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首页> 外文期刊>Advanced Functional Materials >Design of Hybrid MnO_2-Polymer-Lipid Nanoparticles with Tunable Oxygen Generation Rates and Tumor Accumulation for Cancer Treatment
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Design of Hybrid MnO_2-Polymer-Lipid Nanoparticles with Tunable Oxygen Generation Rates and Tumor Accumulation for Cancer Treatment

机译:具有可调节的氧气产生速率和肿瘤蓄积性的MnO_2-聚合物-脂质混合纳米颗粒的设计

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摘要

Manganese dioxide (MnO_2) nanoparticles (NPs) were discovered in previous work to be effective in improving tumor oxygenation (hypoxia) and reducing H_2O_2 and acidity in the tumor microenvironment (TME) via local injection. To develop MnO_2 formulations useful for clinical application, hybrid NPs are designed with tailored hydrophobicity and structure suitable for intravenous injection, with good blood circulation, biocompatibility, high tumor accumulation, and programmable oxygen generation rate. Two different hybrid NPs are constructed by embedding polyelectrolyte-MnO_2 (PMD) in hydrophilic terpolymer/protein-MnO_2 (TMD) or hydrophobic polymer/lipid-MnO_2 (LMD) matrices. The in vitro reactivity of the MnO_2 toward H_2O_2 is controlled by matrix material and NP structure and dependent on pH with up to two-fold higher O_2 generation rate at acidic (tumor) pH than at systemic pH. The hybrid NPs are found to be safe to cells in vitro and organs in vivo and effectively decrease tumor hypoxia and hypoxia-inducible-factor-1 alpha through local or systemic administration. Fast acting TMD reduces tumor hypoxia by 70% in 0.5 h by local injection. Slow acting LMD exhibits superior tumor accumulation and retention through the systemic administration and decreased hypoxia by 45%. These findings encourage a broader use of hybrid MD NPs to overcome TME factors for cancer treatment.
机译:在先前的工作中发现二氧化锰(MnO_2)纳米颗粒(NPs)可通过局部注射有效改善肿瘤氧合作用(缺氧)并降低肿瘤微环境(TME)中的H_2O_2和酸性。为了开发可用于临床的MnO_2制剂,设计了具有适合于静脉注射的定制疏水性和结构的混合NP,具有良好的血液循环,生物相容性,高肿瘤蓄积性和可编程的氧气生成速率。通过将聚电解质-MnO_2(PMD)嵌入亲水性三元共聚物/蛋白质-MnO_2(TMD)或疏水性聚合物/脂质-MnO_2(LMD)基质中,可以构建两种不同的杂化NP。 MnO_2对H_2O_2的体外反应性受基质材料和NP结构的控制,并取决于pH值,酸性(肿瘤)pH值下的O_2生成速率比全身pH值高两倍。发现杂合NP对于体外细胞和体内器官是安全的,并通过局部或全身给药有效减少肿瘤缺氧和缺氧诱导因子-1α。通过局部注射,速效TMD可在0.5小时内将肿瘤缺氧降低70%。慢速作用的LMD通过全身给药表现出优异的肿瘤蓄积和保留能力,缺氧降低了45%。这些发现鼓励广泛使用杂种MD NP来克服TME因子进行癌症治疗。

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  • 来源
    《Advanced Functional Materials》 |2015年第12期|1858-1872|共15页
  • 作者单位

    Leslie Dan Faculty of Pharmacy University of Toronto Toronto, ON, M5S 3M2, Canada;

    Leslie Dan Faculty of Pharmacy University of Toronto Toronto, ON, M5S 3M2, Canada;

    Leslie Dan Faculty of Pharmacy University of Toronto Toronto, ON, M5S 3M2, Canada;

    Leslie Dan Faculty of Pharmacy University of Toronto Toronto, ON, M5S 3M2, Canada;

    Department of Medical Biophysics University of Toronto Toronto, ON, M5G 2M9, Canada;

    Leslie Dan Faculty of Pharmacy University of Toronto Toronto, ON, M5S 3M2, Canada;

    Leslie Dan Faculty of Pharmacy University of Toronto Toronto, ON, M5S 3M2, Canada,Department of Pharmacology and Toxicology Faculty of Medicine University of Toronto Toronto, ON, M5S 1A8, Canada;

    Department of Medical Biophysics University of Toronto Toronto, ON, M5G 2M9, Canada,Princess Margaret Cancer Center The Campbell Family Institute for Cancer Research University Health Network Toronto, ON, M5G 1L7, Canada,Techna Institute University Health Network Toronto ON, M5G 1P5, Canada;

    Department of Medical Biophysics University of Toronto Toronto, ON, M5G 2M9, Canada;

    Leslie Dan Faculty of Pharmacy University of Toronto Toronto, ON, M5S 3M2, Canada;

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