Meng Zhuolun, Raji Hassan, Kokabi Mahtab, Zou Deng, Chan James, Liu Qihao, Zhang Ruifeng, Javanmard Mehdi
Electrical and Computer Engineering, Rutgers University-New Brunswick, 94 Brett Road, Piscataway, NJ 08854, USA.
Biosensors (Basel). 2025 Jan 9;15(1):33. doi: 10.3390/bios15010033.
CD4 T lymphocytes play a key role in initiating the adaptive immune response, releasing cytokines that mediate numerous signal transduction pathways across the immune system. Therefore, CD4 T cell counts are widely used as an indicator of overall immunological health. HIV, one of the leading causes of death in the developing world, specifically targets and gradually depletes CD4 cells, making CD4 counts a critical metric for monitoring disease progression. As a result, accurately counting CD4 cells represents a pressing challenge in global healthcare. Flow cytometry remains the gold standard for enumerating CD4 T cells; however, flow cytometers are expensive, difficult to transport, and require skilled medical staff to prepare samples, operate the equipment, and interpret results. This highlights the critical need for novel, rapid, cost-effective, and portable methods of CD4 enumeration that are suitable for deployment in resource-limited countries. This review will survey and analyze emerging research in CD4 counting, with a focus on microfluidic systems, which represent a promising area of investigation.
CD4 T淋巴细胞在启动适应性免疫反应中起关键作用,释放细胞因子,介导免疫系统中的众多信号转导途径。因此,CD4 T细胞计数被广泛用作整体免疫健康的指标。艾滋病病毒是发展中世界主要的死亡原因之一,它专门靶向并逐渐消耗CD4细胞,使得CD4计数成为监测疾病进展的关键指标。因此,准确计数CD4细胞是全球医疗保健领域面临的紧迫挑战。流式细胞术仍然是计数CD4 T细胞的金标准;然而,流式细胞仪价格昂贵,运输困难,需要熟练的医务人员来制备样本、操作设备和解读结果。这凸显了对新型、快速、经济高效且便携的CD4计数方法的迫切需求,这些方法适用于资源有限的国家。本综述将调查和分析CD4计数方面的新兴研究,重点关注微流控系统,这是一个有前景的研究领域。