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作 者:Chong Liu Ling Li Zhao-Pei Guo Lin Lin Yan-Hui Li Hua-Yu Tian
机构地区:[1]School of Materials Science and Engineering,Changchun University of Science and Technology,Changchun,130022,China [2]Key Laboratory of Polymer Ecomaterials,Changchun Institute of Applied Chemistry,Chinese Academy of Sciences,Changchun,130022,China [3]College of Chemistry and Chemical Engineering,Xiamen University,Xiamen,361005,China [4]School of Materials Science and Engineering,Xiamen University of Technology,Xiamen,361024,China
出 处:《Chinese Journal of Polymer Science》2023年第4期538-546,I0007,共10页高分子科学(英文版)
基 金:the National Natural Science Foundation of China(Nos.52173115,52073278,51925305 and 51873208);Jilin province science and technology development program(No.20200201103JC);Foundation of Department of Education of Jilin Province of China(No.JJKH20210828KJ).
摘 要:Under laser irradiation,photothermal therapy(PTT)effectively ablates tumors above 50℃.However,hyperthermia can cause additional damage due to the inevitable heat spread to surrounding healthy tissue.Herein,nanoparticles named as GI@P NPs were designed for enhanced PTT with heat shock protein 90(HSP90)inhibition at temperatures below 50℃to achieve optimal cancer therapy and avoid surrounding damage.GI@P NPs were done by co-loading Garcinia cambogia acid(GA)and photosensitizer IR783 in polymer PLG-g-mPEG to form a nanomedicine,where IR783 with excellent photoacoustic(PA)signal acted as an excellent photothermal therapeutic agent that converted the laser energy into heat to kill tumor cells,GA was used as antitumor drug for chemotherapy and an inhibitor of HSP90 to overcome the heat resistance of tumors for efficient cryo-photothermal therapy,and PLG-g-mPEG can encapsulate IR783 and GA to increase biocompatibility and accumulate effectively in the tumor.After GI@P NPs were injected into the mice,we could observe that the PA signals gradually increased in the tumor region and showed the strongest PA signals at 12 h.Under laser irradiation,the tumor temperature of the mice could raise to about 43.5℃,and the tumor was significantly inhibited after long-term monitoring by PA imaging.As a result,gentle PTT produced by GI@P NPs exhibited good antitumor effects at relatively low temperature and minimized nonspecific thermal damage to normal tissues.The GI@P NPs as nanomedicine enriched our understanding of various applications of polymeric carriers,especially in the biomedical field.
关 键 词:Mild-temperature photothermal therapy Photoacoustic imaging Polymer carrier Combination therapy Co-loading
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