利用便携式微流体平台改进癌症诊断和监测

L. Pilarski, Sophia Adamia, P. Pilarski, R. Prakash, J. Lauzon, C. Backhouse
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引用次数: 8

摘要

微流控芯片提供了快速和准确的诊断和监测工具,价格便宜,自动化的承诺。测试,否则需要昂贵的仪器和消耗有价值的试剂可以在微流控芯片上实现,成本的一小部分,速度显著提高。小型化提供了多种好处,可以在一个芯片上进行多次测试,需要微小的组织样本和快速的反应时间。更复杂的微流控芯片将能够进行样品处理,然后进行细胞或分子分离、分子分析和测试结果的读出。集成微流体的集成平台为医疗机构、偏远地区或家中的“关注点”测试提供便携式测试设备。这些设备可能会增加卫生系统内获得复杂检测的机会,同时降低成本并提高护理质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved Diagnosis and Monitoring of Cancer Using Portable Microfluidics Platforms
Microfluidics chips offer the promise of fast and accurate diagnostic and monitoring tools that are inexpensive and automated. Tests that otherwise require expensive instrumentation and consume valuable reagents can be implemented on microfluidic chips for a fraction of the cost with dramatic improvement in speed. Minaturization offers multiple benefits, enabling multiple tests on one chip, requiring tiny tissue samples and fast reaction times for picoliter volumes. More complex microfluidics chips will be able to carry out sample processing followed by cell or molecule fractionation, molecular analysis and readout of the test result. Integrated platforms incorporating microfluidics offer portable testing devices for "point of concern" testing in health care facilities, in remote areas or in the home. These devices are likely to increase access to sophisticated testing within the health system while decreasing costs and improving the quality of care.
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