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通过开放平台技术促进芯片上器官的实施。

Facilitating implementation of organs-on-chips by open platform technology.

作者信息

Vollertsen Anke R, Vivas Aisen, van Meer Berend, van den Berg Albert, Odijk Mathieu, van der Meer Andries D

机构信息

BIOS Lab on a Chip Group, MESA+ Institute for Nanotechnology, Max Planck Institute for Complex Fluid Dynamics, University of Twente, Enschede, the Netherlands.

出版信息

Biomicrofluidics. 2021 Oct 12;15(5):051301. doi: 10.1063/5.0063428. eCollection 2021 Sep.

Abstract

Organ-on-chip (OoC) and multi-organs-on-chip (MOoC) systems have the potential to play an important role in drug discovery, disease modeling, and personalized medicine. However, most devices developed in academic labs remain at a proof-of-concept level and do not yet offer the ease-of-use, manufacturability, and throughput that are needed for widespread application. Commercially available OoC are easier to use but often lack the level of complexity of the latest devices in academia. Furthermore, researchers who want to combine different chips into MOoC systems are limited to one supplier, since commercial systems are not compatible with each other. Given these limitations, the implementation of standards in the design and operation of OoCs would strongly facilitate their acceptance by users. Importantly, the implementation of such standards must be carried out by many participants from both industry and academia to ensure a widespread acceptance and adoption. This means that standards must also leave room for proprietary technology development next to promoting interchangeability. An open platform with standardized interfacing and user-friendly operation can fulfill these requirements. In this Perspective article, the concept of an open platform for OoCs is defined from a technical perspective. Moreover, we discuss the importance of involving different stakeholders in the development, manufacturing, and application of such an open platform.

摘要

器官芯片(OoC)和多器官芯片(MOoC)系统在药物发现、疾病建模和个性化医疗中具有发挥重要作用的潜力。然而,学术实验室开发的大多数设备仍处于概念验证阶段,尚未具备广泛应用所需的易用性、可制造性和通量。市售的OoC使用起来更简便,但往往缺乏学术界最新设备的复杂程度。此外,想要将不同芯片组合成MOoC系统的研究人员只能局限于一个供应商,因为商业系统彼此不兼容。鉴于这些局限性,在OoC的设计和操作中实施标准将极大地促进用户对它们的接受。重要的是,此类标准的实施必须由来自行业和学术界的众多参与者共同进行,以确保广泛的接受和采用。这意味着标准在促进互换性的同时,还必须为专有技术的发展留出空间。一个具有标准化接口和用户友好操作的开放平台可以满足这些要求。在这篇观点文章中,从技术角度定义了OoC开放平台的概念。此外,我们还讨论了让不同利益相关者参与此类开放平台的开发、制造和应用的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3f4/8514251/384bd5dd4e0a/BIOMGB-000015-051301_1-g001.jpg

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