Wyatt Technology Corporation, 6330 Hollister Avenue, Goleta, California, 93117, USA.
Sci Rep. 2017 Aug 30;7(1):10030. doi: 10.1038/s41598-017-09051-1.
A multi-angle light scattering (MALS) system, combined with chromatographic separation, directly measures the absolute molar mass, size and concentration of the eluate species. The measurement of these crucial properties in solution is essential in basic macromolecular characterization and all research and production stages of bio-therapeutic products. We developed a new MALS methodology that has overcome the long-standing, stubborn barrier to microliter-scale peak volumes and achieved the highest resolution and signal-to-noise performance of any MALS measurement. The novel design simultaneously facilitates online dynamic light scattering (DLS) measurements. As National Institute of Standards and Technology (NIST) new protein standard reference material (SRM 8671) is becoming the benchmark molecule against which many biomolecular analytical techniques are assessed and evaluated, we present its measurement results as a demonstration of the unique capability of our system to swiftly resolve and measure sharp (20~25 µL full-width-half-maximum) chromatography peaks. Precise measurements of protein mass and size can be accomplished 10 times faster than before with improved resolution. In the meantime the sample amount required for such measurements is reduced commensurately. These abilities will have far-reaching impacts at every stage of the development and production of biologics and bio-therapeutic formulations.
多角度光散射(MALS)系统与色谱分离相结合,可直接测量洗脱物的绝对摩尔质量、尺寸和浓度。在溶液中测量这些关键性质对于基础大分子特性分析以及生物治疗产品的所有研究和生产阶段都至关重要。我们开发了一种新的 MALS 方法,克服了长期存在的微升级别峰体积的顽固障碍,实现了任何 MALS 测量中最高的分辨率和信噪比性能。该新颖的设计还可同时促进在线动态光散射(DLS)测量。由于国家标准与技术研究院(NIST)新型蛋白质标准参考物质(SRM 8671)正在成为许多生物分子分析技术评估和评价的基准分子,因此我们展示了其测量结果,以证明我们的系统具有快速解析和测量尖锐(20~25 μL 半峰全宽)色谱峰的独特能力。与以前相比,蛋白质质量和尺寸的精确测量速度提高了 10 倍,分辨率也得到了提高。同时,此类测量所需的样品量也相应减少。这些能力将在生物制品和生物治疗制剂的开发和生产的各个阶段产生深远的影响。