Zhu W J, Wang L, Xia W, Wang X L, Jin J, Wang X, Lu Y, Chen Y
School of Medical Technology, Xuzhou Medical University, Xuzhou 221004, China.
Department of Clinical Laboratory, Xuzhou First People's Hospital, Xuzhou 221116, China.
Zhonghua Yu Fang Yi Xue Za Zhi. 2024 Jul 6;58(7):1087-1095. doi: 10.3760/cma.j.cn112150-20231225-00492.
Rapid and accurate diagnostic technologies are crucial for early detection and diagnosis of diseases. Electrowetting-on-dielectric digital microfluidics, with its high-precision detection and high-throughput screening capabilities, significantly enhances the accuracy and efficiency in early disease diagnosis and personalized treatment, enabling swift disease detection and widespread screening. This article provides a comprehensive review of the working principles and fabrication processes of digital microfluidic chips based on electrowetting on dielectric method. It details the latest research progress in the areas of nucleic acids, proteins, and cells, organizes the commercialization of digital microfluidics technology, and finally discusses the current challenges and future directions of digital microfluidic chips.
快速准确的诊断技术对于疾病的早期检测和诊断至关重要。基于介电电润湿的数字微流控技术,凭借其高精度检测和高通量筛选能力,显著提高了早期疾病诊断和个性化治疗的准确性和效率,实现了疾病的快速检测和广泛筛查。本文全面综述了基于介电电润湿方法的数字微流控芯片的工作原理和制造工艺。详细介绍了在核酸、蛋白质和细胞领域的最新研究进展,梳理了数字微流控技术的商业化情况,最后讨论了数字微流控芯片当前面临的挑战和未来发展方向。