Zhou Xiao, Shi Chao, Long Saran, Yao Qichao, Ma He, Chen Kele, Du Jianjun, Sun Wen, Fan Jiangli, Liu Bin, Wang Lei, Chen Xiaoqiang, Sui Laizhi, Yuan Kaijun, Peng Xiaojun
State Key Laboratory of Fine Chemicals, Dalian University of Technology, 2 Linggong Road, Dalian 116024, P. R. China.
College of Chemistry and Chemical Engineering, Yantai University, Yantai 264005, P. R. China.
ACS Cent Sci. 2023 Jul 17;9(8):1679-1691. doi: 10.1021/acscentsci.3c00611. eCollection 2023 Aug 23.
The development of highly effective photosensitizers (PSs) for photodynamic therapy remains a great challenge at present. Most PSs rely on the heavy-atom effect or the spin-orbit charge-transfer intersystem crossing (SOCT-ISC) effect to promote ISC, which brings about additional cytotoxicity, and the latter is susceptible to the interference of solvent environment. Herein, an immanent universal property named photoinduced molecular vibrational torsion (PVT)-enhanced spin-orbit coupling (PVT-SOC) in PSs has been first revealed. PVT is verified to be a widespread intrinsic property of quinoid cyanine (QCy) dyes that occurs on an extremely short time scale (10 s) and can be captured by transient spectra. The PVT property can provide reinforced SOC as the occurrence of ISC predicted by the El Sayed rules (ππ*-nπ*), which ensures efficient photosensitization ability for QCy dyes. Hence, QTCy7-Ac exhibited the highest singlet oxygen yield (13-fold higher than that of TCy7) and lossless fluorescence quantum yield (Φ) under near-infrared (NIR) irradiation. The preeminent photochemical properties accompanied by high biosecurity enable it to effectively perform photoablation in solid tumors. The revelation of this property supplies a new route for constructing high-performance PSs for achieving enhanced cancer phototherapy.
目前,开发用于光动力疗法的高效光敏剂(PSs)仍然是一个巨大的挑战。大多数PSs依靠重原子效应或自旋 - 轨道电荷转移系间窜越(SOCT - ISC)效应来促进系间窜越,这会带来额外的细胞毒性,并且后者易受溶剂环境的干扰。在此,首次揭示了PSs中一种内在的普遍性质,即光致分子振动扭转(PVT)增强的自旋 - 轨道耦合(PVT - SOC)。PVT被证实是醌型花青(QCy)染料广泛存在的固有性质,它发生在极短的时间尺度(10 s)上,并且可以通过瞬态光谱捕获。PVT性质可以像El Sayed规则(ππ* - nπ*)预测的系间窜越发生那样提供增强的自旋 - 轨道耦合,这确保了QCy染料具有高效的光敏化能力。因此,QTCy7 - Ac在近红外(NIR)照射下表现出最高的单线态氧产率(比TCy7高13倍)和无损荧光量子产率(Φ)。卓越的光化学性质以及高生物安全性使其能够在实体瘤中有效地进行光消融。这一性质的揭示为构建用于增强癌症光疗的高性能PSs提供了一条新途径。