分析物
计算生物学
有孔小珠
再现性
趋化因子
免疫分析
纳米技术
生物
色谱法
化学
抗体
材料科学
免疫学
免疫系统
复合材料
作者
Edward T. Morgan,R Varró,Homero Sepulveda,Julia A. Ember,John Apgar,Jerry D. Wilson,Larry Lowe,Roy Chen,Lalita Shivraj,Anissa Agadir,Roberto Campos,David Ernst,Amitabh Gaur
标识
DOI:10.1016/j.clim.2003.11.017
摘要
The introduction of flow cytometric bead-based technology has added a new approach for investigators to simultaneously measure multiple analytes in biological and environmental samples. This new technology allows for (1) evaluation of multiple analytes in a single sample; (2) utilization of minimal sample volumes to glean data; (3) reproducibility and results comparative with previous experiments; (4) direct comparison with existing assays; and (5) a more rapid evaluation of multiple samples in a single platform. The cytometric bead array (CBA) system enables simultaneous measurement of multiple analytes in sample volumes too small for traditional immunoassays. Results have been presented for the analysis of a variety of human cytokines. In addition, the technology allows for the design and creation of assays to measure a variety of analytes including inflammatory mediators, chemokines, immunoglobulin isotypes, intracellular signaling molecules, apoptotic mediators, adhesion molecules, and antibodies. New initiatives put forward by the Human Genome Project and the FDA require the development and use of assays for the rapid simultaneous quantitation of multiple analytes. The CBA technology provides the ability to quantify multiple proteins within a given sample, with precision and consistency.
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