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Label-free detection of protein released during platelet activation by CNT-enhanced love mode SAW sensors

机译:通过CNT增强的Love模式SAW传感器对血小板活化过程中释放的蛋白质进行无标记检测

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Platelet-rich plasma (PRP) has been applied in a series of clinical treatments. PRP contains high-concentrated platelets, which, when activated, could secret a variety of growth factors and cytokines, to promote and/or enhance healing of injured tissues. Non-activated platelets suspension could be prepared by an isolation method of centrifugation and washing currently. However, it is not clear whether platelets, if any, are already activated during this process and there is no simple method to monitor their activation accordingly. Shear-Horizontal Surface Acoustic Wave sensors (SH-SAW, Love Mode) are promising in fundamental biology as well as biomedical engineering, detecting cell behaviors in liquid in a non-invasive, simple and quantitative manner. In this study, Love mode sensors are adopted for the label-free detection of protein secreted by platelets. Carbon nanotube (CNT) is reported as an advisable platform of both non-specific protein adsorption and specific protein binding. For further improvement of Love mode sensor performance, novel CNT-coated parylene-C film is prepared on its surface as both the acoustic-wave-guiding layer and bio-interface layer. The S21 loss curves of Love mode sensors were recorded and the corresponding resonance frequencies were extracted. The results showed that the CNT-enhanced sensor possessed an increased resonance frequency shift when compared to normal sensor with single parylene-C film under identical collagen concentrations. Then, the modified sensor is used for label-free detection of protein released by various concentrations of platelets. The results revealed high sensitivity and consistency, indicating the potential of CNT-enhanced Love mode sensors in cell-based applications.
机译:富血小板血浆(PRP)已应用于一系列临床治疗中。 PRP含有高浓度的血小板,血小板在激活后会分泌多种生长因子和细胞因子,从而促进和/或增强受伤组织的愈合。目前可以通过离心和洗涤的分离方法来制备未活化的血小板悬浮液。但是,尚不清楚在此过程中是否已经激活了血小板(如果有的话),因此没有简单的方法来相应地监视其激活。剪切-水平表面声波传感器(SH-SAW,Love模式)在基础生物学和生物医学工程领域很有前景,能够以无创,简单和定量的方式检测液体中的细胞行为。在这项研究中,采用Love模式传感器对血小板分泌的蛋白质进行无标记检测。碳纳米管(CNT)被报告为非特异性蛋白质吸附和特异性蛋白质结合的理想平台。为了进一步提高Love模式传感器的性能,在其表面上制备了新型的CNT涂覆的聚对二甲苯-C膜作为声波引导层和生物界面层。记录Love模式传感器的S21损耗曲线,并提取相应的共振频率。结果表明,在相同的胶原蛋白浓度下,与具有单个聚对二甲苯-C膜的普通传感器相比,增强了CNT的传感器具有增加的共振频率偏移。然后,将改进的传感器用于无标签检测各种浓度的血小板释放的蛋白质。结果显示出很高的灵敏度和一致性,表明在基于细胞的应用中增强CNT的Love模式传感器的潜力。

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