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通过Bxb1重组酶在CHO细胞中的高保真性,双位点特异性整合系统
Yifeng Xu1, Kerstin B Crowe1, Paulena L Lieske1
1Cell Line Development, Bioprocess R&D, Biotherapeutics Pharmaceutical Science, Pfizer Inc, Andover, Massachusetts, USA.
Biotechnology journal
|February 20, 2024
概括
我们开发了一种用于特定站点集成 (SSI) 的双站点系统,使用复合酶介导磁带交换 (RMCE). dBxb1宿主表现出更快的稳定细胞池生成,改善了生物治疗表达的遗传和表型稳定性.
科学领域:
- 生物技术是生物技术.
- 分子生物学分子生物学
- 基因工程是一种基因工程.
背景情况:
- 特定站点整合 (SSI) 对生物治疗表达的随机整合具有优势.
- 之前的工作建立了SSI宿主细胞,需要进一步开发以提高效率.
研究的目的:
- 开发和比较使用两个不同的重组酶系统 (Flp和Bxb1) 的双站点SSI系统.
- 评估生物制造开发的RMCE主机的效率,稳定性和性能.
主要方法:
- 开发一个双着陆台 (LP) 系统,使其能够在两个独立的基因组位置进行集成.
- 两个RMCE宿主细胞系的生成和比较:dFRT (Flp兼容) 和dBxb1 (Bxb1兼容).
- 优化dBxb1主机以提高料批表现和克隆稳定性的评估.
主要成果:
- dBxb1主机比dFRT主机更快地产生了稳定的变质剂池.
- dBxb1 变质体池表现出卓越的表型和基因型稳定性.
- 优化的dbxb1宿主克隆 (41L-11) 在延长的几代人中保持稳定的表达特征.
- 双LP架构为复杂的蛋白质开发提供了灵活性.
结论:
- 双站式SSI系统,特别是dBxb1主机,显著提高了细胞线开发效率和稳定性.
- 这种先进的系统促进了强大的生物治疗生产,并为复杂的蛋白质模式提供了多功能性.
关键词:
Bxb1 Bxb1 Bxb1 Bxb1 Bxb1 Bxb1 Bxb1 Bxb1 Bxb1 Bxb1 Bxb1 Bxb1FRT FRT FRT FRT FRT FRT FRT FRT FRT FRT FRT FRT FRT FRT FRT FRT FRT FRT FRT FRT FRT这是RMCE的RMCE.细胞系发育的发展线.这是一种单克隆抗体.具体地点 整合 具体地点 整合更多相关视频
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