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Near-Infrared Light-Initiated Molecular Superoxide Radical Generator: Rejuvenating Photodynamic Therapy against Hypoxic Tumors.
Li, Mingle; Xia, Jing; Tian, Ruisong; Wang, Jingyun; Fan, Jiangli; Du, Jianjun; Long, Saran; Song, Xiangzhi; Foley, James W; Peng, Xiaojun.
Afiliación
  • Li M; State Key Laboratory of Fine Chemicals , Dalian University of Technology , Dalian 116024 , China.
  • Xia J; Department School of Life Science and Biotechnology , Dalian University of Technology , Dalian 116024 , China.
  • Tian R; State Key Laboratory of Fine Chemicals , Dalian University of Technology , Dalian 116024 , China.
  • Wang J; Department School of Life Science and Biotechnology , Dalian University of Technology , Dalian 116024 , China.
  • Fan J; State Key Laboratory of Fine Chemicals , Dalian University of Technology , Dalian 116024 , China.
  • Du J; State Key Laboratory of Fine Chemicals , Dalian University of Technology , Dalian 116024 , China.
  • Long S; State Key Laboratory of Fine Chemicals , Dalian University of Technology , Dalian 116024 , China.
  • Song X; College of Chemistry and Chemical Engineering , Central South University , Changsha 410083 , China.
  • Foley JW; Rowland Institute at Harvard , Harvard University , Cambridge , Massachusetts 02142 , United States.
  • Peng X; State Key Laboratory of Fine Chemicals , Dalian University of Technology , Dalian 116024 , China.
J Am Chem Soc ; 140(44): 14851-14859, 2018 11 07.
Article en En | MEDLINE | ID: mdl-30362735
ABSTRACT
Hypoxia, a quite universal feature in most solid tumors, has been considered as the "Achilles' heel" of traditional photodynamic therapy (PDT) and substantially impairs the overall therapeutic efficacy. Herein, we develop a near-infrared (NIR) light-triggered molecular superoxide radical (O2-•) generator (ENBS-B) to surmount this intractable issue, also reveal its detailed O2-• action mechanism underlying the antihypoxia effects, and confirm its application for in vivo targeted hypoxic solid tumor ablation. Photomediated radical generation mechanism study shows that, even under severe hypoxic environment (2% O2), ENBS-B can generate considerable O2-• through type I photoreactions, and partial O2-• is transformed to high toxic OH· through SOD-mediated cascade reactions. These radicals synergistically damage the intracellular lysosomes, which subsequently trigger cancer cell apoptosis, presenting a robust hypoxic PDT potency. In vitro coculture model shows that, benefiting from biotin ligand, ENBS-B achieves 87-fold higher cellular uptake in cancer cells than normal cells, offering opportunities for personalized medicine. Following intravenous administration, ENBS-B is able to specifically target to neoplastic tissues and completely suppresses the tumor growth at a low light-dose irradiation. As such, we postulated this work will extend the options of excellent agents for clinical cancer therapy.
Asunto(s)

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Fotoquimioterapia / Fármacos Fotosensibilizantes / Superóxidos / Neoplasias Hepáticas / Hipoxia / Antineoplásicos Límite: Animals / Humans Idioma: En Revista: J Am Chem Soc Año: 2018 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Fotoquimioterapia / Fármacos Fotosensibilizantes / Superóxidos / Neoplasias Hepáticas / Hipoxia / Antineoplásicos Límite: Animals / Humans Idioma: En Revista: J Am Chem Soc Año: 2018 Tipo del documento: Article País de afiliación: China