Rodriguez-Trujillo Romen, Castillo-Fernandez Oscar, Garrido Miquel, Arundell Martin, Valencia Antoni, Gomila Gabriel
Institut de Bioenginyeria de Catalunya (IBEC), C/ Baldiri Reixac 13, 08028 Barcelona, Spain.
Biosens Bioelectron. 2008 Oct 15;24(2):290-6. doi: 10.1016/j.bios.2008.04.005. Epub 2008 Apr 14.
This article presents the fabrication and characterisation of a high-speed detection micro-Coulter counter with two-dimensional (2D) adjustable aperture and differential impedance detection. The developed device has been fabricated from biocompatible and transparent materials (polymer and glass) and uses the principle of hydrodynamic focusing in two dimensions. The use of a conductive solution for the sample flux and non-conductive solutions for the focalising fluxes provides an adjustable sample flow where particles are aligned and the resistive response concentrated, consequently enhancing the sensitivity and versatility of the device. High-speed counting of 20 microm polystyrene particles and 5 microm yeast cells with a rate of up to 1,000 particles/s has been demonstrated. Two-dimensional focusing conditions have been used in devices with physical cross-sectional areas of 180 microm x 65 microm and 100 microm x 43 microm, respectively, in which particles resulted undetectable in the absence of focusing. The 2D-focusing conditions have provided, in addition, increased detection sensitivity by a factor of 1.6 as compared to 1D-focusing conditions.
本文介绍了一种具有二维(2D)可调孔径和差分阻抗检测功能的高速检测微库尔特计数器的制造与表征。所开发的器件由生物相容性和透明材料(聚合物和玻璃)制成,并采用二维流体动力聚焦原理。使用导电溶液作为样品流,非导电溶液作为聚焦流,可提供可调的样品流,使颗粒排列整齐,电阻响应集中,从而提高了器件的灵敏度和通用性。已证明能够以高达1000个颗粒/秒的速率对20微米的聚苯乙烯颗粒和5微米的酵母细胞进行高速计数。分别在物理横截面积为180微米×65微米和100微米×43微米的器件中使用了二维聚焦条件,在没有聚焦的情况下,颗粒在这些器件中无法检测到。此外,与一维聚焦条件相比,二维聚焦条件使检测灵敏度提高了1.6倍。