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Multifunctional, inexpensive, and reusable nanoparticle-printed biochip for cell manipulation and diagnosis

机译:用于细胞操作和诊断的多功能、廉价且可重复使用的纳米颗粒打印生物芯片

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摘要

Isolation and characterization of rare cells and molecules from a heterogeneous population is of critical importance in diagnosis of common lethal diseases such as malaria, tuberculosis, HIV, and cancer. For the developing world, point-of-care (POC) diagnostics design must account for limited funds, modest public health infrastructure, and low power availability. To address these challenges, here we integrate microfluidics, electronics, and inkjet printing to build an ultra-low-cost, rapid, and miniaturized lab-on-a-chip (LOC) platform. This platform can perform label-free and rapid single-cell capture, efficient cellular manipulation, rare-cell isolation, selective analytical separation of biological species, sorting, concentration, positioning, enumeration, and characterization. The miniaturized format allows for small sample and reagent volumes. By keeping the electronics separate from microfluidic chips, the former can be reused and device lifetime is extended. Perhaps most notably, the device manufacturing is significantly less expensive, timeconsuming, and complex than traditional LOC platforms, requiring only an inkjet printer rather than skilled personnel and clean-room facilities. Production only takes 20 min (vs. up to weeks) and $0.01- an unprecedented cost in clinical diagnostics. The platform works based on intrinsic physical characteristics of biomolecules (e.g., size and polarizability). We demonstrate biomedical applications and verify cell viability in our platform, whose multiplexing and integration of numerous steps and external analyses enhance its application in the clinic, including by nonspecialists. Through its massive cost reduction and usability we anticipate that our platform will enable greater access to diagnostic facilities in developed countries as well as POC diagnostics in resource-poor and developing countries.
机译:从异质性群体中分离和表征稀有细胞和分子对于诊断疟疾、结核病、艾滋病毒和癌症等常见致命疾病至关重要。对于发展中国家来说,床旁 (POC) 诊断设计必须考虑到资金有限、公共卫生基础设施有限和电力可用性低的问题。为了应对这些挑战,我们在这里整合了微流控、电子和喷墨打印,以构建一个超低成本、快速和小型化的芯片实验室 (LOC) 平台。该平台可以进行无标记和快速的单细胞捕获、高效的细胞操作、稀有细胞分离、生物物种的选择性分析分离、分选、浓缩、定位、计数和表征。小型化形式允许小体积的样品和试剂。通过将电子元件与微流控芯片分开,前者可以重复使用并延长器件寿命。也许最值得注意的是,与传统的 LOC 平台相比,设备制造成本、耗时和复杂得多,只需要一台喷墨打印机,而不是熟练的人员和洁净室设施。生产只需 20 分钟(而长达数周)和 0.01 美元——这是临床诊断史无前例的成本。该平台基于生物分子的固有物理特性(例如,大小和极化率)工作。我们在我们的平台中展示了生物医学应用并验证了细胞活力,其多路复用和集成了众多步骤和外部分析,增强了其在临床中的应用,包括非专业人士。通过其巨大的成本降低和可用性,我们预计我们的平台将使发达国家的诊断设施以及资源匮乏和发展中国家的POC诊断能够获得更多机会。

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