建造一个生物铸造厂。

IF 2.6 Q2 BIOCHEMICAL RESEARCH METHODS
Synthetic biology (Oxford, England) Pub Date : 2020-12-16 eCollection Date: 2021-01-01 DOI:10.1093/synbio/ysaa026
Maciej B Holowko, Emma K Frow, Janet C Reid, Michelle Rourke, Claudia E Vickers
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引用次数: 34

摘要

生物铸造厂提供自动化和分析基础设施,以支持生物系统的工程。它允许科学家在高通量规模上进行合成生物学和校准实验,大大增加了可以检查任何给定问题或问题的解决方案空间。然而,建立生物铸造厂是一项具有挑战性的工作,必须解决许多技术和操作方面的问题。通过整理学习,我们在这里概述了在建立之前和建立过程中应该考虑的几个问题。这些因素包括建立的驱动因素、机构模式、资金和收入模式、人员、硬件和软件、数据管理、互操作性、客户参与和生物安全问题。建立和运营的高成本意味着,在资金框架、实际和潜在客户基础以及成本结构的背景下,为生物铸造厂的可持续性发展制定一个长期的商业模式至关重要。此外,由于生物代工厂正在引领生物工程实验设计的概念转变,因此需要与研究界进行持续的外展和接触,以扩大客户群。认识到需要大量的长期财务投资,并了解操作的复杂性,对于可持续的生物铸造厂至关重要。为了确保将最先进的技术纳入规划,建议与现有设施和社区团体(如全球生物铸造厂联盟)广泛接触。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Building a biofoundry.

A biofoundry provides automation and analytics infrastructure to support the engineering of biological systems. It allows scientists to perform synthetic biology and aligned experimentation on a high-throughput scale, massively increasing the solution space that can be examined for any given problem or question. However, establishing a biofoundry is a challenging undertaking, with numerous technical and operational considerations that must be addressed. Using collated learnings, here we outline several considerations that should be addressed prior to and during establishment. These include drivers for establishment, institutional models, funding and revenue models, personnel, hardware and software, data management, interoperability, client engagement and biosecurity issues. The high cost of establishment and operation means that developing a long-term business model for biofoundry sustainability in the context of funding frameworks, actual and potential client base, and costing structure is critical. Moreover, since biofoundries are leading a conceptual shift in experimental design for bioengineering, sustained outreach and engagement with the research community are needed to grow the client base. Recognition of the significant, long-term financial investment required and an understanding of the complexities of operationalization is critical for a sustainable biofoundry venture. To ensure state-of-the-art technology is integrated into planning, extensive engagement with existing facilities and community groups, such as the Global Biofoundries Alliance, is recommended.

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