Kettman J R, Davies T, Chandler D, Oliver K G, Fulton R J
University of Texas Southwestern Medical Center, Dallas 75235-9048, USA.
Cytometry. 1998 Oct 1;33(2):234-43.
We describe a practical method for the analysis of multiple analytes in a single sample. The vehicle for each separate measurement consists of a set of microspheres identifiable by characteristic fluorophores embedded in the particles. The use of robust, bench-top flow cytometers (flow microfluorimeters) for the analysis of the multiple sets of microspheres is facilitated by hardware and software, which acquire the data from the cytometer, classify the microspheres according to sets, and collate measurement information from each microsphere set in real time. This measurement system can analyze up to 64 analytes in a single sample. The advantages of multiplexed assays using flow cytometry include robust measurements, because each microsphere set is measured repeatedly. The advantage of the assay's is consistent with simultaneous measurement of many parameters as well as the speed with which the flow microfluorimeter (cytometer) makes measurements (many hundreds per second). Here, we describe the properties of the microspheres, the calibration of the cytometer, and the influence of the properties of the microspheres on the sensitivity of measurements.
我们描述了一种用于分析单个样本中多种分析物的实用方法。每次单独测量的载体是一组微球,这些微球可通过嵌入颗粒中的特征荧光团进行识别。硬件和软件有助于使用坚固的台式流式细胞仪(流式微荧光计)来分析多组微球,它们从细胞仪获取数据,根据组对微球进行分类,并实时整理来自每个微球组的测量信息。该测量系统可在单个样本中分析多达64种分析物。使用流式细胞术进行多重检测的优点包括测量稳健,因为每个微球组都被重复测量。该检测方法的优点还在于能够同时测量多个参数,以及流式微荧光计(细胞仪)进行测量的速度(每秒数百次)。在此,我们描述了微球的特性、细胞仪的校准以及微球特性对测量灵敏度的影响。