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Detection of inflammatory cytokines using a fiber optic microsphere immunoassay array

机译:使用光纤微球免疫测定阵列检测炎性细胞因子

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摘要

A multiplexed fiber optic microsphere-based immunoassay array capable of simultaneously measuring five inflammatory cytokines has been developed. Five groups of amine-functionalized 3.1 micron microspheres were internally encoded with five distinct concentrations of a europium dye and converted to cytokine probes by covalently coupling monoclonal capture antibodies specific for human VEGF, IFN-gamma, RANTES, IP-10, and Eotaxin-3 to the microspheres via glutaraldehyde chemistry. The microspheres were pooled and loaded into a 1 mm diameter fiber optic bundle containing ~50,000 individual etched microwells, producing the multiplexed cytokine immunoassay array. Multiple arrays can be created from a single microsphere pool for high throughput sample analysis. Sandwich fluoroimmunoassays were performed by incubating the probe array in a sample, followed by incubation in a mixture of biotin-labeled detection antibodies that are complementary to the five cytokines. Finally, universal detection of each protein was performed using a fluorescence imaging system after briefly immersing the array in a solution of fluorophore-labeled streptavidin. The multiplexed cytokine array has been shown to respond selectively to VEGF, IFN-gamma, RANTES, IP-10, and Eotaxin-3, permitting multiplexed quantitative analysis. Ultimately, the multiplexed cytokine array will be utilized to evaluate the potential of using saliva as a noninvasive diagnostic fluid for pulmonary inflammatory diseases such as asthma.
机译:已经开发了能够同时测量五种炎性细胞因子的基于多路复用光纤微球的免疫测定阵列。五组胺官能化的3.1微米微球内部编码有五种不同浓度的dye染料,并通过共价偶联对人VEGF,IFN-γ,RANTES,IP-10和Eotaxin-3特异的单克隆捕获抗体而转化为细胞因子探针通过戊二醛化学反应进入微球。将微球汇集并装入直径约1mm的光纤束中,该光纤束中包含约50,000个单独的蚀刻微孔,从而产生了多重细胞因子免疫测定阵列。可以从单个微球池创建多个阵列,以进行高通量样品分析。通过在样品中孵育探针阵列,然后在与五种细胞因子互补的生物素标记的检测抗体的混合物中孵育,进行三明治荧光免疫测定。最后,将阵列短暂浸入荧光团标记的链霉亲和素溶液中后,使用荧光成像系统对每种蛋白质进行通用检测。多重细胞因子阵列已显示出对VEGF,IFN-γ,RANTES,IP-10和Eotaxin-3的选择性反应,从而可以进行多重定量分析。最终,多重细胞因子阵列将用于评估将唾液用作肺炎性疾病(如哮喘)的非侵入性诊断液的潜力。

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