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高剪切对蛋白质的影响。

Effect of high shear on proteins.

作者信息

Maa Y F, Hsu C C

机构信息

Department of Pharmaceutical Research and Development, Genentech, Inc., 460 Point San Bruno Boulevard, South San Francisco, California 94080.

出版信息

Biotechnol Bioeng. 1996 Aug 20;51(4):458-65. doi: 10.1002/(SICI)1097-0290(19960820)51:4<458::AID-BIT9>3.0.CO;2-H.

Abstract

Shear is present in almost all bioprocesses and high shear is associated with processes involving agitation and emulsification. The purpose of this study is to investigate the effect of high shear and high shear rate on proteins. Two concentric cylinder-based shear systems were used. One was a closed concentric-cylinder shear device (CCSD) and the other was a homogenizer with a rotor/stator assembly. Mathematical modeling of these systems allowed calculation of the shear rate and shear. The CCSD generated low shear rates (a few hundred s(-1)), whereas the homogenizer could generate very high shear rates (> 10(5) s(-1)). High shear could be achieved in both systems by increasing the processing time. Recombinant human growth hormone (rhGH) and recombinant human deoxyribonuclease (rhDNase) were used as the model proteins in this study. It was found that neither high shear nor high shear rate had a significant effect on protein aggregation. However, a lower melting temperature and enthalpy were detected for highly sheared rhGH by using scanning microcalorimetry, presumably due to some changes in protein's conformation. Also, SDS-PAGE indicated the presence of low molecular-weight fragments, suggesting that peptide bond breakage occurred due to high shear. rhDNase was relatively more stable than rhGH under high shear. No conformational changes and protein fragments were observed. (c) 1996 John Wiley & Sons, Inc.

摘要

几乎所有生物过程中都会出现剪切力,而高剪切力与涉及搅拌和乳化的过程相关。本研究的目的是探究高剪切力和高剪切速率对蛋白质的影响。使用了两种基于同心圆柱的剪切系统。一种是封闭的同心圆柱剪切装置(CCSD),另一种是带有转子/定子组件的均质器。对这些系统进行数学建模可计算剪切速率和剪切力。CCSD产生低剪切速率(几百秒⁻¹),而均质器可产生非常高的剪切速率(>10⁵秒⁻¹)。通过延长处理时间,在两个系统中均可实现高剪切力。本研究中使用重组人生长激素(rhGH)和重组人脱氧核糖核酸酶(rhDNase)作为模型蛋白。结果发现,高剪切力和高剪切速率对蛋白质聚集均无显著影响。然而,通过扫描量热法检测到,高度剪切的rhGH具有较低的解链温度和焓,推测这是由于蛋白质构象发生了某些变化。此外,SDS - PAGE表明存在低分子量片段,这表明高剪切导致了肽键断裂。在高剪切条件下,rhDNase比rhGH相对更稳定。未观察到构象变化和蛋白质片段。(c) 1996 John Wiley & Sons, Inc.

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