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MXene/聚合物点修饰的柔性传感器,用于具有可调弹性模量、孔隙率和电导率的癌细胞响应水凝胶。

MXene/polymer dot-decorated flexible sensor for cancer cell-responsive hydrogel with tunable elastic modulus, porosity, and conductivity.

机构信息

Department of IT and Energy Convergence, (BK21 FOUR), Korea National University of Transportation, Chungju, 27469, Republic of Korea.

Department of Chemical and Biological Engineering, Korea National University of Transportation, Chungju, 27469, Republic of Korea.

出版信息

Talanta. 2025 Jan 1;281:126874. doi: 10.1016/j.talanta.2024.126874. Epub 2024 Sep 14.

Abstract

This study reports a facile strategy for cancer cell modulated mechanically and electronically tunable hydrogel based on MXene-immobilized hyaluronic acid polymer dot (M-PD). Elevated levels of reactive oxygen species (ROS), such as HO in cancer cells cleave MXene owing to the oxygen-titanium affinity of TiCT, altering the physico-mechanical, electrochemical, and fluorescence (FL) properties of the sensor. The HO-induced cleavage of M-PD in the hydrogel causes the quenched FL intensity by the Forster resonance energy transfer effect (FRET) to recover, alongside an increase in pore size, influencing shifts in hydrogen bonding and inducing viscoelastic changes in the flexible sensor. This caused physico-mechanical alterations in the sensor, modified the viscosity (G' decreased by 98.7%), and enhanced the stretchability. Further, in vitro electrochemical impedance spectroscopy (EIS) highlighted the distinct results for cancer cells (B16F10: 8.10 kΩ, MDA-MB-231: 8.30 kΩ), and normal cells (CHO-K1: 3.40 kΩ), showcasing electrochemical differentiation between these cells. Additionally, the flexible M-PD hydrogel sensor exhibits high sensitivity, with detection limits of 2.58 cells/well (CHO-K1), 0.96 cells/well (B16F10), and 1.20 cells/well (MDA-MB-231). Finally, real-time cancer monitoring was achieved by integrating the M-PD hydrogel with a wireless setup on a smartphone.

摘要

本研究报告了一种基于 MXene 固定透明质酸聚合物点 (M-PD) 的简便策略,用于调节癌细胞的机械和电子性能。在癌细胞中,高水平的活性氧 (ROS),如 HO,由于 TiCT 中的氧钛亲和力,会使 MXene 发生断裂,从而改变传感器的物理机械、电化学和荧光 (FL) 特性。水凝胶中 M-PD 的 HO 诱导断裂导致通过福斯特共振能量转移效应 (FRET) 猝灭的 FL 强度恢复,同时增加孔径,影响氢键的变化并诱导柔性传感器的粘弹性变化。这导致传感器的物理机械性质发生改变,改变了粘度(G'降低了 98.7%),并提高了拉伸性。此外,体外电化学阻抗谱 (EIS) 突出了癌细胞(B16F10:8.10 kΩ,MDA-MB-231:8.30 kΩ)和正常细胞(CHO-K1:3.40 kΩ)之间的明显差异,展示了这些细胞之间的电化学差异。此外,柔性 M-PD 水凝胶传感器具有高灵敏度,检测限分别为 2.58 个细胞/孔(CHO-K1)、0.96 个细胞/孔(B16F10)和 1.20 个细胞/孔(MDA-MB-231)。最后,通过将 M-PD 水凝胶与智能手机上的无线设置集成,实现了实时癌症监测。

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