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应用经验相图对高通量微批量结晶实验多维数据的可视化。

Application of Empirical Phase Diagrams for Multidimensional Data Visualization of High-Throughput Microbatch Crystallization Experiments.

机构信息

Institute of Engineering in Life Sciences, Section IV: Biomolecular Separation Engineering, Karlsruhe Institute of Technology (KIT), 76131 Karlsruhe, Germany.

Institute of Engineering in Life Sciences, Section IV: Biomolecular Separation Engineering, Karlsruhe Institute of Technology (KIT), 76131 Karlsruhe, Germany.

出版信息

J Pharm Sci. 2018 Aug;107(8):2063-2069. doi: 10.1016/j.xphs.2018.04.018. Epub 2018 Apr 27.

Abstract

Protein phase diagrams are a tool to investigate the cause and consequence of solution conditions on protein phase behavior. The effects are scored according to aggregation morphologies such as crystals or amorphous precipitates. Solution conditions affect morphologic features, such as crystal size, as well as kinetic features, such as crystal growth time. Commonly used data visualization techniques include individual line graphs or phase diagrams based on symbols. These techniques have limitations in terms of handling large data sets, comprehensiveness or completeness. To eliminate these limitations, morphologic and kinetic features obtained from crystallization images generated with high throughput microbatch experiments have been visualized with radar charts in combination with the empirical phase diagram method. Morphologic features (crystal size, shape, and number, as well as precipitate size) and kinetic features (crystal and precipitate onset and growth time) are extracted for 768 solutions with varying chicken egg white lysozyme concentration, salt type, ionic strength, and pH. Image-based aggregation morphology and kinetic features were compiled into a single and easily interpretable figure, thereby showing that the empirical phase diagram method can support high-throughput crystallization experiments in its data amount as well as its data complexity.

摘要

蛋白质相图是一种用于研究溶液条件对蛋白质相行为的原因和结果的工具。这些影响根据聚集形态(如晶体或无定形沉淀物)进行评分。溶液条件会影响形态特征,如晶体尺寸,以及动力学特征,如晶体生长时间。常用的数据可视化技术包括基于符号的单个折线图或相图。这些技术在处理大数据集、全面性或完整性方面存在局限性。为了消除这些局限性,已经使用雷达图结合经验相图方法对高通量微批量实验生成的结晶图像中获得的形态和动力学特征进行了可视化。从浓度、盐类、离子强度和 pH 值不同的 768 种鸡蛋白溶菌酶溶液中提取了形态特征(晶体尺寸、形状和数量以及沉淀物尺寸)和动力学特征(晶体和沉淀物开始和生长时间)。基于图像的聚集形态和动力学特征被编译到一个单一且易于解释的图中,从而表明经验相图方法可以在其数据量和数据复杂性方面支持高通量结晶实验。

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