Tumor-Targeting H

التفاصيل البيبلوغرافية
العنوان: Tumor-Targeting H
المؤلفون: Eunkyeong, Jung, Jeonghun, Lee, Yeongjong, Lee, Semee, Seon, Miran, Park, Chulgyu, Song, Dongwon, Lee
المصدر: ACS applied bio materials. 4(5)
سنة النشر: 2022
مصطلحات موضوعية: Vascular Endothelial Growth Factor A, Photosensitizing Agents, Molecular Structure, Cell Survival, Lasers, Optical Imaging, Angiogenesis Inhibitors, Antineoplastic Agents, Biocompatible Materials, Hydrogen Peroxide, Neoplasms, Experimental, Mice, Photochemotherapy, Cell Movement, Polysaccharides, Materials Testing, Tumor Cells, Cultured, Animals, Humans, Nanoparticles, Drug Screening Assays, Antitumor, Hyaluronic Acid, Particle Size, Cell Proliferation
الوصف: Phototherapy including photothermal therapy (PTT) and photodynamic therapy (PDT) uses photosensitizers and light to kill cancer cells and has become a promising therapeutic modality because of advantages such as minimal invasiveness and high cancer selectivity. However, PTT or PDT as a single treatment modality has insufficient therapeutic efficacy. Moreover, oxygen consumption by PDT activates angiogenic factors and leads to cancer recurrence and progression. Therefore, the therapeutic outcomes of phototherapy would be maximized by employing photosensitizers for concurrent PTT and PDT and suppressing angiogenic factors. Therefore, integrating photosensitive agents and antiangiogenic agents in a single nanoplatform would be a promising strategy to maximize the therapeutic efficacy of phototherapy. In this study, we developed hyaluronic acid-coated fluorescent boronated polysaccharide (HA-FBM) nanoparticles as a combination therapeutic agent for phototherapy and antiangiogenic therapy. Upon a single near-infrared laser irradiation, HA-FBM nanoparticles generated heat and singlet oxygen simultaneously to kill cancer cells and also induced immunogenic cancer cell death. Beside their fundamental roles as photosensitizers, HA-FBM nanoparticles exerted antiangiogenic effects by suppressing the vascular endothelial growth factor (VEGF) and cancer cell migration. In a mouse xenograft model, intravenously injected HA-FBM nanoparticles targeted tumors by binding CD44-overexpressing cancer cells and suppressed angiogenic VEGF expression. Upon laser irradiation, HA-FBM nanoparticles remarkably eradicated tumors and increased anticancer immunity. Given their synergistic effects of phototherapy and antiangiogenic therapy from tumor-targeting HA-FBM nanoparticles, we believe that integrating the photosensitizers and antiangiogenic agents into a single nanoplatform presents an attractive strategy to maximize the anticancer therapeutic efficacy of phototherapy.
تدمد: 2576-6422
URL الوصول: https://explore.openaire.eu/search/publication?articleId=pmid________::0181d64cb878666a09dae1508b164f84
https://pubmed.ncbi.nlm.nih.gov/35006857
رقم الأكسشن: edsair.pmid..........0181d64cb878666a09dae1508b164f84
قاعدة البيانات: OpenAIRE