Yang Xi, Luo Yanhua, Liu Yiling, Gong Chaoyang, Wang Yanqiong, Rao Yun-Jiang, Peng Gang-Ding, Gong Yuan
Key Laboratory of Optical Fiber Sensing and Communications (Ministry of Education of China), University of Electronic Science and Technology of China, No. 2006, Xiyuan Ave., Chengdu, 611731, China.
School of Electrical Engineering and Telecommunications, University of New South Wales, Sydney, NSW 2052, Australia.
Lab Chip. 2020 Mar 3;20(5):923-930. doi: 10.1039/c9lc01216h.
Disposable biosensors are of great importance in disease diagnosis due to their inherent merits of no cross-contamination and ease of use. Optofluidic laser (OFL) sensors are a new category of sensitive biosensors; however, it is challenging to cost-effectively mass-produce them to achieve disposability. Here, we report a disposable optofluidic laser immunosensor based on thin-walled hollow optical fibers (HOFs). Using a fiber draw tower, the fabrication parameters, including drawing speed and gas flow rate, are explored, and the HOF geometry is precisely controlled, which allows identical laser microring resonators to be distributed along the fibers. The disposable OFL immunosensor detects the protein concentration in the HOF through a wash-free immunoassay. Enabled by the disposable sensors, the statistical characteristics of 80 tests for each concentration greatly reduces the bioassay uncertainty. A low coefficient of variation (CV) of 3.3% confirms the high reproducibility of the disposable HOF-OFL sensors, and the mean of the normal distribution of the logarithmic OFL intensity serves as the sensing output. A limit of detection of 11 nM within a short assay time of 15 min is achieved. These disposable immunosensors possess the advantages of low cost, high reproducibility, fast assay, and low-volume consumption of sample and reagents. We believe that this work will inspire disposable optofluidics through the mass production of multifunctional microstructured optical fibers.
一次性生物传感器因其无交叉污染和使用方便的固有优点,在疾病诊断中具有重要意义。光流体激光(OFL)传感器是一类新型的灵敏生物传感器;然而,要以具有成本效益的方式大规模生产以实现一次性使用具有挑战性。在此,我们报告一种基于薄壁空心光纤(HOF) 的一次性光流体激光免疫传感器。利用拉丝塔,探索了包括拉丝速度和气体流速在内的制造参数,并精确控制了HOF的几何形状,这使得相同的激光微环谐振器能够沿光纤分布。该一次性OFL免疫传感器通过免洗免疫测定法检测HOF中的蛋白质浓度。借助一次性传感器,每种浓度进行80次测试的统计特性大大降低了生物测定的不确定性。3.3% 的低变异系数(CV)证实了一次性HOF - OFL传感器的高重现性,对数OFL强度正态分布的均值用作传感输出。在15分钟的短检测时间内实现了11 nM的检测限。这些一次性免疫传感器具有低成本、高重现性、检测快速以及样品和试剂消耗量低的优点。我们相信这项工作将通过多功能微结构光纤的大规模生产激发一次性光流体技术的发展。