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An irregular-shaped homogeneous refractive index model for interpretation of the surface plasmon resonance response from living cell attachment

机译:用于解释活细胞附着的表面等离子体共振响应的不规则形状的均质折射率模型

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摘要

Surface plasmon resonance (SPR)-based biosensors have recently been applied for cell detection. For quantitative interpretation of the SPR response from cell activities, an irregular-shaped homogeneous refractive index model was established. A simple but quantitative mathematical formalism was derived from the model for interpretation of the SPR response from living cell attachment. To validate the mathematical formalism, both SPR and microscopic imaging were used to monitor the dynamic attachment process of HeLa cells to the substrate for >48 h. The interpretation of the SPR response agreed with the cellular morphology changes observed by microscopy, demonstrating the validity of the theoretical SPR model. The SPR response further revealed that the dynamic attachment process of HeLa cells consisted of two phases: a spreading phase and a proliferation phase, with a negative-exponential confluency change of 5.28% and 24.56%, respectively. Additionally, quantitative SPR was applied for the detection of anticancer drug action kinetics. The dynamic attachment process of HeLa cells was monitored on treatment with different concentrations of Paclitaxel for >48 h. We observed distinct cellular attachment kinetics, revealing dose-dependent inhibition of HeLa cell proliferation by Paclitaxel.
机译:基于表面等离振子共振(SPR)的生物传感器最近已应用于细胞检测。为了定量解释细胞活动引起的SPR反应,建立了不规则形状的均质折射率模型。从该模型中得出了一个简单但定量的数学形式主义,用于解释活细胞附着引起的SPR反应。为了验证数学形式,SPR和显微成像均用于监测HeLa细胞与基底的动态附着过程> 48小时。对SPR反应的解释与通过显微镜观察到的细胞形态变化相吻合,证明了理论SPR模型的有效性。 SPR响应进一步揭示了HeLa细胞的动态附着过程包括两个阶段:扩散阶段和增殖阶段,负指数汇合变化分别为5.28%和24.56%。此外,定量SPR用于检测抗癌药的动力学。在用不同浓度的紫杉醇处理> 48小时后,监测HeLa细胞的动态附着过程。我们观察到了独特的细胞附着动力学,揭示了紫杉醇对HeLa细胞增殖的剂量依赖性抑制作用。

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