为使金标免疫分析术能对目标被检物进行高灵敏度快速定量检测,成功研制一种金标免疫试纸条反射式光度计。根据纳米金颗粒对绿光的强烈吸收特性,以绿光激光器为照明光源,以扫描方式测量金标免疫试纸条上经生物反应而结合上去的纳米金颗...为使金标免疫分析术能对目标被检物进行高灵敏度快速定量检测,成功研制一种金标免疫试纸条反射式光度计。根据纳米金颗粒对绿光的强烈吸收特性,以绿光激光器为照明光源,以扫描方式测量金标免疫试纸条上经生物反应而结合上去的纳米金颗粒的分布,通过特定算法计算出样品中目标被检物的浓度。该光度计对人绒毛膜促性腺激素标准样品的检测灵敏度达到5 m IU/m l,在5-500 m IU/m l浓度范围内具有良好的线性响应特性,相关系数R^2-0.99,使用研制的光度计对同一生物反应稳定的金标试纸条进行20次重复测量,测量结果的变异系数(CV)小于2%。该光度计具有快速、稳定、灵敏的工作性能。展开更多
The surface morphology of lateral flow (LF) strip is examined by scanning electron microscope (SEM) and the diffuse reflection of porous strip with or without nanogold particles is investigated. Based on the scatt...The surface morphology of lateral flow (LF) strip is examined by scanning electron microscope (SEM) and the diffuse reflection of porous strip with or without nanogold particles is investigated. Based on the scattering and absorption of nanogold particles, a reflectance photometer is developed for quantification of LF strip with nanogold particles as reporter. The integration of reflection optical density is to indicate the signals of test line and control line. As an example, serial dilutions of microalbunminuria (MAU) solution are used to calibrate the performance of the reflectance photometer. The dose response curve is fitted with a four-parameter logistic mathematical model for the determination of an unknown MAU concentration. The response curve spans a dynamic range of 5 to 200 μg/ml. The developed reflectance photometer can realize simple and quantitative detection of analyte on nanogold-labeled LF strip.展开更多
文摘为使金标免疫分析术能对目标被检物进行高灵敏度快速定量检测,成功研制一种金标免疫试纸条反射式光度计。根据纳米金颗粒对绿光的强烈吸收特性,以绿光激光器为照明光源,以扫描方式测量金标免疫试纸条上经生物反应而结合上去的纳米金颗粒的分布,通过特定算法计算出样品中目标被检物的浓度。该光度计对人绒毛膜促性腺激素标准样品的检测灵敏度达到5 m IU/m l,在5-500 m IU/m l浓度范围内具有良好的线性响应特性,相关系数R^2-0.99,使用研制的光度计对同一生物反应稳定的金标试纸条进行20次重复测量,测量结果的变异系数(CV)小于2%。该光度计具有快速、稳定、灵敏的工作性能。
文摘The surface morphology of lateral flow (LF) strip is examined by scanning electron microscope (SEM) and the diffuse reflection of porous strip with or without nanogold particles is investigated. Based on the scattering and absorption of nanogold particles, a reflectance photometer is developed for quantification of LF strip with nanogold particles as reporter. The integration of reflection optical density is to indicate the signals of test line and control line. As an example, serial dilutions of microalbunminuria (MAU) solution are used to calibrate the performance of the reflectance photometer. The dose response curve is fitted with a four-parameter logistic mathematical model for the determination of an unknown MAU concentration. The response curve spans a dynamic range of 5 to 200 μg/ml. The developed reflectance photometer can realize simple and quantitative detection of analyte on nanogold-labeled LF strip.