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Flow Cytometer Performance Characterization, Standardization and Calibration against CD4 on T Lymphocytes Enables Quantification of Biomarker Expressions for Immunological Applications
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作者 Heba Degheidy Steven Bauer +1 位作者 Gerald Marti Lili Wang 《Journal of Biomedical Science and Engineering》 2014年第9期756-768,共13页
There is an urgent need for developing a procedure for biomarker standardization and relative quantificationin clinical laboratories. Measuring the expression levels of cell antigens is critical for the diagnosis of m... There is an urgent need for developing a procedure for biomarker standardization and relative quantificationin clinical laboratories. Measuring the expression levels of cell antigens is critical for the diagnosis of many diseases, e.g. leukemia, lymphoma and immunodeficiency diseases. One of the most significant challenges in flow cytometry is obtaining inter-laboratory and intra-laboratory consistent and reproducible results across multiple cytometer platforms and locations longitudinally over time. To obtain measurement consistency, the target flow cytometer voltages should be optimized to segregate the negative population from the electronic noise, and to keep the brightest positive population within the dynamic range of each detector. Then target values should be determined and transferred to selected cytometers. In this study, we optimized a procedure for instrument standardization across three different flow cytometer platforms from the same vendor and in two different locations. The biomarker quantification was implemented on standardized instruments using CD4 expression on T lymphocytes with a known amount of antibody bound per cell as a quantification standard. Our results on blood cell subset typing and CD19 quantification demonstrated that consistent and reliable results could be accomplished between instruments using the developed procedure. Quantitating the expression levels of certain cell biomarkers relative to a known reference marker before, during, and after therapy would provide important information for monitoring antibody-based therapy and could be potentially used to adjust dosing. Presently, we are implementing this protocol to quantify critical disease biomarkers, and making necessary modifications to the procedure to include instruments from different instrument manufacturers. 展开更多
关键词 Flow CYTOMETRY BIOMARKER Quantification Instrument STANDARDIZATION target median fluorescence intensity (mfi)
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用于氯霉素和克伦特罗兽药残留检测的高通量悬浮芯片技术研究 被引量:9
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作者 刘楠 高志贤 +4 位作者 苏璞 晁福寰 朱茂祥 杨陟华 潘秀颉 《军事医学科学院院刊》 CSCD 北大核心 2009年第1期41-44,65,共5页
目的:建立一种检测氯霉素(chloramphenicol,CAP)和克伦特罗(clenbuterol,CL)兽药残留的新型高通量悬浮芯片技术。方法:合成2种兽药的牛血清白蛋白(bovine serum albumin,BSA)结合物,并进行紫外和质谱鉴定。将2种兽药的BSA蛋白结合物偶... 目的:建立一种检测氯霉素(chloramphenicol,CAP)和克伦特罗(clenbuterol,CL)兽药残留的新型高通量悬浮芯片技术。方法:合成2种兽药的牛血清白蛋白(bovine serum albumin,BSA)结合物,并进行紫外和质谱鉴定。将2种兽药的BSA蛋白结合物偶联于悬浮芯片的固相载体——聚苯乙烯荧光微球上,在液相反应体系中,2种小分子兽药抗原和微球上的结合物共同竞争液相中各自特异性的生物素化单抗,优化和筛选出微球上偶联BSA结合物和反应抗体的最适加入量。绘制2种兽药残留检测的标准曲线,进行特异性检测和盲样的测定。结果:2种小分子兽药可与BSA成功偶联,CAP和CL与BSA的偶联比分别为40∶1和31∶1。经过优化,2种结合物的最适加入量均为5μg/100μl羧基微球;最佳抗体加入量分别为5和1ng/2000个反应微球。检测的标准曲线方程和方程相应的决定系数分别为:YCAP=-250.323+4103.517/[1+(X/30121.243)0.980],r2=0.994和YCL=-263012.682+265751.765/[1+(X/6.063)0.115],r2=0.989。2种兽药悬浮芯片的检测区间分别为40~6.25×105ng/L和50~7.81×105ng/L;最低检出限为:40ng/L和50ng/L。CAP和CL最低检出限均低于国标。同时,悬浮芯片的特异度测试良好,与其他药物无明显交叉反应。悬浮芯片对盲样测定的检测浓度值与实际浓度偏差较小。扫描电镜对微球表面微观结构的观察也直观地确证了蛋白在微球上的成功偶联。结论:高通量悬浮芯片技术操作简单,灵敏快速,成本低廉,为多种兽药残留的快速检测提供了新方法,具有广阔的应用和发展前景。 展开更多
关键词 氯霉素 克伦特罗 药物残留 悬浮芯片 微球 中位荧光强度
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