Nagai Y, Kondo H, Yamamoto S, Tatsumi N
Biomedical Instrument Technology Center, Nihon Kohden Corporation, Tokyo, Japan.
Int J Lab Hematol. 2009 Aug;31(4):420-9. doi: 10.1111/j.1751-553X.2008.01057.x. Epub 2008 Mar 21.
We developed a new flow cytometry analysis method using a crossover analysis of emission light from intracellular DNA/RNA. Both the RNA and the DNA content in each cell were new parameters obtained by fluorescence analysis using acridine orange supravital stain. With this method, two-dimensional diagrams produced by cellular RNA concentration (CRc) and cellular DNA concentration (CDc) enabled clear separation of red cells and platelets, and the diagram (RNP Diagram) also distinguished fluorescently stained blood cells and small particles derived from background dust of the reagent. This study assessed the capability of RNP Determination concerning reticulocyte count and accurate platelet count obtained by the ratio of red cells and platelets. The distance of each event between red cell distribution and platelet distribution was sufficiently large on the diagram, and the two regions did not overlap. Both reticulocyte count and platelet count showed excellent correlation with those obtained by their respective reference methods. In conclusion, this new assay, using RNP Determination, demonstrated great potential for detecting abnormalities of red cells and platelets.
我们开发了一种新的流式细胞术分析方法,该方法利用细胞内DNA/RNA发射光的交叉分析。每个细胞中的RNA和DNA含量都是通过使用吖啶橙活体染色的荧光分析获得的新参数。通过这种方法,由细胞RNA浓度(CRc)和细胞DNA浓度(CDc)生成的二维图能够清晰地分离红细胞和血小板,并且该图(RNP图)还能区分荧光染色的血细胞和试剂背景灰尘产生的小颗粒。本研究评估了RNP测定在网织红细胞计数以及通过红细胞与血小板比例获得准确血小板计数方面的能力。在图上,红细胞分布和血小板分布之间每个事件的距离足够大,且这两个区域不重叠。网织红细胞计数和血小板计数与各自参考方法获得的结果均显示出极好的相关性。总之,这种使用RNP测定的新检测方法在检测红细胞和血小板异常方面显示出巨大潜力。