University of California, Irvine, Irvine, CA 92697, USA.
Lab Chip. 2010 Feb 7;10(3):363-71. doi: 10.1039/b913219h. Epub 2009 Nov 23.
The applications of microfluidic technologies in medical diagnostics continue to increase, particularly in the field of nucleic acid diagnostics. While much attention has been focused on the development of nucleic acid amplification and detection platforms, sample preparation is often taken for granted or ignored all together. Specifically, little or no consideration is paid to the development of microfluidic systems that efficiently extract nucleic acids from biological samples. Here, a centrifugal microfluidic platform for mechanical sample lysis and homogenization is presented. The system performs sample lysis through a magnetically actuated bead-beating system followed by a centrifugal clarification step. The supernatant is then transferred for extraction using a unique siphon. Several other new microfluidic functions are implemented on this centrifugal platform as well, including sample distribution, a unique hydraulic capillary valve, and self-venting. Additionally, the improved system has features with a small footprint designed specifically for integration with further downstream processing steps. Biological validation of the platform is performed using Bacillus subtilis spores and clinical samples (nasopharyngeal aspirates) for respiratory virus detection. The platform was found to be as efficient as in-tube bead-beating lysis and homogenization for nucleic acid extraction, and capable of processing 4 samples in batch to near PCR-ready products in under 6 min.
微流控技术在医学诊断中的应用不断增加,特别是在核酸诊断领域。虽然人们已经关注了核酸扩增和检测平台的发展,但样本制备通常被认为是理所当然的,或者被完全忽略。具体来说,很少或根本没有考虑开发能够从生物样本中高效提取核酸的微流控系统。在这里,提出了一种用于机械样品裂解和均化的离心微流控平台。该系统通过磁驱动的珠击系统进行样品裂解,然后进行离心澄清步骤。然后通过独特的虹吸管将上清液转移进行提取。该离心平台还实现了其他几个新的微流控功能,包括样品分配、独特的液压毛细管阀和自通风。此外,改进后的系统具有占地面积小的特点,专门设计用于与进一步的下游处理步骤集成。通过枯草芽孢杆菌孢子和临床样本(鼻咽抽吸物)进行生物学验证,以检测呼吸道病毒。该平台在核酸提取方面与管内珠击裂解和均化一样高效,并且能够在 6 分钟内批量处理 4 个样本,得到接近 PCR 准备好的产物。