光敏剂
光热治疗
光动力疗法
硝基还原酶
垂直波分
荧光
体内
化学
癌症研究
材料科学
纳米技术
光化学
光学
医学
前药
生物化学
生物
物理
有机化学
视网膜
生物技术
脉络膜新生血管
作者
Dan Shen,Shangli Ding,Quan Lu,Zhengjun Chen,Lingxin Chen,Jiajia Lv,Jie Gao,Zeli Yuan
出处
期刊:ACS omega
[American Chemical Society]
日期:2024-07-07
卷期号:9 (28): 30685-30697
标识
DOI:10.1021/acsomega.4c03098
摘要
Photothermal therapy synergized with photodynamic therapy for the treatment of tumors has emerged as a promising strategy. However, designing photosensitizers with both high photothermal efficiency and high photodynamic performance remains challenging. In contrast, the strategy of rationalizing the design of photosensitizers using the physiological properties of tumors to improve the photon utilization of photosensitizers during phototherapy is more advantageous than the approach of endowing a single photosensitizer with complex functions. Herein, we propose a molecular design (CyNP) to convert from photothermal therapy to photodynamic synergistic photothermal therapy based on the prevalent properties of hypoxic tumors. In the normoxic region of tumors, the deactivation pathway of CyNP excited state is mainly the conversion of photon energy to thermal energy; in the hypoxic region of tumors, CyNP is reduced to CyNH by nitroreductase, and the deactivation pathway mainly includes radiation leap, energy transfer between CyNP and oxygen, and conversion of photons energy to heat energy. This strategy enables real-time fluorescence detection of hypoxic tumors, and it also provides dual-mode treatment for photothermal and photodynamic therapy of tumors, achieving good therapeutic effects in vivo tumor treatment. Our study achieves more efficient tumor photoablation and provides a reference for the design ideas of smart photosensitizers.
科研通智能强力驱动
Strongly Powered by AbleSci AI