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首页> 外文期刊>Annals of the New York Academy of Sciences >Upside-Down Protein Crystallization: Designing Microbatch Experiments for Microgravity
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Upside-Down Protein Crystallization: Designing Microbatch Experiments for Microgravity

机译:颠倒的蛋白质结晶:设计微重力微批量实验

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摘要

The benefits of protein crystal growth in microgravity are well documented. The crystallization vessels currently employed for microgravity crystallization are far from optimal with regards to cost, sample volume, size, and ease of use. The use of microbatch experiments is a favorable alternative in each respect: 96 experiments of 0.5-2 μL volumes can be performed in a single microtiter tray measuring 5 x 8 cm and costing £1 sterling each. To date, the use of microbatch has not been pursued on account of concerns of oil leakage. To address this issue, a novel approach to microbatch crystallization experiments is described, where the microbatch plates are inverted throughout the duration of the experiment. The findings intimate the application of the microbatch method to space flight and the potential to drastically increase the output of microgravity crystallization research.
机译:蛋白质晶体在微重力中生长的好处已得到充分证明。就成本,样品量,大小和易用性而言,目前用于微重力结晶的结晶容器远非最佳。使用微量分批实验在各个方面都是一个不错的选择:可以在一个尺寸为5 x 8 cm的微量滴定盘中进行96个0.5-2μL体积的实验,每个成本为1英镑。迄今为止,出于对漏油的担忧,尚未使用微批料。为了解决这个问题,描述了一种用于微批料结晶实验的新方法,其中在整个实验过程中将微批料板倒置。这些发现紧密说明了微间歇法在太空飞行中的应用,并有可能大大增加微重力结晶研究的产出。

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