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A High-Throughput Biological Calorimetry Core – Steps to Startup Run and Maintain a Multi-user Facility

机译:高通量生物量热仪核心–启动运行和维护多用户设施的步骤

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摘要

Many labs have conventional calorimeters where denaturation and binding experiments are setup and run one at a time. While these systems are highly informative to biopolymer folding and ligand interaction, they require considerable manual intervention for cleaning and setup. As such, the throughput for such setups is limited typically to a few runs a day. With a large number of experimental parameters to explore including different buffers, macromolecule concentrations, temperatures, ligands, mutants, controls, replicates and instrument tests, the need for high-throughput automated calorimeters is on the rise. Lower sample volume requirements and reduced user intervention time compared to the manual instruments has improved turnover of calorimetry experiments in a high-throughput format where 25 or more runs can be conducted per day. The cost and efforts to maintain high-throughput equipment typically demands that these instruments be housed in a multi-user core facility. We describe here the steps taken to successfully start and run an automated biological calorimetry facility at Pennsylvania State University. Scientists from various departments at Penn State including Chemistry, Biochemistry and Molecular Biology, Bioengineering, Biology, Food Science and Chemical Engineering are benefitting from this core facility. Samples studied include proteins, nucleic acids, sugars, lipids, synthetic polymers, small molecules, natural products, and virus capsids. This facility has led to higher throughput of data, which has been leveraged into grant support, attracting new faculty hire and has led to some exciting publications.
机译:许多实验室都有常规量热仪,其中设置了变性和结合实验,一次只能进行一次。尽管这些系统对生物聚合物折叠和配体相互作用具有很高的指导意义,但它们需要大量的人工干预才能进行清洁和设置。因此,此类设置的吞吐量通常仅限于每天运行几次。要探索大量的实验参数,包括不同的缓冲液,大分子浓度,温度,配体,突变体,对照,复制品和仪器测试,对高通量自动量热仪的需求正在上升。与手动仪器相比,更低的样品量要求和更少的用户干预时间提高了高通量量热法实验的周转率,每天可以进行25次或更多次运行。维护高通量设备的成本和努力通常要求将这些仪器安装在多用户核心设施中。我们在这里描述成功启动和运行宾夕法尼亚州立大学的自动生物量热仪所采取的步骤。宾州州立大学各个部门的科学家(包括化学,生物化学和分子生物学,生物工程,生物学,食品科学和化学工程)正在从这个核心设施中受益。研究的样品包括蛋白质,核酸,糖,脂质,合成聚合物,小分子,天然产物和病毒衣壳。该设施带来了更高的数据吞吐量,这些数据已被用于赠款支持,吸引了新的教职员工,并催生了一些激动人心的出版物。

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