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A Novel Self-Assembled Mitochondria-Targeting Protein Nanoparticle Acting as Theranostic Platform for Cancer

机译:一种新型的自组装线粒体靶向蛋白纳米粒子,其作为癌症的Theranostic平台

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摘要

Self-assembled protein nanoparticles have attracted much attention in biomedicine because of their biocompatibility and biodegradability. Protein nanoparticles have become widely utilized as diagnostic or therapeutic agents for various cancers. However, there are no reports that protein nanoparticles can specifically target mitochondria. This targeting is desirable, since mitochondria are critical in the development of cancer cells. In this study, the discovery of a novel self-assembled metal protein nanoparticle, designated GST-MT-3, is reported, which targets the mitochondria of cancer cells within 30 min in vitro and rapidly accumulates in tumors within 1 h in vivo. The nanoparticles chelate cobalt ions [GST-MT-3(Co~(2+))], which induces reactive oxygen species (ROS) production and reduces the mitochondrial membrane potential. These effects lead to antitumor activity in vivo. GST-MT-3(Co~(2+)) with covalently conjugated paclitaxel synergistically suppress tumors and prolong survival. Importantly, the effective dosage of paclitaxel is 50-fold lower than that utilized in standard chemotherapy (0.2 vs 10 mg kg~(-1)). To the best of the authors' knowledge, GST-MT-3 is the first reported protein nanoparticle that targets mitochondria. It has the potential to be an excellent platform for combination therapies.
机译:由于其生物相容性和生物降解性,自组装蛋白纳米颗粒在生物医学中引起了许多关注。蛋白质纳米颗粒已被广泛用于各种癌症的诊断或治疗剂。然而,没有报道蛋白质纳米颗粒可以特异性靶向线粒体。这种靶向是理想的,因为线粒体在癌细胞的发育中至关重要。在该研究中,报道了一种新型自组装金属蛋白纳米粒子的发现,指定的GST-MT-3,其在体外30分钟内靶向癌细胞的线粒体,并在体内在1小时内快速积累肿瘤。纳米颗粒螯合钴离子[GST-MT-3(CO〜(2+))],其诱导反应性氧物质(ROS)产生并降低线粒体膜电位。这些效果导致体内抗肿瘤活性。 GST-MT-3(CO〜(2+))具有共价共轭的紫杉醇协同抑制肿瘤并延长存活。重要的是,紫杉醇的有效剂量低于标准化疗中使用的50倍(0.2Vs10mg kg〜(-1))。据作者所知,GST-MT-3是第一个靶向线粒体的蛋白质纳米粒子。它有可能成为组合疗法的优秀平台。

著录项

  • 来源
    《Small》 |2019年第2期|共7页
  • 作者单位

    Synthetic and Functional Biomolecules Center Beijing National Laboratory for Molecular Sciences Key Laboratory of Bioorganic Chemistry and Molecular Engineering of Ministry of Education College of Chemistry and Molecular Engineering Innovation Center for;

    State Key Laboratory of Agrobiotechnology and College of Veterinary Medicine China Agricultural University Beijing 100094 China;

    Synthetic and Functional Biomolecules Center Beijing National Laboratory for Molecular Sciences Key Laboratory of Bioorganic Chemistry and Molecular Engineering of Ministry of Education College of Chemistry and Molecular Engineering Innovation Center for;

    Department of Radiology Clinical College of 307th Hospital of PLA Anhui Medical University 307 Hospital PLA Beijing 100071 China;

    Synthetic and Functional Biomolecules Center Beijing National Laboratory for Molecular Sciences Key Laboratory of Bioorganic Chemistry and Molecular Engineering of Ministry of Education College of Chemistry and Molecular Engineering Innovation Center for;

    Beijing Institute of Pharmacology and Toxicology National Beijing Center for Drug Safety Evaluation and Research State Key Laboratory of Toxicology and Medical Countermeasures Academy of Military Medical Sciences Beijing 100850 China;

    Beijing Institute of Pharmacology and Toxicology National Beijing Center for Drug Safety Evaluation and Research State Key Laboratory of Toxicology and Medical Countermeasures Academy of Military Medical Sciences Beijing 100850 China;

    Synthetic and Functional Biomolecules Center Beijing National Laboratory for Molecular Sciences Key Laboratory of Bioorganic Chemistry and Molecular Engineering of Ministry of Education College of Chemistry and Molecular Engineering Innovation Center for;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    combination therapy; mitochondria; nanoparticle; paclitaxel; targeting;

    机译:联合疗法;线粒体;纳米粒子;紫杉岩;瞄准;

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