| Literature DB >> 30623793 |
Yan Li1, Kum-Hee Yun1, Hyeri Lee1, Sung-Ho Goh2, Yang-Gun Suh3, Yongdoo Choi4.
Abstract
Radiotherapy (RT), along with surgery and chemotherapy, is a major modality of cancer therapy. Nevertheless, insufficient deposition of radiation energy in tumors and hypoxia-associated radioresistance remain the greatest challenges in RT. Here, we propose porous platinum nanoparticles as a new nanomedicine platform for solving these two problems at the same time using a single agent. Because of the combined advantages of a high-Z element and oxygen generation capability, porous platinum nanoparticles can significantly increase radiation-induced DNA damage, ROS stress, and cell cycle arrest by effectively depositing X-ray radiation energy within the cancer cells. Further, porous platinum nanoparticles increase tumor oxygenation by converting endogenic H2O2 to O2, thus greatly enhancing RT with no apparent in vivo toxicity to animals. This study presents a new nanomedicine strategy based on the use of porous high-Z metal nanoparticles with oxygen generation function for the synergistic enhancement of RT in cancer treatment.Entities:
Keywords: Hypoxia; In vivo; Nanozyme; Oxygen generation; Radiotherapy
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Year: 2019 PMID: 30623793 DOI: 10.1016/j.biomaterials.2019.01.004
Source DB: PubMed Journal: Biomaterials ISSN: 0142-9612 Impact factor: 12.479