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At‐line multi‐angle light scattering detector for faster process development in enveloped virus‐like particle purification

机译:在线多角度光散射检测器可加快包膜病毒样颗粒纯化过程的开发速度

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摘要

At‐line static light scattering and fluorescence monitoring allows direct in‐process tracking of fluorescent virus‐like particles. We have demonstrated this by coupling at‐line multi‐angle light scattering and fluorescence detectors to the downstream processing of enveloped virus‐like particles. Since light scattering intensity is directly proportional to particle concentration, our strategy allowed a swift identification of product containing fractions and rapid process development. Virus‐like particles containing the Human Immunodeficiency Virus‐1 Gag protein fused to the Green Fluorescence protein were produced in Human Embryonic Kidney 293 cells by transient transfection. A single‐column anion‐exchange chromatography method was used for direct capture and purification. The majority of host‐cell protein impurities passed through the column without binding. Virus‐like particles bound to the column were eluted by linear or step salt gradients. Particles recovered in the step gradient purification were characterized by nanoparticle tracking analysis, size exclusion chromatography coupled to multi‐angle light scattering and fluorescence detectors and transmission electron microscopy. A total recovery of 66% for the fluorescent particles was obtained with a 50% yield in the main product peak. Virus‐like particles were concentrated 17‐fold to final a concentration of 4.45 × 1010 particles/mL. Simple buffers and operation make this process suitable for large scale purposes.
机译:在线静态光散射和荧光监测可直接在过程中跟踪荧光病毒样颗粒。我们通过将在线多角度光散射和荧光检测器与包膜病毒样颗粒的下游处理相结合来证明这一点。由于光散射强度与颗粒浓度成正比,因此我们的策略可以快速识别包含馏分的产物并快速进行工艺开发。通过瞬时转染在人胚肾293细胞中产生了含有与绿色荧光蛋白融合的人免疫缺陷病毒-1 Gag蛋白的病毒样颗粒。单柱阴离子交换色谱法用于直接捕获和纯化。大多数宿主细胞蛋白质杂质没有结合就通过色谱柱。结合在色谱柱上的病毒样颗粒通过线性或逐步盐梯度洗脱。通过纳米颗粒跟踪分析,尺寸排阻色谱联用多角度光散射和荧光检测器以及透射电子显微镜,对在逐步梯度纯化中回收的颗粒进行了表征。荧光颗粒的总回收率为66%,主产物峰的收率为50%。将病毒样颗粒浓缩17倍,最终浓度为4.45×10 10 颗粒/ mL。简单的缓冲区和操作使该过程适合大规模应用。

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