Versatile biomimetic cantharidin-tellurium nanoparticles enhance photothermal therapy by inhibiting the heat shock response for combined tumor therapy

光热治疗 生物相容性 光敏剂 癌细胞 材料科学 赫拉 纳米载体 光动力疗法 癌症研究 纳米技术 药物输送 细胞 体内 生物物理学 癌症 医学 化学 生物 生物化学 生物技术 有机化学 内科学 冶金
作者
Zhaoming Guo,Ye Liu,Xiao Cheng,Dong Wang,Shubin Guo,Mingli Jia,Kun Ma,Changhao Cui,Li Wang,Hao Zhou
出处
期刊:Acta Biomaterialia [Elsevier BV]
卷期号:110: 208-220 被引量:38
标识
DOI:10.1016/j.actbio.2020.03.028
摘要

The heat shock response (HSR) induced by photothermal therapy (PTT), which can cause tumor cells to resist apoptosis, has increasingly attracted the attention of researchers. Synergistic treatment of tumors using multiple means to improve therapeutic efficiency would be a promising strategy for effective cancer treatment. In this study, a cancer cell membrane-camouflaged nanocarrier was developed and loaded with tellurium (Te) and cantharidin (CTD) for efficient combinatorial therapy. The designed nanoparticles ([email protected]) used a 4T1 cell membrane coating as the shell with homologous targeting capability, CTD as an the HSR inhibitor and antitumor drug, and Te as a PTT and photodynamic therapy (PDT) photosensitizer. An in vivo study indicated that the tumor inhibition rate of this combinatorial therapy could reach approximately 82.3% in 4T1 mammary tumor models. This study suggested that [email protected], as a versatile biomimetic nanoplatform, provides a new alternative for more precise and effective tumor treatment. In this work, we constructed cell membrane-coated biomimetic nanoparticles ([email protected]) to suppress cancer effectively through synergistic treatment. The developed [email protected] nanoparticles presented strong homologous targeting capabilities. The encapsulated Te triggered PDT and PPT under the near-infrared laser irradiation. Subsequently, the PTT triggered the release of CTD, which could suppress the HSR of tumor and achieve chemotherapy. In addition, due to the presence of outer cell membrane coating, these [email protected] nanoparticles showed good biocompatibility to healthy cells.
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