首页> 外文期刊>Bioengineering >Three-Dimensional (3D) Printed Microneedles for Microencapsulated Cell Extrusion
【24h】

Three-Dimensional (3D) Printed Microneedles for Microencapsulated Cell Extrusion

机译:用于微囊化细胞挤出的三维(3D)打印微针

获取原文
       

摘要

Cell-hydrogel based therapies offer great promise for wound healing. The specific aim of this study was to assess the viability of human hepatocellular carcinoma (HepG2) cells immobilized in atomized alginate capsules (3.5% ( w / v ) alginate, d = 225 μm ± 24.5 μm) post-extrusion through a three-dimensional (3D) printed methacrylate-based custom hollow microneedle assembly (circular array of 13 conical frusta) fabricated using stereolithography. With a jetting reliability of 80%, the solvent-sterilized device with a root mean square roughness of 158 nm at the extrusion nozzle tip (d = 325 μm) was operated at a flowrate of 12 mL/min. There was no significant difference between the viability of the sheared and control samples for extrusion times of 2 h ( p = 0.14, α = 0.05) and 24 h ( p = 0.5, α = 0.05) post-atomization. Factoring the increase in extrusion yield from 21.2% to 56.4% attributed to hydrogel bioerosion quantifiable by a loss in resilience from 5470 (J/m 3 ) to 3250 (J/m 3 ), there was no significant difference in percentage relative payload ( p = 0.2628, α = 0.05) when extrusion occurred 24 h (12.2 ± 4.9%) when compared to 2 h (9.9 ± 2.8%) post-atomization. Results from this paper highlight the feasibility of encapsulated cell extrusion, specifically protection from shear, through a hollow microneedle assembly reported for the first time in literature.
机译:基于细胞水凝胶的疗法为伤口愈合提供了广阔前景。这项研究的特定目的是通过三维方法评估挤压后固定在雾化藻酸盐胶囊(3.5%(w / v)海藻酸盐,d = 225μm±24.5μm)中的人肝细胞癌(HepG2)细胞的生存能力(3D)使用立体平版印刷术制造的基于甲基丙烯酸酯的定制中空微针组件(13个圆锥体的圆形阵列)。以80%的喷射可靠性,以12 mL / min的流量操作在挤出喷嘴尖端(d = 325μm)均方根粗糙度为158 nm的溶剂消毒装置。在雾化后2 h(p = 0.14,α= 0.05)和24 h(p = 0.5,α= 0.05)的挤出时间下,剪切样品和对照样品的生存力之间无显着差异。将可归因于水凝胶生物侵蚀的挤压产量从21.2%提高到56.4%(可通过从5470(J / m 3)到3250(J / m 3)的弹性损失进行量化),相对有效载荷百分比(p当挤出发生24小时(12.2±4.9%)时发生雾化后的2小时(9.9±2.8%)为0.2628,α= 0.05)。本文的结果突出了通过文献中首次报道的中空微针组件进行封装的细胞挤出的可行性,特别是针对剪切的保护。

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