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Microfluidic devices manufacturing with a stereolithographic printer for biological applications

机译:用于生物应用的立体式打印机的微流体装置制造

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摘要

Stereolithographic printers have revolutionized many manufacturing processes with their capacity to easily produce highly detailed structures. In the field of microfluidics, this technique avoids the use of complex steps and equipment of the conventional technologies. The potential of low force stereolithography technology is analysed for the first time using a Form 3B printer and seven printing resins through the fabrication of microchannels and pillars. Manufacturing performance of internal and superficial channels and pillars is studied for the seven printing resins in different configurations. A complete characterization of printed structures is carried out by optical, confocal and SEM microscopy, and EDX analysis. Internal channels with unobstructed lumen are obtained for diameters and angles greater than 500 mu m and 60 degrees, respectively. Outward and inward superficial channels in the range of hundreds of microns can be fabricated with an accurate profile, printing them with a perpendicular orientation respect to the base, allowing a proper uncured resin evacuation. Outward channels are replicated by soft lithography using polydimethylsiloxane. Clear, Model and Tough resins show a good behaviour to be used as master, but Amber and Dental resins present a poor topology transference from the master to the replica. According to the needs of devices used for biological and biomedical research, transparency as well as superficial biocompatibility of some resins is evaluated. Human umbilical vein endothelial cells (HUVEC) adhesion is confirmed on Amber, Dental and Clear resins, but these cells were only able to grow and progress as a cell culture over the Amber resin. Therefore, Amber showed an adequate biocompatibility, in terms of cell adhesion and growth for HUVEC.
机译:立体光刻打印机彻底改变了许多制造过程,其能力容易产生高度详细的结构。在微流体领域,该技术避免了使用传统技术的复杂步骤和设备。通过制造微通道和支柱,首次使用表格3B打印机和七种印刷树脂进行低力立体镀技术的潜力。研究了内部和浅表渠道和支柱的制造性能,用于不同配置的七种印刷树脂。通过光学,共焦和SEM显微镜和EDX分析来进行印刷结构的完整表征。获得具有畅通无阻的内腔的内部通道分别获得直径和大于500μm和60度的角度。在数百微米范围内的向外和向内的浅表,可以用精确的轮廓制造,用垂直的取向对底座印刷它们,允许适当的未固化树脂疏散。使用聚二甲基硅氧烷通过软光刻复制向外的通道。透明,模型和韧性树脂显示出良好的行为用作母体,但琥珀和牙科树脂从掌握到副本中存在差的拓扑转移。根据用于生物和生物医学研究的装置的需求,评估一些树脂的透明度以及一些树脂的浅层化学性。人脐静脉内皮细胞(HUVEC)粘附在琥珀,牙科和透明树脂上证实,但是这些细胞仅能够在琥珀树脂上作为细胞培养物生长和进展。因此,琥珀在细胞粘附和Huvec生长方面表现出足够的生物相容性。

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  • 来源
    《Materials science & engineering》 |2021年第10期|112388.1-112388.14|共14页
  • 作者单位

    Univ Santiago Compostela Fac Fis & Fac Opt & Optometria Appl Phys Dept Photonics4Life Res Grp Campus Vida E-15782 Santiago De Compostela Spain;

    Univ Santiago Compostela Fac Fis & Fac Opt & Optometria Appl Phys Dept Photonics4Life Res Grp Campus Vida E-15782 Santiago De Compostela Spain;

    Univ Santiago Compostela Fac Fis & Fac Opt & Optometria Appl Phys Dept Photonics4Life Res Grp Campus Vida E-15782 Santiago De Compostela Spain;

    Univ Hosp Santiago Compostela SERGAS Hlth Res Inst Santiago Compostela IDIS Cardiol Grp Trav Choupana S-N E-15706 Santiago De Compostela Spain|Ctr Invest Biomed Red Enfermedades Cardiovasc CIB Madrid Spain|Univ Santiago Compostela Dept Pharmacol Pharm & Pharmaceut Technol E-15782 Santiago De Compostela Spain;

    Univ Santiago Compostela Fac Fis & Fac Opt & Optometria Appl Phys Dept Photonics4Life Res Grp Campus Vida E-15782 Santiago De Compostela Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Stereolithography; Low force stereolithography; Microfluidics; Organ-on-a-chip; 3D printing; Microchannel; Pillar; Soft lithography; PDMS; Biocompatibility; HUVEC;

    机译:立体镀层;低力立体刻度;微流体;电机芯片;3D打印;微通道;支柱;柔和的光刻;PDMS;生物相容性;HUVEC;

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