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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Modelling protein crystallisation using morphological population balance models
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Modelling protein crystallisation using morphological population balance models

机译:使用形态种群平衡模型对蛋白质结晶进行建模

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摘要

Protein crystallisation is known to be affected by many factors and inherently difficult to control. Being able to model the crystal growth behaviour, especially at process scale for the population of particles in a crystalliser will no doubt greatly help the formulation and controlled manufacture of protein crystals. In this paper, a morphological population balance model for crystallisation of tetragonal Hen-Egg-White (HEW) lysozyme is presented. Since the population balance model has incorporated crystal shape information, it is able to simulate the dynamic evolution of the shape distribution as well as size distribution. The morphological population balance model requires faceted growth kinetics data, which was obtained from published data in literature for the two identified independent crystallographic faces, {101} and {110}, of HEW lysozyme crystals.
机译:已知蛋白质结晶受许多因素影响,并且固有地难以控制。能够对晶体生长行为进行建模,尤其是能够针对结晶器中的粒子数量进行过程规模建模,无疑将极大地帮助蛋白质晶体的配制和受控生产。在本文中,提出了用于结晶四方亨-蛋-白(HEW)溶菌酶的形态种群平衡模型。由于人口平衡模型已纳入晶体形状信息,因此能够模拟形状分布以及尺寸分布的动态演变。形态种群平衡模型需要多方面的生长动力学数据,该数据是从文献中已发表的数据中获得的,这些数据是针对已确定的HEW溶菌酶晶体的两个独立结晶面{101}和{110}。

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