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通过胶带控制侧向流动测试底物上的毛细管流速。

Controlling Capillary Flow Rate on Lateral Flow Test Substrates by Tape.

作者信息

Xiao Zhiqing, Yang Yuqian, Zhang Xingwei, Guo Weijin

机构信息

Department of Biomedical Engineering, Shantou Univeristy, Shantou 515063, China.

Department of Mechatronic Engineering, Shantou Univeristy, Shantou 515063, China.

出版信息

Micromachines (Basel). 2021 May 16;12(5):562. doi: 10.3390/mi12050562.

Abstract

Controlling capillary flow rate of sample liquid is of high interest for lateral flow tests, since the flow rate can affect the dissolution and mixing of the immunoreagents and the efficiency of immunoreactions. Here we develop a facile method to adjust the capillary flow rate on lateral flow test substrates by using tape to cover the surface of substrates. We test this method on the traditional lateral flow test substrate-nitrocellulose and a novel lateral flow test substrate-synthetic paper, which is a porous media made by interlocked off-stoichiometry thiol-ene (OSTE) micropillars. We found that after the surface was covered by tape, the average flow rate decreased to 61% of the original flow rate on nitrocellulose, while the average flow rate increased to at least 320% of the original flow rate on synthetic paper. More interesting, besides the increase of flow rate, the volume capacity of synthetic paper also increases after covered by tape. Furthermore, we investigated the influence of length and position of tape on the capillary flow rate for nitrocellulose. A longer tape will lead to a smaller flow rate. The influence of tape of same length on the flow rate is bigger when the tape is placed closer to the loading pad. These results can help in the flow rate control on lateral flow test substrates, and potentially improve the performance of lateral flow tests.

摘要

对于侧向流动测试而言,控制样品液体的毛细管流速至关重要,因为流速会影响免疫试剂的溶解和混合以及免疫反应的效率。在此,我们开发了一种简便的方法,通过用胶带覆盖底物表面来调节侧向流动测试底物上的毛细管流速。我们在传统的侧向流动测试底物——硝酸纤维素以及一种新型的侧向流动测试底物——合成纸上测试了该方法,合成纸是一种由互锁的非化学计量硫醇-烯(OSTE)微柱制成的多孔介质。我们发现,用胶带覆盖表面后,硝酸纤维素上的平均流速降至原来的61%,而合成纸上的平均流速增加到原来流速的至少320%。更有趣的是,除了流速增加外,合成纸用胶带覆盖后的体积容量也增加了。此外,我们研究了胶带的长度和位置对硝酸纤维素毛细管流速的影响。胶带越长,流速越小。当胶带放置得离加样垫越近时,相同长度的胶带对流速的影响越大。这些结果有助于控制侧向流动测试底物上的流速,并有可能提高侧向流动测试的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f33c/8156355/7aa91f3ca8af/micromachines-12-00562-g0A1.jpg

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