操作化
互操作性
计算机科学
背景(考古学)
外展
工程管理
过程管理
试验台
知识管理
软件可移植性
商业模式
持续性
系统工程
风险分析(工程)
数据科学
业务
工程类
万维网
营销
哲学
政治学
法学
程序设计语言
古生物学
认识论
生物
生态学
作者
Maciej B. Holowko,Emma Frow,Janet C. Reid,Michelle Rourke,Claudia E. Vickers
出处
期刊:Synthetic biology
[Oxford University Press]
日期:2020-12-16
卷期号:6 (1): ysaa026-ysaa026
被引量:68
标识
DOI:10.1093/synbio/ysaa026
摘要
Abstract 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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