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基于纤维素的 96 孔板垂直流下拉检测法的开发。

Development of a cellulose-based 96-well plate vertical flow pull-down assay.

机构信息

Antimicrobial Resistance Interdisciplinary Research Group (AMR-IRG), Singapore-MIT Alliance in Research and Technology (SMART), 1 CREATE Way, 138602, Singapore.

Department of Chemical Engineering, Massachusetts Institute of Technology (MIT), 25 Ames Street, Building 66, Cambridge, MA 02139, USA.

出版信息

Anal Methods. 2023 Jul 20;15(28):3483-3489. doi: 10.1039/d3ay00614j.

Abstract

The abundance and low production cost of biomaterial cellulose paper have attracted attention for many applications. Point-of-care (PoC) diagnostic tests have been successfully developed using patterned cellulose paper. Although PoC diagnostic tests are rapid and simple to perform, their sample processing throughput is limited, allowing for only one sample to be evaluated at a time, which restricts potential applications. Thus, it was appealing to expand cellulose-based PoC tests to high-throughput versions to increase their applicability. Here, we present the development of a high-throughput cellulose-based 96-well plate vertical flow pull-down assay that can process 96 tests, is easy to prepare, and can be customized for different detection targets. The device has two key features: (i) patterned cellulose paper for 96 tests that do not require pre-immobilization of capturing reagents, and (ii) reusable sturdy housing. We believe that a variety of applications, including laboratory testing, population surveillance tests, and sizable clinical trials for diagnostic tests, can benefit from the adoption of this cellulose-based 96-well plate assay.

摘要

生物材料纤维素纸的丰富和低成本生产引起了人们的关注,可用于许多应用。基于图案化纤维素纸的即时(Point-of-care,PoC)诊断测试已经成功开发。虽然 PoC 诊断测试快速且易于执行,但它们的样本处理通量有限,一次只能评估一个样本,这限制了其潜在应用。因此,将基于纤维素的 PoC 测试扩展到高通量版本以提高其适用性是很有吸引力的。在这里,我们提出了一种高通量基于纤维素的 96 孔板垂直流下拉检测方法的开发,该方法可以处理 96 个测试,易于制备,并可针对不同的检测目标进行定制。该设备具有两个关键特征:(i)用于 96 个测试的图案化纤维素纸,无需预先固定捕获试剂,以及(ii)可重复使用的坚固外壳。我们相信,包括实验室测试、人群监测测试以及用于诊断测试的大规模临床试验在内的各种应用都将受益于这种基于纤维素的 96 孔板检测方法。

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