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The method and optimized condition for enriching empty plasmids transfected specific macrophages by flow cytometry sorting |
WU Hao1, WANG Min1, LUO Xianqiang1, GUO Jianchun1, ZHENG Binjiao1,2 |
1.Zhejiang Key Laboratory of Medical Genetics, Wenzhou Medical University, Wenzhou 325035, China; 2.Attardi Institute of Mitochondrial Biomedicine, Wenzhou Medical University, Wenzhou 325035, China |
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Cite this article: |
WU Hao,WANG Min,LUO Xianqiang, et al. The method and optimized condition for enriching empty plasmids transfected specific macrophages by flow cytometry sorting[J]. JOURNAL OF WEZHOU MEDICAL UNIVERSITY, 2019, 49(6): 408-411,417.
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Abstract Objective: To establish and optimize the method for enriching PX458 empty plasmid transfected J774A.1 cells by BD FACSAria II flow cytometer in order to figure out the optimum condition for screening J774A.1 cells. Methods: PX458 empty plasmid transfected J774A.1 cell line was constructed and stained with 7-AAD. GFP-positive transfectants of J774A.1 cells were sorted by 100 μm nozzle and initial, 4-way purity, purity, yield, fine tune, single cell sort modes respectively. The sorting efficiency was compared in different instrument parameters. Results: Under the stable fluid flow condition, the purity of the cells obtained by each sort mode of 100 μm nozzle was over 80%, and the sort mode with highest efficiency is purity mode, reaching 95.7%±1.0%. Conclusion: When the PX458 empty plasmid transfected J774A.1 cell line was shorted by BD FACSAria II flow cytometer with 100 μm nozzle, the purity sort mode is preferred.
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Received: 18 November 2018
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[1] 周密, 张全胜, 包明柱. 流式细胞仪细胞分选参数调校方法的研究[J]. 医疗装备, 2016, 29(7): 58-61.
[2] 杨红艳, 焉力方, 王如刚, 等. 应用流式细胞技术分选单核细胞亚群不同预富集方法的探讨[J]. 现代检验医学杂志, 2018, 33(1): 128-130.
[3] 高一龙, 秦海斌, 温海, 等. 拉布拉多大X/Y精子分选及性别控制冷冻精液制备实验研究[J]. 实验动物与比较医学, 2015, 35(6): 484-489.
[4] SHIBER A, BREUER W, RAVID T. Flow cytometric quantification and characterization of intracellular protein aggregates in yeast[J]. Prion, 2014, 8(3): 276-284.
[5] 郭陈智, 史桂英. 流式分选仪FACSAria II分选GFP阳性乳腺癌MCF-7细胞株的条件优化研究[J]. 上海交通大学学报(医学版), 2013, 33(1): 127-130.
[6] 闵智慧, 程韵枫. 第三代流式细胞分选仪及96孔板分选单个细胞的方法及参数优化[J]. 中国临床医学, 2016, 23(6): 846-850.
[7] 黄莹莹, 尹盛夏, 曹文强, 等. 高端流式分选与免疫磁珠法纯化T细胞的比较[J]. 国际医药卫生导报, 2016, 22(22): 3377-3383.
[8] VOROBJEV I A, BUCHHOLZ K, PRABHAT P, et al. Optimization of flow cytometric detection and cell sorting of transgenic plasmodium parasites using interchangeable optical filters[J]. Malar J, 2012, 11(1): 1-10.
[9] 曹云新, 胡金涛, 杨安钢. FACS-Aria流式细胞分选调试参数和最佳条件的设定[J]. 医学争鸣, 2007, 28(19): 1813-1815.
[10] TIROUVANZIAM R, DAVIDSON C J, LIPSICK J S, et al. Fluorescence-activated cell sorting (FACS) of drosophila hemocytes reveals important functional similarities to mammalian leukocytes[J]. Proc Natl Acad Sci U S A, 2004, 101(9): 2912-2917.
[11] 张晖, 周春保. FACS Aria流式细胞分选仪质量控制体系的优化[J]. 中国医疗器械杂志, 2009, 33(3): 225-227.
[12] 刘锡娟, 丁慧荣, 田志华, 等. FACSAria流式细胞仪无菌操作分选高纯度细胞亚群[J]. 安徽医科大学学报, 2014, 49(12): 1811-1815.
[13] SABATH D E, SHIM M H. Use of green fluorescent protein/Flp recombinase fusion protein and flow cytometric sorting to enrich for cells undergoing Flp-mediated recombi-nation[J]. Biotechniques, 2000, 28(5): 966-972, 974. |
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. [J]. JOURNAL OF WEZHOU MEDICAL UNIVERSITY, 2018, 48(12): 933-936. |
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