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Lentiviral Vector Purification Using Nanofiber Ion-Exchange Chromatography

机译:纳米纤维离子交换色谱法纯化慢病毒载体

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摘要

Lentiviral vectors (LVs) are used in cell and gene therapies due to their ability to transduce both dividing and non-dividing cells while carrying a relatively large genetic payload and providing long-term gene expression via gene integration. Current cultivation methods produce titers of 105–107 transduction unit (TU)/mL; thus, it is necessary to concentrate LVs as well as remove process- and product-related impurities. In this work, we used a packaging cell line WinPac-RD-HV for LV production to simplify upstream processing. A direct capture method based on ion-exchange chromatography and cellulose nanofibers for LV concentration and purification was developed. This novel scalable stationary phase provides a high surface area that is accessible to LV and, therefore, has potential for high-capacity operation compared to traditional bead-based supports. We were able to concentrate LVs 100-fold while achieving a two-log removal of host cell protein and maintaining up to a 90% yield of functional vector.
机译:慢病毒载体(LVs)用于细胞和基因治疗,是因为它们能够转导分裂细胞和非分裂细胞,同时携带相对较大的遗传有效载荷并通过基因整合提供长期的基因表达。目前的培养方法产生的滴度为10 5 –10 7 转导单位(TU)/ mL;因此,有必要浓缩LV并去除与工艺和产品有关的杂质。在这项工作中,我们将包装单元生产线WinPac-RD-HV用于低压生产,以简化上游加工。建立了一种基于离子交换色谱和纤维素纳米纤维的直接捕获方法,用于LV的浓缩和纯化。这种新颖的可扩展固定相提供了LV可接近的高表面积,因此,与传统的基于珠子的载体相比,具有高容量操作的潜力。我们能够将LVs浓缩100倍,同时去除宿主细胞蛋白的两个对数,并保持高达90%的功能性载体产量。

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