Department of Biological Systems Engineering, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, United States.
Department of Biological Systems Engineering, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, United States.
SLAS Technol. 2024 Apr;29(2):100107. doi: 10.1016/j.slast.2023.08.007. Epub 2023 Sep 9.
Every year biotechnology labs generate a combined total of ∼5.5 million tons of plastic waste. As the global bioeconomy expands, biofoundries will inevitably increase plastic consumption in-step with synthetic biology scaling. Decontamination and reuse of single-use plastics could increase sustainability and reduce recurring costs of biological research. However, throughput and variable cleaning quality make manual decontamination impractical in most instances. Automating single-use plastic cleaning with liquid handling robots makes decontamination more practical by offering higher throughput and consistent cleaning quality. However, open-source, validated protocols using low-cost lab robotics for effective decontamination of plasticware-facilitating safe reuse-have not yet been developed. Here we introduce and validate TidyTron: a library of protocols for cleaning micropipette tips and microtiter plates that are contaminated with DNA, E. coli, and S. cerevisiae. We tested a variety of cleaning solutions, contact times, and agitation methods with the aim of minimizing time and cost, while maximizing cleaning stringency and sustainability. We tested and validated these cleaning procedures by comparing fresh (first-time usage) versus cleaned tips and plates for contamination with cells, DNA, or cleaning solutions. We assessed contamination by measuring colony forming units by plating, PCR efficiency and DNA concentration by qPCR, and event counts and debris by flow cytometry. Open source cleaning protocols are available at https://github.com/PlantSynBioLab/TidyTron and hosted on a graphical user interface at https://jbryantvt.github.io/TidyTron/.
每年生物技术实验室总共产生约 550 万吨塑料废物。随着全球生物经济的扩张,生物制造厂将不可避免地随着合成生物学的扩展而增加塑料消耗。一次性塑料的去污和再利用可以提高可持续性并降低生物研究的重复成本。然而,由于通量和可变的清洁质量,在大多数情况下手动去污都不切实际。使用液体处理机器人自动化一次性塑料清洁可通过提供更高的通量和一致的清洁质量使去污更加实用。但是,尚未开发出用于有效去污的经济型实验室机器人的开源、经过验证的协议,这些协议可以促进塑料器皿的安全再利用。在这里,我们介绍并验证了 TidyTron:一套用于清洁带有 DNA、大肠杆菌和酿酒酵母污染的微量移液器吸头和微孔板的协议库。我们测试了各种清洁溶液、接触时间和搅拌方法,旨在最小化时间和成本,同时最大限度地提高清洁严格性和可持续性。我们通过比较新鲜(首次使用)与已清洁的吸头和板的细胞、DNA 或清洁溶液污染情况,测试和验证了这些清洁程序。我们通过平板计数法测量菌落形成单位、qPCR 测量 PCR 效率和 DNA 浓度以及流式细胞术测量事件计数和碎片来评估污染情况。开源清洁协议可在 https://github.com/PlantSynBioLab/TidyTron 上获得,并在图形用户界面 https://jbryantvt.github.io/TidyTron/ 上提供。