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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >Monitoring protein aggregation kinetics with simultaneous multiple sample light scattering
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Monitoring protein aggregation kinetics with simultaneous multiple sample light scattering

机译:监测蛋白质聚集动力学,同时进行多个样品光散射

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摘要

A simultaneous multiple sample light scattering (SMSLS) prototype instrument was built to simultaneously measure light scattering from many independent monoclonal antibody (mAb) solutions in order to monitor their time-dependent aggregation behavior and to characterize, via absolute Rayleigh scattering ratios, their molecular masses and second, third, and fourth virial coefficients under non-aggregating conditions at concentrations up to 190 mg/ml. One stable mAb and another prone to aggregation were studied. Early phase aggregation rates spanned six orders of magnitude over temperatures 30 to 83 °C for both mAbs and divided into "Arrhenius" and "Stochastic" regimes. The Arrhenius regimes comprise two thermal regimes whose breakpoint occurs near the first thermal unfolding temperature of the mAb domain structure. The Stochastic regime occurs for T ≤ 40 °C. Rates yielded activation energies and temperature and concentration crossovers among rate-limiting regimes. Virial coefficients were closely related to aggregation kinetics. Hydrodynamic diameter relationship to virial coefficients provided further insight into stability. SMSLS detected as few as three dimerization events among 1000 monomeric proteins. Although early phase aggregation is linear in time and reproducible, aggregation becomes chaotic in later phases. SMSLS dramatically increases protein monitoring throughput, providing continuous monitoring for hours, weeks, and longer. New samples can be changed in and out without affecting other sample measurements in progress.
机译:建立了同时多样品光散射(SMSLS)原型仪器,可同时测量来自许多独立单克隆抗体(mAb)溶液的光散射,以监控其随时间变化的聚集行为并通过绝对瑞利散射比表征其分子质量浓度不超过190 mg / ml的非聚集条件下的第二,第三和第四病毒系数。研究了一种稳定的mAb和另一种易于聚集的抗体。两种mAb的早期聚集速率在30至83°C的温度范围内跨越六个数量级,并分为“ Arrhenius”和“ Stochastic”方案。 Arrhenius方案包含两个热方案,其断裂点发生在mAb结构域的第一个热解折叠温度附近。 T≤40°C时发生随机状态。在限速方案中,速率产生活化能,温度和浓度交叉。病毒系数与聚集动力学密切相关。流体力学直径与病毒系数的关系为稳定性提供了进一步的见识。 SMSLS在1000个单体蛋白中检测到少至三个二聚化事件。尽管早期聚集在时间上是线性的并且是可重现的,但是聚集在后面阶段变得混乱。 SMSLS大大提高了蛋白质监测的通量,可连续监测数小时,数周甚至更长的时间。可以在不影响其他进行中的样品测量的情况下更换新样品。

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