Bithiophene‐Functionalized Infrared Two‐Photon Absorption Metal Complexes as Single‐Molecule Platforms for Synergistic Photodynamic, Photothermal, and Chemotherapy

Author:

Li Xue‐Lian1,Wang Meng‐Fan1,Zeng Li‐Zhen1,Li Guo‐Kui1,Zhao Run‐Yu1,Liu Fu‐Dan1,Li Yun1,Yan Yu‐Fei1,Liu Qishuai2,Li Zhao2,Zhang Hongbin1,Ren Xiaoxia2,Gao Feng1ORCID

Affiliation:

1. Key Laboratory of Medicinal Chemistry for Natural Resource Ministry of Education School of Pharmacy Yunnan University East Outer Ring Road Kunming 650500 P. R. China

2. Animal Research and Resource Center School of Life Sciences Yunnan University East Outer Ring Road Kunming 650500 P. R. China

Abstract

AbstractA planar conjugated ligand functionalized with bithiophene and its Ru(II), Os(II), and Ir(III) complexes have been constructed as single‐molecule platform for synergistic photodynamic, photothermal, and chemotherapy. The complexes have significant two‐photon absorption at 808 nm and remarkable singlet oxygen and superoxide anion production in aqueous solution and cells when exposed to 808 nm infrared irradiation. The most potent Ru(II) complex Ru7 enters tumor cells via the rare macropinocytosis, locates in both nuclei and mitochondria, and regulates DNA‐related chemotherapeutic mechanisms intranuclearly including DNA topoisomerase and RNA polymerase inhibition and their synergistic effects with photoactivated apoptosis, ferroptosis and DNA cleavage. Ru7 exhibits high efficacy in vivo for malignant melanoma and cisplatin‐resistant non‐small cell lung cancer tumors, with a 100 % survival rate of mice, low toxicity to normal cells and low residual rate. Such an infrared two‐photon activatable metal complex may contribute to a new generation of single‐molecule‐based integrated diagnosis and treatment platform to address drug resistance in clinical practice and phototherapy for large, deeply located solid tumors.

Funder

National Natural Science Foundation of China

Yunnan Provincial Science and Technology Department

Natural Science Foundation of Yunnan Province

Ten Thousand Talent Plans for Young Top-notch Talents of Yunnan Province

Publisher

Wiley

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