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一种用于肿瘤靶向的硫酮衍生二酮吡咯并吡咯光敏剂的分子工程,以实现超过850 nm的近红外激发用于高效双光疗法。

Molecular Engineering of a Tumor-Targeting Thione-Derived Diketopyrrolopyrrole Photosensitizer to Attain NIR Excitation Over 850 nm for Efficient Dual Phototherapy.

作者信息

Xu Gang, Song Yunxia, Jin Haifeng, Shi Pengmin, Jiao Yubo, Cao Fangzhou, Pang Jie, Sun Yanyan, Fang Lei, Xia Xing-Hua, Zhao Jian

机构信息

Jiangsu Province Hi-Tech Key Laboratory for Biomedical Research, School of Chemistry and Chemical Engineering, Southeast University, Nanjing, 211189, China.

State Key Lab of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210023, China.

出版信息

Adv Sci (Weinh). 2024 Dec;11(45):e2407727. doi: 10.1002/advs.202407727. Epub 2024 Oct 16.

Abstract

Photosensitizers with near-infrared (NIR) excitation, especially above 800 nm which is highly desired for phototherapy, remain rare due to the fast nonradiative relaxation process induced by exciton-vibration coupling. Here, a diketopyrrolopyrrole-derived photosensitizer (DTPA-S) is developed via thionation of carbonyl groups within the diketopyrrolopyrrole skeleton, which results in a large bathochromic shift of 81 nm, endowing the photosensitizer with strong NIR absorption at 712 nm. DTPA-S is then introduced with a functional biomolecule (N-PEG-RGD) via click reaction for the construction of integrin αvβ3 receptor-targeted nano-micelles (NanoDTPA-S/RGD), which endows the photosensitizer with a further superlarge absorption redshift of 138 nm, thus extending the absorption maxima to ≈850 nm. Remarkably, thiocarbonyl substitution increases the nonbonding characters in frontier molecular orbitals, which can effectively suppress the nonradiative vibrational relaxation process via reducing the reorganization energy, enabling efficient reactive oxygen species (ROS) generation under 880 nm excitation. Screened by in vitro and in vivo assays, NanoDTPA-S/RGD with high water solubility, excellent tumor-targeting ability, and photodynamic/photothermal therapy synergistic effect exhibits satisfactory phototherapeutic performance. Overall, this study demonstrates a new design of efficient NIR-triggered diketopyrrolopyrrole photosensitizer with facile installation of functional biomolecules for potential clinical applications.

摘要

具有近红外(NIR)激发特性的光敏剂,尤其是对于光疗非常理想的800nm以上的光敏剂,由于激子-振动耦合引起的快速非辐射弛豫过程而仍然很少见。在此,通过对二酮吡咯并吡咯骨架内的羰基进行硫代化反应,开发了一种二酮吡咯并吡咯衍生的光敏剂(DTPA-S),这导致了81nm的大的红移,赋予该光敏剂在712nm处具有强的近红外吸收。然后通过点击反应将功能性生物分子(N-PEG-RGD)引入DTPA-S,以构建整合素αvβ3受体靶向的纳米胶束(NanoDTPA-S/RGD),这使该光敏剂具有进一步的138nm的超大吸收红移,从而将吸收最大值扩展到≈850nm。值得注意的是,硫羰基取代增加了前沿分子轨道中的非键特征,这可以通过降低重组能有效地抑制非辐射振动弛豫过程,从而在880nm激发下实现高效的活性氧(ROS)生成。通过体外和体内试验筛选,具有高水溶性、优异的肿瘤靶向能力和光动力/光热疗法协同效应的NanoDTPA-S/RGD表现出令人满意的光疗性能。总体而言,这项研究展示了一种高效的近红外触发二酮吡咯并吡咯光敏剂的新设计,该设计易于安装功能性生物分子以用于潜在的临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6236/11615798/be10e74bd4b0/ADVS-11-2407727-g001.jpg

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