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Microfluidic on-chip biomimicry for 3D cell culture: a fit-for-purpose investigation from the end user standpoint

机译:用于3D细胞培养的微流体芯片仿生技术:从最终用户的角度进行适合目的的研究

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摘要

A plethora of 3D and microfluidics-based culture models have been demonstrated in the recent years with the ultimate aim to facilitate predictive in vitro models for pharmaceutical development. This article summarizes to date the progress in the microfluidics-based tissue culture models, including organ-on-a-chip and vasculature-on-a-chip. Specific focus is placed on addressing the question of what kinds of 3D culture and system complexities are deemed desirable by the biological and biomedical community. This question is addressed through analysis of a research survey to evaluate the potential use of microfluidic cell culture models among the end users. Our results showed a willingness to adopt 3D culture technology among biomedical researchers, although a significant gap still exists between the desired systems and existing 3D culture options. With these results, key challenges and future directions are highlighted.
机译:近年来,已经证明了许多基于3D和微流体的培养模型,其最终目的是促进药物开发的预测性体外模型。本文总结了迄今为止基于微流体的组织培养模型的进展,包括芯片上的器官和芯片上的脉管系统。生物医学和生物医学界认为需要什么样的3D文化和系统复杂性这一问题特别受到关注。通过对研究调查进行分析来解决此问题,以评估最终用户中微流体细胞培养模型的潜在用途。我们的结果表明,尽管所需的系统与现有的3D培养方案之间仍然存在巨大差距,但生物医学研究人员愿意采用3D培养技术。通过这些结果,重点突出了关键挑战和未来方向。

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