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一种用于在资源有限环境中监测HIV感染者的可靠且廉价的简易CD4检测方法。

A reliable and inexpensive EasyCD4 assay for monitoring HIV-infected individuals in resource-limited settings.

作者信息

Balakrishnan Pachamuthu, Solomon Suniti, Mohanakrishnan Janardhanan, Cecelia Anitha J, Kumarasamy Nagalingeswaran, Murugavel Kailapuri G, Venkatakrishnan Bhavani, Solomon Sunil S, Crowe Suzanne M, Ganesh Aylur K, Thyagarajan Sadras P, Flanigan Timothy, Mayer Kenneth H

机构信息

YRG Centre for AIDS Research and Education, Chennai, India.

出版信息

J Acquir Immune Defic Syndr. 2006 Sep;43(1):23-6. doi: 10.1097/01.qai.0000227791.92203.d5.

Abstract

Serial measurements of absolute CD4+ T-lymphocyte counts are required to initiate and gauge response to therapy and monitor disease progression. Hence, there is an urgent need to evaluate the accuracy and validity of low-cost CD4+ T-cell count assays. Tripotassium EDTA blood specimens from HIV-infected individuals were studied using a novel flow cytometric assay (EasyCD4 assay; Guava Technologies, Hayward, CA) in comparison with standard flow cytometry (FACSCount; Becton Dickinson Immunocytometry Systems, San Jose, CA). The sensitivity, specificity value by EasyCD4 assay in enumerating absolute CD4+ T-cell counts of less than 200 cells/microL were 95% and 100%, respectively. Bland-Altman analysis showed close agreement, with the EasyCD4 assay yielding CD4+ T-cell counts a mean difference of -26 cells/microL (95% confidence interval, -96 to 44 cells/microL) higher than by flow cytometry. Our data suggest that EasyCD4 assay could be a useful alternative assay to conventional flow cytometry, may be appropriate for use in resource-limited settings.

摘要

启动和评估治疗反应以及监测疾病进展需要对CD4 + T淋巴细胞绝对计数进行连续测量。因此,迫切需要评估低成本CD4 + T细胞计数检测方法的准确性和有效性。使用一种新型流式细胞术检测方法(EasyCD4检测;Guava Technologies,海沃德,加利福尼亚州)对来自HIV感染个体的乙二胺四乙酸三钾血液标本进行研究,并与标准流式细胞术(FACSCount;贝克顿·迪金森免疫细胞检测系统,圣何塞,加利福尼亚州)进行比较。EasyCD4检测方法在计数低于200个细胞/微升的CD4 + T细胞绝对计数时,敏感性和特异性值分别为95%和100%。Bland-Altman分析显示两者一致性良好,EasyCD4检测方法得出的CD4 + T细胞计数比流式细胞术平均高-26个细胞/微升(95%置信区间,-96至44个细胞/微升)。我们的数据表明,EasyCD4检测方法可能是传统流式细胞术的一种有用替代方法,可能适用于资源有限的环境。

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