前药
化疗
癌症研究
材料科学
活性氧
多重耐药
一氧化氮
提拉帕扎明
阿霉素
肿瘤微环境
肿瘤缺氧
体外
化学
药理学
药物输送
缺氧(环境)
医学
细胞毒性
放射治疗
纳米技术
生物化学
肿瘤细胞
氧气
外科
内科学
抗生素
有机化学
作者
Qianyan Li,Jingni Zhang,Jingnan Li,Hemin Ye,Meixuan Li,Wei Hou,Huanan Li,Zhibiao Wang
标识
DOI:10.1021/acsami.1c07494
摘要
The combination of high-intensity focused ultrasound (HIFU) and chemotherapy has promising potential in the synergistic treatment of various types of solid tumors. However, the clinical efficacy of HIFU in combination chemotherapy is often impeded by the pre-existing hypoxia tumor microenvironment-induced multidrug resistance (MDR). Therefore, it is imperative for HIFU combined with chemotherapy to overcome MDR by improving the tumor hypoxic microenvironment. Hence, we developed highly stable nanoparticles (P@BDOX/β-lapachone-NO-NPs) with intracellular nitric oxide (NO)- and reactive oxygen species (ROS)-generating capabilities at the tumor site to relieve the hypoxic tumor microenvironment in solid tumors. Doxorubicin prodrug (boronate-DOX, BDOX) and β-lapachone were concurrently loaded onto actively targeted pH (low) insertion peptides (pHLIPs)-poly(ethylene glycol) and nitrated gluconic acid copolymers. Our results showed that the ability of P@BDOX/β-lapachone-NO-NPs to generate NO and ROS simultaneously is vital for the sensitization of hypoxic solid tumors for chemotherapy, as evidenced by the suppression of tumor cells and tissues (in vitro and in the nude mice model). Thus, this combined therapy holds considerable potential in the management of hypoxic solid tumors.
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