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Three-dimensional Pattern Formation Of Magnetically Labeled Microgel Beads For Biological Tissue Engineering

机译:用于生物组织工程的磁性标记微凝胶珠的三维图案形成

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摘要

We commenced basic research on the three-dimensional (3D) pattern formation of microgel beads for applications in biological tissue engineering. In this new technique, microgel beads are premagnetized by doping them with magnetic nanoparticles. Living cells will be included in the beads for actual use. If a nonuniform magnetic field is applied to a solution containing these magnetized beads, the beads will align, contact, and form a 3D structure. The structure is controlled by the seed pattern of the magnetic particles plugged in a substrate and the profile of the magnetic field distribution. We constructed tubes, which imitate blood vessels, for demonstration using gel beads whose diameters are of the order of several tens of micrometers. The diameter of the demonstrated tube was less than 0.5 mm and its length was 6.6 mm, although living cells were not included in the beads. Numerical calculations by using the discrete element method were conducted to confirm the formation of the tube and to predict the effect of centrifugal force, which will be applied to fill cells in the space between magnetically patterned beads. Although this unique technology is in the nascent stage, this 3D pattern formation technique by the control of the magnetic field has potential to be one of the effective engineering technologies for manufacturing 3D patterned biological tissues in the future.
机译:我们开始了对用于生物组织工程的微凝胶珠的三维(3D)模式形成的基础研究。在这项新技术中,通过将微凝胶珠掺入磁性纳米颗粒来对其进行预磁化。活细胞将包含在珠子中以供实际使用。如果对包含这些磁化磁珠的溶液施加非均匀磁场,则磁珠将对齐,接触并形成3D结构。该结构由插入基板中的磁性颗粒的种子图案和磁场分布的轮廓控制。我们构造了模仿血管的试管,以使用直径约为几十微米的凝胶珠进行演示。所展示的试管的直径小于0.5毫米,其长度为6.6毫米,尽管珠子中未包含活细胞。通过使用离散元素方法进行了数值计算,以确认管的形成并预测离心力的作用,该作用将用于填充磁性图案化磁珠之间空间中的细胞。尽管这种独特的技术尚处于起步阶段,但是这种通过磁场控制的3D图案形成技术有可能成为将来制造3D图案化生物组织的有效工程技术之一。

著录项

  • 来源
    《Journal of Applied Physics 》 |2009年第5期| 639-643| 共5页
  • 作者单位

    Department of Mechanical Engineering, Waseda University, 3-4-1 Okubo, Shinjuku, Tokyo 169-8555, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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