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pH 可逆硫代吡喃鎓试剂的聚集介导光声/NIR-II 及光动力性质:一种计算与实验方法

Aggregation-Mediated Photoacoustic/NIR-II and Photodynamic Properties of pH-Reversible Thiopyrylium Agents: A Computational and Experimental Approach.

作者信息

Liu Yishen, Zhang Zhiyun, Hou Xiaowen, Ding Qihang, Zeng Silue, Shen Hanchen, Gong Wanxia, Ding Taotao, Mahmood Zafar, Zeng Xiaodong, Ren Bingtao, Hu Wenbo, Hong Xuechuan, Ding Dan, Xiao Yuling

机构信息

Department of Cardiology, Zhongnan Hospital of Wuhan University, School of Pharmaceutical Sciences, Wuhan University, Wuhan, 430071, China.

State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, 201203, China.

出版信息

Adv Mater. 2025 Mar;37(10):e2420006. doi: 10.1002/adma.202420006. Epub 2025 Feb 3.

Abstract

Aggregation profoundly influences the photophysical properties of molecules. Here, a new series of thiopyrylium-based hemicyanine near-infrared II (NIR-II) fluorophores is developed by meticulously adjusting their aggregation states. Notably, the star molecule HTPA exhibits a remarkable pH-responsive behavior and a significant increase in photoacoustic (PA) intensity when aggregated. Additionally, their behavior and pH reversibility during aggregation formation are systematically investigated, including computational optimization, femtosecond transient absorption spectroscopy, NMR analysis, and single crystal analysis. Finally, an innovative "off " nanoparticle specifically is designed for effective tumor-targeted PA/NIR-II dual-modal imaging and photodynamic therapy by utilizing a pH-responsive polymer. The signal-to-background ratio (SBR) of PA signals significantly increased to 169 in the region of interest (ROI) in the mouse model when irradiated at 1064 nm. These findings not only provide a promising avenue for future studies of NIR-II small molecules but also pave the way for significant advances in the field of integrated cancer diagnosis and therapy.

摘要

聚集对分子的光物理性质有深远影响。在此,通过精心调节一系列基于硫代吡喃鎓的半菁近红外二区(NIR-II)荧光团的聚集状态,开发出了新的系列。值得注意的是,星形分子HTPA表现出显著的pH响应行为,聚集时光声(PA)强度显著增加。此外,还系统研究了它们在聚集形成过程中的行为和pH可逆性,包括计算优化、飞秒瞬态吸收光谱、核磁共振分析和单晶分析。最后,利用pH响应聚合物专门设计了一种创新的“关闭”纳米颗粒,用于有效的肿瘤靶向PA/NIR-II双模态成像和光动力治疗。在小鼠模型中,当在1064 nm处照射时,感兴趣区域(ROI)内PA信号的信噪比(SBR)显著提高到169。这些发现不仅为未来NIR-II小分子的研究提供了一条有前景的途径,也为综合癌症诊断和治疗领域的重大进展铺平了道路。

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