首页> 外文期刊>Microfluidics and nanofluidics >On-chip fabrication and magnetic force estimation of peapod-like hybrid microfibers using a microfluidic device
【24h】

On-chip fabrication and magnetic force estimation of peapod-like hybrid microfibers using a microfluidic device

机译:使用微流控装置对豆荚状混合微纤维进行芯片制造和磁力估计

获取原文
获取原文并翻译 | 示例
           

摘要

Combining microfluidic methods for generating microdroplets and spinning microfibers, a novel type of alginate hybrid microfiber encapsulating different microdroplets is fabricated for various applications such as cell culture, tissue engineering and drug release. Traditional fabrication methods mainly depend on the microfluidic structure, so an effective method that uses microfluidic solution flow rates to control the generation of hybrid microfibers has not yet been developed. In this paper, we fabricate a microfluidic flow-focusing device with a long gelation microchannel to encapsulate magnetic oil microdroplets (MOMs) into alginate microfibers. We establish a hybrid microfiber generation model for this fabrication method based on limited flow rate to control microfiber width, MOM diameter and the distance between consecutive MOMs. We also calculate the magnetic force acting on a single MOM by measuring the distance and the MOM is deflected by disk magnets with respect to time in the long gelation microchannel. The magnetic forces acting on the microfibers can be further calculated by counting the number of encapsulated MOMs. The developed method has great potential for quantitative fabrication of diverse hybrid microfibers encapsulating a variety of magnetic hydrophobic microdroplets with estimated magnetic forces. Such magnetic hybrid microfibers are attractive for use in higher order alginate microfiber assemblies and dual drug delivery systems.
机译:结合用于产生微滴的微流体方法和旋转微纤维,制造了封装不同微滴的新型藻酸盐杂化微纤维,以用于各种应用,例如细胞培养,组织工程和药物释放。传统的制造方法主要取决于微流体结构,因此尚未开发出一种有效的方法,该方法利用微流体溶液的流速来控制杂化微纤维的产生。在本文中,我们制造了一种具有长凝胶微通道的微流聚焦装置,用于将磁性油微滴(MOM)封装到藻酸盐微纤维中。我们基于有限的流量为该制造方法建立了混合超细纤维生成模型,以控制超细纤维的宽度,MOM直径和连续MOM之间的距离。我们还通过测量距离来计算作用在单个MOM上的磁力,并且该MOM在较长的凝胶微通道中相对于时间由圆盘磁体偏转。可以通过计算封装的MOM的数量来进一步计算作用在微纤维上的磁力。所开发的方法具有定量制造各种杂化微纤维的潜力,这些杂化微纤维封装了具有估计磁力的各种磁性疏水性微滴。此类磁性杂化微纤维吸引人用于更高级别的藻酸盐微纤维组件和双重药物递送系统中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号