Yari Aboubakar, Passo Frederic S, Yari Venus, Sanni Ousmane, Yari Myra, Dovenou Mathieu Z, Traore Rachide, Hounyet Jean-Pierre
Biotech tropicana, Inc, Parakou, Benin.
Bioinformation. 2008 Jan 27;2(6):257-9. doi: 10.6026/97320630002257.
We design a "simple" and "low cost" model technology for monitoring HIV patients CD4 number in resource-poor settings: SMARThivCD4mos. Cost and complexity are the major challenges to the developing world in transferring and implementing HIV surveillance technologies. We previously proposed a "three tests" combo kit model for improving HIV patients monitoring standards in resource-poor settings. From the pool of recommended alternative CD4 counting technologies, our "three tests" combo kit model retained the Capcellia technology for its "simplicity". However, compared to other CD4 counting technologies, such as Dynabeads, the Capcellia technology is "expensive". Here, we describe a cost reduction strategy of the Capcellia technology.
我们为在资源匮乏地区监测艾滋病毒患者的CD4细胞数量设计了一种“简单”且“低成本”的模型技术:SMARThivCD4mos。成本和复杂性是发展中世界在转让和实施艾滋病毒监测技术方面面临的主要挑战。我们之前提出了一种“三项检测”组合试剂盒模型,以提高资源匮乏地区艾滋病毒患者的监测标准。从推荐的替代CD4计数技术中,我们的“三项检测”组合试剂盒模型因其“简单性”保留了Capcellia技术。然而,与其他CD4计数技术(如磁珠法)相比,Capcellia技术“成本高昂”。在此,我们描述了一种降低Capcellia技术成本的策略。