光热治疗
硫化铜
介孔二氧化硅
纳米颗粒
纳米材料
药物输送
化学
表面改性
体内
光热效应
介孔材料
纳米技术
谷胱甘肽
材料科学
铜
生物物理学
催化作用
有机化学
酶
生物技术
物理化学
生物
作者
Jianhao Liang,Junhong Ling,Xu Zhang,Xiao–kun Ouyang,Ahmed M. Omer,Guocai Yang
标识
DOI:10.1016/j.jcis.2023.11.146
摘要
Nanodrug delivery systems (NDSs), such as mesoporous silica, have been widely studied because of their high specific surface area, high loading rate, and easy modification; however, they are not easily metabolized and excreted by the human body and may be potentially harmful. Hence, we aimed to examine the synergistic anti-tumor effects of ex vivo chemo-photothermal therapy to develop a rational and highly biocompatible treatment protocol for tumors. We constructed a biodegradable NDS using organic mesoporous silica with a tetrasulfide bond structure, copper sulfide core, and folic acid-modified surface (CuS@DMONs-FA-DOX-PEG) to target a tumor site, dissociate, and release the drug. The degradation ability, photothermal conversion ability, hemocompatibility, and in vitro and in vivo anti-tumor effects of the CuS@DMONs-FA-DOX-PEG nanoparticles were evaluated. Our findings revealed that the nanoparticles encapsulated in copper sulfide exhibited significant photothermal activity and optimal photothermal conversion rate. Further, the drug was accurately delivered and released into the target tumor cells, annihilating them. This study demonstrated the successful preparation, safety, and synergistic anti-tumor effects of chemo-photothermal therapeutic nanomaterials.
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