Lonza 96孔模块优势
1、高效转染——采用上市20年的Lonza(原Amaxa)专利Nucleofector细胞核转染技术,结合优化的电转染程序、细胞特异性转染试剂、无铝离子毒害的新型聚合物电极,同时提高细胞转染效率和转染后细胞活率。
2、快速优化——真正的96个孔独立转染,可用于不同细胞转染或同一细胞不同转染条件的摸索,通过较低的细胞、转染试剂、转染耗材成本,短时间快速推进实验进程。
3、兼容性——96孔模块摸索的转染条件,可方便地应用于4D核转仪的X模块和LV大体积转染模块、或Lonza 384孔高通量转染系统,简单实现转染规模的线性放大。
4、自动化处理——96孔模块可集成于液体处理工作站中,实现自动化处理,提升实验效率,减少人工误差。
参考文献
1. Targeted gene knock-in by homology-directed genome editing using Cas9 ribonucleoprotein and AAV donor delivery. Thomas Gaj, Brett Staahl, Gonçalo Rodrigues, et al. Nucleic Acids Research, Volume 45, Issue 11, 20 June 2017, Page e98
2. Nucleofection-based gene targeting in human pre-B cells. Aya Kurosawa, Shinta Saito, Mikako Mori, Noritaka Adachi. Gene, Volume 492, Issue 1, 15 January 2012, Pages 305-308
3. Optimized Protocol for Efficient Transfection of Dendritic Cells without Cell Maturation. Robert Bowles, Sonali Patil, Hanna Pincas, Stuart C. Sealfon. Immunology and Infection, July 8, 2011, doi: 10.3791/2766
4. An Engineered Zinc Finger Protein Activator of the Endogenous Glial Cell Line-Derived Neurotrophic Factor Gene Provides Functional Neuroprotection in a Rat Model of Parkinson's Disease. Josee Laganiere, Adrian Kells, Jeffrey Lai, et al. Neuroscience, 8 December 2010, 30 (49) 16469-16474
5. An RNA Interference Screen Reveals a Critical Role for Mcl-1 In Survival of CML Progenitor Cells. Su Chu and Ravi Bhatia. Blood, Volume 116, Issue 21, 19 November 2010, Page 1203
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——Lonza中国一级代理商,北京泽平
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