Department of Biomedical Engineering, Boston University, Boston, MA 02215, USA.
Biomed Microdevices. 2010 Apr;12(2):353-9. doi: 10.1007/s10544-009-9391-8.
Here we report the demonstration of an integrated microfluidic chip that performs helicase dependent amplification (HDA) on samples containing live bacteria. Combined chip-based sample preparation and isothermal amplification are attractive for world health applications, since the need for instrumentation to control flow rate and temperature changes are reduced or eliminated. Bacteria lysis, nucleic acid extraction, and DNA amplification with a fluorescent reporter are incorporated into a disposable polymer cartridge format. Smart passive fluidic control using a flap valve and a hydrophobic vent (with a nanoporous PTFE membrane) with a simple on-chip mixer eliminates multiple user operations. The device is able to detect as few as ten colony forming units (CFU) of E. coli in growth medium.
在这里,我们报告了一种集成微流控芯片的演示,该芯片可对含有活细菌的样品进行解旋酶依赖性扩增 (HDA)。基于芯片的样品制备和等温扩增的结合对于全球健康应用具有吸引力,因为需要仪器来控制流速和温度变化的情况减少或消除了。细菌裂解、核酸提取和带有荧光报告物的 DNA 扩增被整合到一次性聚合物盒式格式中。使用瓣阀和疏水阀(带有纳米多孔 PTFE 膜)的智能被动流体控制以及简单的片上混合器消除了多个用户操作。该装置能够检测到生长培养基中低至 10 个大肠杆菌菌落形成单位 (CFU) 的目标。