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首页> 外文期刊>Journal of Virological Methods >Separation of rotavirus double-layered particles and triple-layered particles by capillary zone electrophoresis
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Separation of rotavirus double-layered particles and triple-layered particles by capillary zone electrophoresis

机译:轮状病毒双层颗粒和三层颗粒的毛细管区带电泳分离

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摘要

Cell culture derived rotavirus preparations contain a mixture of double-layered particles (DLPs) and triple-layered particles (TLPs). Characterization of rotavirus vaccine products is important to demons! rate a consistent manufacturing process. A capillary zone electrophoresis (CZE) method was developed to separate and quantitate rotavirus DLPs and TLPs in cell lysate samples and CsCl-purified vaccine preparations of each of the five reassortant rotavirus vaccine strains (Cl, G2, G3, G4 and P1) contained in the pentavalent rotavirus vaccine, RotaTeq (R). The CZE electropherograms showed that migration of DLPs and TLPs from both CsCl-purified and cell lysates resulted in a separation distance of approximately 3 min between the two rotavirus particle types. The identification of the peak(s) containing TLPs was confirmed for both CsCl-purified and cell lysate samples by treatment of the samples with 50 mM EDTA, which converted TLPs to DLPs. The migration pattern of the DLPs was consistent (23-24 min) among all reassortant strains tested, whether the DLPs were CsCl-purified or from cell lysates. However, the migration pattern of the TLP electropherograms of the reassortant rotavirus strains in cell lysates differed from those of the CsCl-purified reassortant rotavirus strains. In the cell lysate samples, the TLPs of the Cl and G2 reassortant rotavirus strains migrated slower that the corresponding TLPs from the CsCl-purified samples, while the migration time of the TLPs of the G3. G4 and P1 reassortants strains from the cell lysate and CsCl-purified samples appeared similar. Also, the TLPs from the CsCl-purified samples appeared as a defined single peak, while most of the TLPs from the cell lysate samples appeared as a broad peak or as multiple peaks. All the migration patterns were reproducible and consistent. Taking into account reproducibility, objective quantitation, and minimal sample manipulation as well as volume, CZE allowed consistent and quantitative characterization of rotavirus vaccine preparations, which is required for evaluation of vaccine products, including process validation.
机译:细胞培养衍生的轮状病毒制剂包含双层颗粒(DLP)和三层颗粒(TLP)的混合物。轮状病毒疫苗产品的表征对恶魔很重要!评价一致的制造过程。开发了一种毛细管区带电泳(CZE)方法来分离和定量细胞裂解液样品中的轮状病毒DLP和TLP,以及CsCl纯化的五种重配轮状病毒疫苗株(C1,G2,G3,G4和P1)中的每种疫苗制剂五价轮状病毒疫苗RotaTeq(R)。 CZE电泳图显示Ds和TLP从CsCl纯化的和细胞裂解物中的迁移导致两种轮状病毒颗粒类型之间的分离距离约为3分钟。通过用50 mM EDTA处理样品,将CsCl纯化的样品和细胞裂解液样品中含有TLP的峰都得到确认,该样品将TLP转换为DLP。在所有测试的重配菌株中,DLP的迁移模式都是一致的(23-24分钟),无论DLP是经过CsCl纯化还是来自细胞裂解液。但是,细胞裂解物中重配轮状病毒株的TLP电泳图的迁移模式与CsCl纯化的重配轮状病毒株的迁移模式不同。在细胞裂解物样品中,C1和G2重配轮状病毒株的TLP迁移速度比CsCl纯化样品中相应的TLP迁移慢,而G3的TLP迁移时间更慢。来自细胞裂解液和CsCl纯化样品的G4和P1重配株似乎相似。同样,来自CsCl纯化样品的TLP表现为确定的单峰,而来自细胞裂解液样品的大多数TLP表现为宽峰或多个峰。所有迁移模式都是可重复且一致的。考虑到可重复性,客观定量,最小的样品处理以及体积,CZE允许对轮状病毒疫苗制剂进行一致且定量的表征,这是评估疫苗产品(包括过程验证)所必需的。

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