Hungarian Research Network, Biological Research Centre, Institute of Biophysics, 6726 Szeged, Hungary.
Faculty of Science and Informatics, University of Szeged, 6720 Szeged, Hungary.
Biosensors (Basel). 2024 Aug 29;14(9):421. doi: 10.3390/bios14090421.
Here, we report a rapid and accurate optical method for detecting cells from liquid samples in a label-free manner. The working principle of the method is based on the interference of parts of a conical laser beam, coming from a single-mode optical fiber directly, and reflected from a flat glass surface. The glass is functionalized by antibodies against the cells to be detected from the liquid sample. Cells bound to that surface modify the reflected beam, and hence, change the resulting interference pattern, too. By registering and interpreting the variation in the image, the presence of cells from the sample can be detected. As for a demonstration, cell suspensions from a U937 cell line were used in glass chambers functionalized by antibodies (TMG6-5 (mIgG1)) to which the cells specifically bind. The limit of detection (LOD) of the method was also estimated. This proof-of-concept setup offers a cost-effective and easy-to-use way of rapid and specific detection of any type of cells (including pathogens) from suspensions (e.g., body fluids). The possible portability of the device predicts its applicability as a rapid test in clinical diagnostics.
在这里,我们报告了一种快速、准确的光学方法,可用于无标记地检测液体样本中的细胞。该方法的工作原理基于部分锥形激光束的干涉,这些激光束直接来自单模光纤,并从平面玻璃表面反射。玻璃经过针对要从液体样本中检测的细胞的抗体功能化处理。与该表面结合的细胞修饰了反射光束,从而也改变了产生的干涉图案。通过记录和解释图像的变化,可以检测到来自样本的细胞的存在。作为演示,使用 U937 细胞系的细胞悬浮液在经过抗体(TMG6-5(mIgG1))功能化的玻璃室中进行实验,细胞会特异性地与抗体结合。该方法的检测限(LOD)也进行了估计。该概念验证设置提供了一种经济高效且易于使用的方法,可快速、特异地从悬浮液(例如体液)中检测任何类型的细胞(包括病原体)。该设备的便携性预测了其在临床诊断中的快速测试中的适用性。