Center for Biomedical Engineering and Department of Chemical and Nuclear Engineering, University of New Mexico, Albuquerque, New Mexico 87131, USA.
ACS Appl Mater Interfaces. 2009 Jan;1(1):124-9. doi: 10.1021/am800043z.
We have fabricated paper- and nitrocellulose-based lateral-flow devices that are shaped in two dimensions by a computer-controlled knife. The resulting star, candelabra, and other structures are spotted with multiple bioassay reagents to produce multiplex lateral-flow assays. We have also fabricated laminar composites in which porous nitrocellulose media are sandwiched between vinyl and polyester plastic films. This minimizes evaporation, protects assay surfaces from contamination and dehydration, and eliminates the need for the conventional hard plastic cassette holders that are typically used to package commercial lateral-flow diagnostic strips. The reported fabrication method is novel, low-cost, and well-suited to (i) fabrication and adoption in resource-poor areas, (ii) prototype development, (iii) high-volume manufacturing, and (iii) improving rates of operator error.
我们已经制造出基于纸张和硝酸纤维素的二维侧向流动装置,这些装置是由计算机控制的刀具成型的。由此产生的星形、烛台形和其他结构上点有多种生物分析试剂,从而产生多重侧向流动分析。我们还制造了层压复合材料,其中多孔硝酸纤维素介质夹在乙烯基和聚酯塑料薄膜之间。这最大限度地减少了蒸发,保护了分析表面免受污染和脱水,并消除了通常用于包装商业侧向流动诊断条的传统硬塑料盒的需要。所报道的制造方法是新颖的、低成本的,非常适合(i)在资源匮乏地区的制造和采用,(ii)原型开发,(iii)大规模制造,以及(iii)提高操作人员错误率。