生不同大小的单分散珠的能力,但是这些技术都不能精确地控制微珠的放置。

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