华东师范大学学报(自然科学版) ›› 2021, Vol. 2021 ›› Issue (3): 114-127.doi: 10.3969/j.issn.1000-5641.2021.03.012

• 生命科学 • 上一篇    下一篇

慢病毒载体冻干制剂的制备与稳定性研究

沈鸿伟, 李明昊, 徐南, 邵佳琪, 王镜, 俞磊*()   

  1. 华东师范大学 化学与分子工程学院,上海 200062
  • 收稿日期:2019-12-25 出版日期:2021-05-25 发布日期:2021-05-26
  • 通讯作者: 俞磊 E-mail:ylyh188@163.com
  • 基金资助:
    国家自然科学基金(81872812, 81470861)

Preparation and stability study of lyophilized lentiviral vector

Hongwei SHEN, Minghao LI, Nan XU, Jiaqi SHAO, Jing WANG, Lei YU*()   

  1. School of Chemistry and Molecular Engineering, East China Normal University, Shanghai 200062, China
  • Received:2019-12-25 Online:2021-05-25 Published:2021-05-26
  • Contact: Lei YU E-mail:ylyh188@163.com

摘要:

制备了一种新型慢病毒载体冻干制剂. 通过冻干保护剂处方的筛选与优化, 从外观、赋形性、色泽度、溶解性方面评价冻干制剂的理化性质, 确定最优处方为海藻糖0.30 g/mL、L-组氨酸0.31 mg/mL、L-丙氨酸0.178 mg/mL、CaCl2 0.020 mg/mL、MgSO4 0.015 mg/mL. 所制备的慢病毒载体冻干制剂外观良好, 残余水分含量低, 结构保持完整, 再分散性较好; 慢病毒载体生物滴度可高达9.37 × 107 IU/mL, 滴度回收率为50.15%. 影响因素稳定性实验、高温加速实验和反复冻融稳定性实验等研究显示, 真空冷冻干燥技术可用于慢病毒载体固体制剂的制备, 并且能够有效改善慢病毒载体不同温度条件下的储存效果、反复冻融稳定性以及对高温等不良环境的耐受能力.

关键词: 慢病毒载体, 冻干制剂, 稳定性

Abstract:

In this paper, we studied a new preparation technique for lyophilized lentiviral vectors. We determined the optimal formulation for a freeze-drying protective agent by screening and optimizing potential candidates. The candidates were evaluated on the basis of physical and chemical properties of the freeze-drying process, including appearance, excipient, color, and solubility. The optimal formulation was determined to be trehalose 0.30 g/mL, L-histidine 0.31 mg/mL, L- alanine 0.178 mg/mL, CaCl2 0.020 mg/mL, and MgSO4 0.015 mg/mL. With this technique, the prepared lyophilized lentiviral vector had good appearance, low residual water content, intact structure, and good re-dispersibility. The biological titer of the lentiviral vector reached 9.37 × 107 IU/mL, and the recovery rate of the titer was 50.15%. We also conducted research on potential influencing factors, including a high temperature accelerated experiment and repeated freeze-thaw stability experiments. These experiments showed that the lyophilizing technology can be used for the preparation of lentiviral vector solids and can be effectively used to improve the storage of lentiviral vectors under different temperature conditions, exposure to repeated freeze-thaw cycles, and tolerance to adverse environments (e.g., high temperatures).

Key words: lentiviral vector, lyophilized preparation, stability

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