School of Pharmacy, University of Reading, Reading, UK.
Institut Pasteur in Ho Chi Minh City, Ho Chi Minh City, Vietnam.
Lett Appl Microbiol. 2022 Feb;74(2):247-257. doi: 10.1111/lam.13615. Epub 2021 Dec 1.
Although the microbiology laboratory paradigm has increasingly changed from manual to automated procedures, and from functional to molecular methods, traditional culture methods remain vital. Using inexpensive desktop fused filament fabrication 3D printing, we designed, produced and tested rapid prototypes of customised labware for microbial culture namely frames to make dip slides, inoculation loops, multi-pin replicators, and multi-well culture plates for solid medium. These customised components were used to plate out samples onto solid media in various formats, and we illustrate how they can be suitable for many microbiological methods such as minimum inhibitory concentration tests, or for directly detecting pathogens from mastitis samples, illustrating the flexibility of rapid-prototyped culture consumable parts for streamlining microbiological methods. We describe the methodology needed for microbiologists to develop their own novel and unique tools, or to fabricate and customise existing consumables. A workflow is presented for designing and 3D printing labware and quickly producing easy-to-sterilise and re-useable plastic parts of great utility in the microbiology laboratory.
尽管微生物学实验室的范例已经从手动到自动化程序,从功能到分子方法不断发展,但传统的培养方法仍然至关重要。我们使用廉价的桌面熔丝制造 3D 打印技术,设计、制作和测试了微生物培养的定制实验室器具的快速原型,即用于制作滴片、接种环、多针复制器和用于固体培养基的多孔培养板的框架。这些定制组件用于在各种格式的固体培养基上接种样本,我们说明了它们如何适用于许多微生物学方法,如最小抑菌浓度测试,或直接从乳腺炎样本中检测病原体,展示了快速原型培养耗材部件在简化微生物学方法方面的灵活性。我们描述了微生物学家开发自己的新颖独特工具,或制造和定制现有耗材所需的方法。提出了一种用于设计和 3D 打印实验室器具以及快速生产易于消毒和可重复使用的塑料部件的工作流程,这些部件在微生物学实验室中有很大的用途。