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Solutions to problems with detection of peripheral blood lymphocyte subsets by flow cytometry |
DUAN Cuijuan, LING Aiqin, ZHANG Cui, WANG Ruiling, SONG Na, WANG Yufei |
Department of Clinical Laboratory,the Third Medical Center of Chinese PLA General Hospital, Beijing 100039,China |
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Abstract Objective To improve the accuracy of detection of peripheral blood lymphocyte subsets by flow cytometry. Methods Problems that were often encountered by our laboratory in the process of detecting peripheral blood lymphocyte subsets with the Mindray's BriCyte E6 flow cytometer in 2018 were summarized and analyzed, and corresponding solutions were proposed. Results The common problems encountered in the detection of peripheral blood lymphocyte subsets by flow cytometry included unclear clusters of scatter plots of the CD45-SSC gate, unclear classification clusters of scatter plots of the cross gate, inability to classify lymphocyte subsets, and false reduction of absolute lymphocyte subsets counting. The above problems could be solved by washing the blood samples with saline before sample preparation or by cleaning the samples with hemolysin before detection. Conclusions The problems encountered in the detection of peripheral blood lymphocyte subsets by Mindray BriCyte E6 flow cytometry can be solved by washing the blood samples with saline or cleaning the samples with hemolysin.
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Received: 05 February 2021
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[1] |
沈立松. 流式细胞术的研究进展及临床应用前景[J].中华检验医学杂志, 2009, 32(3): 260-262.
|
[2] |
Saeys Y, Gassen S V, Lambrecht B N. Computational flow cytomelry: helping to make sense of highdimens- immunology data[J]. Nat Rev Immunol,2016,16(7):449-462.
|
[3] |
Robinson J P, Roederer M. History of science. Flow cylometry strikes gold[J]. Science,2015,350(6262):739-740.
|
[4] |
盛慧明, 孙寒晓.流式细胞术的发展与展望[J].中华检验医学杂志,2018,41(1):20-23.
|
[5] |
王维维, 奚 迪, 袁向亮,等. 不同流式细胞分析仪检测淋巴细胞亚群的比较研究[J].中华检验医学杂志, 2016, 39(5): 361-365.
|
[6] |
王小林,李 昂,杨 硕.流式细胞仪性能评价方法的建立[J].国际检验医学杂志,2015,36(10):1366-1367,1369
|
[7] |
翁泽兵, 王玉飞, 郝钦芳,等. 两种流式单平台计数法测定移植术后患者外周血T淋巴细胞亚群的应用评价[J]. 临床检验杂志, 2017, 35(1): 39-41.
|
[8] |
方佩琪, 孙 林, 顾梅秀,等.碧迪FACS CantoⅡ流式细胞仪性能评价及实验室应用[J].现代检验医学杂志,2019,34(2):94-99.
|
[9] |
Safa K,Chandran S,Wojciech D. Pharmacologic targeting of regulatory T cells for solid organ transplantation: current and future prospects [J]. Drugs,2015,75(16):1843-1852.
|
[10] |
Doesum W,Abdulahad W,Dijk M, et al. Characterization of urinary CD4+ and CD8+ T cells in kidney transplantation patients with polyomavirus BK infection and allograft rejection [J]. Transpl Infect Dis,2014,16(5):733-743.
|
[11] |
Schachtner T,Stein M,Reinke P. Sepsis after renal transplantation: clinical. Immunolo and microbiological risk factors[J]. Transpl Infect Dis, 2017,19(3):452.
|
[12] |
郑 瑾, 张江伟, 王旭珍,等.肾移植术后早期淋巴细胞及DSA监测在诊断移植排斥反应中的意义 [J].山东大学学报(医学版),2017,55(7):89-94.
|
[13] |
王玉洁. 慢性肾脏病各期凝血功能变化及相关影响因素分析[D].泸州:泸州医学院, 2012: 1-55.
|
[14] |
张 莹,夏正坤.儿童原发性肾病综合征并发高凝状态与血栓栓塞的机制[J].肾脏病与透析肾移植杂志,2012,21(1):64-67.
|
[15] |
张 炯,刘志红.肾病综合征血栓栓塞症的病理生理学基础[J].肾脏病与透析肾移植杂志,2010,19(5):455-459.
|
[16] |
Malyszko J S,Mysliwiec M. Markers of endothelial cell injury and thrombin activatable fibrinolysis inhibitor in nephrotic syndrome[J]. Blood Coagul Fibrinolysis,2002,13(7):615-621.
|
|
|
|