光敏剂
材料科学
光动力疗法
肿瘤缺氧
光热治疗
单线态氧
体内
氯
纳米技术
化学
光化学
生物物理学
氧气
光学
荧光
放射治疗
医学
生物
有机化学
物理
生物技术
内科学
作者
Lanqing Li,Chen Shao,Tao Liu,Zhicong Chao,Huanle Chen,Fan Xiao,Huamei He,Zixiang Wei,Yulin Zhu,Huan Wang,Xindan Zhang,Yating Wen,Bing Yang,Feng He,Leilei Tian
标识
DOI:10.1002/adma.202003471
摘要
Abstract As a common feature in a majority of malignant tumors, hypoxia has become the Achilles’ heel of photodynamic therapy (PDT). The development of type‐I photosensitizers that show hypoxia‐tolerant PDT efficiency provides a straightforward way to address this issue. However, type‐I PDT materials have rarely been discovered. Herein, a π‐conjugated molecule with A–D–A configuration, COi6‐4Cl, is reported. The H 2 O‐dispersible nanoparticle of COi6‐4Cl can be activated by an 880 nm laser, and displays hypoxia‐tolerant type I/II combined PDT capability, and more notably, a high NIR‐II fluorescence with a quantum yield over 5%. Moreover, COi6‐4Cl shows a negligible photothermal conversion effect. The non‐radiative decay of COi6‐4Cl is suppressed in the dispersed and aggregated state due to the restricted molecular vibrations and distinct intermolecular steric hindrance induced by its four bulky side chains. These features make COi6‐4Cl a distinguished single‐NIR‐wavelength‐activated phototheranostic material, which performs well in NIR‐II fluorescence‐guided PDT treatment and shows an enhanced in vivo anti‐tumor efficiency over the clinically approved Chlorin e6, by the equal stresses on hypoxia‐tolerant anti‐tumor therapy and deep‐penetration imaging. Therefore, the great potential of COi6‐4Cl in precise PDT cancer therapy against hypoxia challenges is demonstrated.
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