...
首页> 外文期刊>Journal of Functional Biomaterials >Development and Application of an Additively Manufactured Calcium Chloride Nebulizer for Alginate 3D-Bioprinting Purposes
【24h】

Development and Application of an Additively Manufactured Calcium Chloride Nebulizer for Alginate 3D-Bioprinting Purposes

机译:用于藻酸盐3D生物打印的增材制造氯化钙雾化器的开发和应用

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Three-dimensional (3D)-bioprinting enables scientists to mimic in vivo micro-environments and to perform in vitro cell experiments under more physiological conditions than is possible with conventional two-dimensional (2D) cell culture. Cell-laden biomaterials (bioinks) are precisely processed to bioengineer tissue three-dimensionally. One primarily used matrix material is sodium alginate. This natural biopolymer provides both fine mechanical properties when gelated and high biocompatibility. Commonly, alginate is 3D bioprinted using extrusion based devices. The gelation reaction is hereby induced by a CaCl 2 solution in the building chamber after material extrusion. This established technique has two main disadvantages: (1) CaCl 2 can have toxic effects on the cell-laden hydrogels by oxygen diffusion limitation and (2) good printing resolution in the CaCl 2 solution is hard to achieve, since the solution needs to be removed afterwards and substituted by cell culture media. Here, we show an innovative approach of alginate bioprinting based on a CaCl 2 nebulizer. The device provides CaCl 2 mist to the building platform inducing the gelation. The necessary amount of CaCl 2 could be decreased as compared to previous gelation strategies and limitation of oxygen transfer during bioprinting can be reduced. The device was manufactured using the MJP-3D printing technique. Subsequently, its digital blueprint (CAD file) can be modified and additive manufactured easily and mounted in various extrusion bioprinters. With our approach, a concept for a more gentle 3D Bioprinting method could be shown. We demonstrated that the concept of an ultrasound-based nebulizer for CaCl 2 mist generation can be used for 3D bioprinting and that the mist-induced polymerization of alginate hydrogels of different concentrations is feasible. Furthermore, different cell-laden alginate concentrations could be used: Cell spheroids (mesenchymal stem cells) and single cells (mouse fibroblasts) were successfully 3D printed yielding viable cells and stable hydrogels after 24 h cultivation. We suggest our work to show a different and novel approach on alginate bioprinting, which could be useful in generating cell-laden hydrogel constructs for e.g., drug screening or (soft) tissue engineering applications.
机译:三维(3D)生物打印使科学家能够模拟体内微环境,并在比传统二维(2D)细胞培养所能实现的更多生理条件下进行体外细胞实验。充满细胞的生物材料(生物墨水)被精确地三维加工到生物工程组织中。一种主要使用的基质材料是海藻酸钠。这种天然生物聚合物在胶凝时既具有优良的机械性能,又具有高生物相容性。通常,使用基于挤压的设备对藻酸盐进行3D生物打印。因此,在材料挤出之后,通过在室内的CaCl 2溶液引起凝胶化反应。这种已建立的技术有两个主要缺点:(1)CaCl 2可能因氧扩散限制而对充满细胞的水凝胶产生毒性作用;(2)由于需要将CaCl 2溶液溶解于CaCl 2溶液中,因此难以实现良好的印刷分辨率之后除去并用细胞培养基代替。在这里,我们展示了一种基于CaCl 2雾化器的藻酸盐生物打印的创新方法。该设备向建筑平台提供CaCl 2雾,从而引起胶凝。与先前的胶凝策略相比,可以减少所需的CaCl 2量,并且可以减少生物打印过程中氧气转移的限制。该设备是使用MJP-3D打印技术制造的。随后,可以修改其数字蓝图(CAD文件),并轻松制造添加剂并安装在各种挤出生物打印机中。通过我们的方法,可以显示出一种更柔和的3D生物打印方法的概念。我们证明了用于CaCl 2雾生成的基于超声的雾化器的概念可用于3D生物打印,并且雾诱导的不同浓度藻酸盐水凝胶的聚合是可行的。此外,可以使用不同的细胞载藻酸盐浓度:成功地3D打印细胞球体(间充质干细胞)和单细胞(小鼠成纤维细胞),培养24小时后产生活细胞和稳定的水凝胶。我们建议我们的工作在藻酸盐生物印染上展示一种不同的新颖方法,这可能对生成载有细胞的水凝胶构建体有用,例如用于药物筛选或(软)组织工程应用。

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