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3D printed microfluidic devices:a review focused on four fundamental manufacturing approaches and implications on the field of healthcare

机译:3D印刷的微流体设备:审查专注于四种基本制造方法和对医疗领域的影响

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In the last fewyears,3D printing has emerged as a promising alternative for the fabrication ofmicrofluidic devices,overcoming some of the limitations associated with conventional soft-lithography.Stereolithography(SLA),extrusion-based technology,and inkjet 3D printing are three of the widely used 3D printing technologies owing to their accessibility and affordability.Microfluidic devices can be 3D printed by employing a manufacturing approach from four fundamental manufacturing approaches classified as(1)direct printing approach,(2)mold-based approach,(3)modular approach,and(4)hybrid approach.To evaluate the feasibility of 3D printing technologies for fabricating microfluidic devices,a review focused on 3D printing fundamental manufacturing approaches has been presented.Using a broad spectrum of additive manufacturing materials,3D printed microfluidic devices have been implemented in various fields,including biological,chemical,and material synthesis.However,some crucial challenges are associated with the same,including low resolution,low optical transparency,cytotoxicity,high surface roughness,autofluorescence,non-compatibility with conventional sterilization methods,and low gas permeability.The recent research progress in materials related to additive manufacturing has aided in overcoming some of these challenges.Lastly,we outline possible implications of 3D printed microfluidics on the various fields of healthcare such as in vitro disease modeling and organ modeling,novel drug development,personalized treatment for cancer,and cancer drug screening by discussing the current state and future outlook of 3D printed‘organs-on-chips,’and 3D printed‘tumor-on-chips.’We conclude the review by highlighting future research directions in this field.
机译:在最后的少年中,3D打印作为制造医学装置的制造,克服了与传统软光刻相关的一些限制的有希望的替代方案。对时(SLA),挤出的技术和喷墨3D打印是其中三个广泛的三个由于他们的可访问性和负担能力而使用3D打印技术。通过从归类为(1)直接印刷方法的四个基本制造方法,(2)基于模具的方法,(3)模块化方法,(3)模块化方法,可以是3D印刷的3D印刷。(3)模块化方法, (4)混合方法。要评估用于制造微流体装置的3D打印技术的可行性,已经介绍了专注于3D印刷基本制造方法的综述。用于广谱的添加剂制造材料,3D印刷的微流体装置已经实施各种领域,包括生物,化学和材料综合。然而,一些至关重要的挑战与之相关的,包括低分辨率,低光学透明度,细胞毒性,高表面粗糙度,自发荧光,与常规灭菌方法的不相容性,以及低气体渗透性。最近与添加剂制造有关的材料的研究进展促进了一些克服了一些这些挑战.LASTLY,我们概述了3D印刷微流体对医疗保健的各个领域的影响,如体外疾病建模和器官模型,新药开发,癌症个性化治疗,通过讨论当前的国家和未来的展望,癌症药物筛查3D印刷'重武员芯片,'和3D打印的Itumor-On-Chips.'We通过突出未来在该领域的研究方向来汇总审查。

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