School of Chemical Engineering, University of Campinas, 13083-852 Campinas, Brazil.
National Laboratory of Nanotechnology for Agribusiness (LNNA), Embrapa Instrumentation, 13560-970 São Carlos, Brazil.
Cells. 2020 Jun 26;9(6):1563. doi: 10.3390/cells9061563.
The increasing need for point-of-care diagnosis has sparked the development of label-free sensing platforms, some of which are based on impedance measurements with biological cells. Here, interdigitated electrodes were functionalized with layer-by-layer (LbL) films of hyaluronan (HA) and chitosan (CHI) to detect prostatic tumor cells (PC3 line). The deposition of LbL films was confirmed with atomic force microscopy and polarization-modulated infrared reflection absorption spectroscopy (PM-IRRAS), which featured the vibrational modes of the HA top layer capable of interacting specifically with glycoprotein CD44 receptors overexpressed in tumor cells. Though the CHI/HA LbL films cannot be considered as a traditional biosensor due to their limited selectivity, it was possible to distinguish prostate tumor cells in the range from 50 to 600 cells/µL in in vitro experiments with impedance spectroscopy. This was achieved by treating the impedance data with information visualization methods, which confirmed the distinguishing ability of the films by observing the absence of false positives in a series of control experiments. The CD44-HA interactions may, therefore, be exploited in clinical analyses and point-of-care diagnostics for cancer, particularly if computational methods are used to process the data.
对即时诊断的需求不断增加,推动了无标记传感平台的发展,其中一些平台基于对生物细胞的阻抗测量。在这里,叉指电极通过透明质酸(HA)和壳聚糖(CHI)的层层(LbL)薄膜进行功能化,以检测前列腺肿瘤细胞(PC3 系)。原子力显微镜和偏振调制红外反射吸收光谱(PM-IRRAS)证实了 LbL 薄膜的沉积,其具有 HA 顶层的振动模式,能够与肿瘤细胞中过表达的糖蛋白 CD44 受体特异性相互作用。尽管由于其选择性有限,CHI/HA LbL 薄膜不能被视为传统的生物传感器,但通过使用阻抗谱在体外实验中从 50 到 600 个细胞/µL 的范围内区分前列腺肿瘤细胞是可能的。这是通过用信息可视化方法处理阻抗数据来实现的,该方法通过观察一系列对照实验中没有假阳性来证实薄膜的区分能力。因此,CD44-HA 相互作用可用于癌症的临床分析和即时诊断,特别是如果使用计算方法来处理数据。