活性氧
肿瘤微环境
光热治疗
光热效应
材料科学
纳米技术
自愈水凝胶
肿瘤缺氧
化学
生物医学工程
生物物理学
癌症研究
放射治疗
生物化学
肿瘤细胞
外科
高分子化学
医学
生物
作者
Hyeong Jun Jo,Gwang‐Bum Im,Akhmad Irhas Robby,Insik In,Suk Ho Bhang,Arnab Shit,Sung Young Park
标识
DOI:10.1016/j.cej.2022.140729
摘要
This study illustrates the design of a cancer microenvironment-selective detection system via the monitoring of wireless pressure and strain sensing response from a reactive oxygen species (ROS)-responsive carbon dot (CD)-embedded conductive hydrogel. ROS scavenging activity and photothermal therapy (PTT) were employed to eliminate the tumor condition. The ROS-responsive hydrogel (dsCD-Hydrogel) contained diselenide-crosslinked CD, which was dismantled in the cancer microenvironment. After being free from aggregation, the fluorescence intensity, charge carrier density, and hydrogen bonding interactions were increased. As a result, the conductivity, mechanical stretchability, and strain-pressure responses were enhanced by 52%, 122%, and 91%, respectively. The dsCD-Hydrogel produced distinct electronic signals in the presence of cancer cells according to the higher strain–pressure sensitivity in the handwriting experiment compared to normal cells. Ex-situ measurements also revealed an excellent pressure-sensing response in tumor-carrying mice. The ROS scavenging activity of the dsCD-Hydrogel decreased tumor volume. Furthermore, NIR irradiation via PTT abolished the tumor, which was verified by the downregulation of tumor hypoxia by vascular endothelial growth factor (VEGF) and hypoxia-inducible factor 1α (HIF-1α) expression. To ease the monitoring procedure and acquire real-time conductivity and pressure profiles on cellphones, a wireless sensor device was deployed. Overall, a theragnostic sensor based on strain–pressure hydrogel that exhibits direct anticancer activity via PTT was successfully constructed.
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