首页 /研究 /Flexible open-source automation for robotic bioengineering
MANIPULATION

Flexible open-source automation for robotic bioengineering

Emma J. Chory, Dana Gretton, Erika A. DeBenedictis, Kevin M. Esvelt

发表年份
2020
引用次数
5
访问权限
开放获取

摘要

INTRODUCTION Liquid handling robots have become a biotechnology staple 1,2 , allowing laborious or repetitive protocols to be executed in high-throughput. However, software narrowly designed to automate traditional hand-pipetting protocols often struggles to harness the full capabilities of robotic manipulation. Here we present Pyhamilton, an open-source Python package that eliminates these constraints, enabling experiments that could never be done by hand. We used Pyhamilton to double the speed of automated bacterial assays over current software and execute complex pipetting patterns to simulate population dynamics. Next, we incorporated feedback-control to maintain hundreds of remotely monitored bacterial cultures in log-phase growth without user intervention. Finally, we applied these capabilities to comprehensively optimize bioreactor protein production by maintaining and monitoring fluorescent protein expression of nearly 500 different continuous cultures to explore the carbon, nitrogen, and phosphorus fitness landscape. Our results demonstrate Pyhamilton’s empowerment of existing hardware to new applications ranging from biomanufacturing to fundamental biology.

关键词

BiomanufacturingAutomationSoftwarePython (programming language)Computer scienceRobotSoftware engineeringEmbedded systemEngineeringOperating system

相关论文

查看 MANIPULATION 分类全部论文