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Tuning of the Aggregation Behavior of Fluorinated Polymeric Nanoparticles for Improved Therapeutic Efficacy

机译:调整氟化聚合物纳米粒子的聚集行为,提高治疗效率

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摘要

Incorporation of fluorinated moieties in polymeric nanoparticles has been shown in many instances to increase their uptake by living cells and, hence, has proven to be a useful approach to enhancing delivery to cells. However, it remains unclear how incorporation of fluorine affects critical transport processes, such as interactions with membranes, intracellular transport, and tumor penetration. In this study, we investigate the influence of fluorine on transport properties using a series of rationally designed poly(oligo(ethylene glycol) methyl ether acrylate)-block-perfluoropolyether (poly(OEGA)(m)-PFPE) copolymers. Copolymers with different fluorine contents were prepared and exhibit aggregate in solution in a manner dependent on the fluorine content. Doxorubicin-conjugated poly(OEGA)(20)-PFPE nanoparticles with lower fluorine content exist in solution as unimers, leading to greater exposure of hydrophobic PFPE segments to the cell surface. This, in turn, results in greater cellular uptake, deeper tumor penetration, as well as enhanced therapeutic efficacy compared to that with the micelle-state nanoaggregates (poly(OEGA)(10)-PFPE and poly(OEGA)(5)-PFPE) with higher fluorine content but with less PFPE exposed to the cell membranes. Our results demonstrate that the aggregation behavior of these fluorinated polymers plays a critical role in internalization and transport in living cells and 3D spheroids, providing important design criteria for the preparation of highly effective delivery agents.
机译:在许多情况下已经显示了在聚合物纳米颗粒中掺入氟化部分,以增加它们的活细胞的摄取,因此已被证明是增强递送给细胞的有用方法。然而,尚不清楚氟的掺入如何影响关键的运输过程,例如与膜的相互作用,细胞内运输和肿瘤渗透。在这项研究中,我们使用一系列合理设计的聚(寡核苷酸(乙二醇)甲基醚丙烯酸酯(聚(OEGA)(M)-PFPE)共聚物来研究氟对运输性能对运输性能的影响。制备具有不同氟含量的共聚物并以依赖于氟含量的方式在溶液中表现出聚集体。在溶液中以溶液存在较低的氟含量的多柔比星 - 共轭聚(OEGA)(20)-PFPE纳米颗粒,导致疏水PFPE段更大暴露于细胞表面。反过来,与胶束 - 纳米聚糖(Poly(Oega)(10)-PFPE和聚(OEGA)(5)-PFPE(5)-PFPE(5)-PFPE(5)-PFPE相比,这导致细胞摄取更深的肿瘤摄取,更深的肿瘤渗透,以及增强的治疗效果,以及增强的治疗效果)氟含量较高,但较少的PFPE暴露于细胞膜。我们的结果表明,这些氟化聚合物的聚集行为在活细胞和3D球状体中的内化和运输中起着关键作用,提供了重要的设计标准,用于制备高效输送剂。

著录项

  • 来源
    《ACS nano》 |2020年第6期|共10页
  • 作者单位

    Univ Queensland Australian Inst Bioengn &

    Nanotechnol Brisbane Qld 4072 Australia;

    QIMR Berghofer Med Res Inst Brisbane Qld 4006 Australia;

    Univ New South Wales Australian Ctr NanoMed Sydney NSW 2052 Australia;

    Univ Queensland Australian Inst Bioengn &

    Nanotechnol Brisbane Qld 4072 Australia;

    Univ Illinois Dept Chem Chicago IL 60607 USA;

    Univ Queensland Australian Inst Bioengn &

    Nanotechnol Brisbane Qld 4072 Australia;

    Univ Queensland Australian Inst Bioengn &

    Nanotechnol Brisbane Qld 4072 Australia;

    Univ Queensland Australian Inst Bioengn &

    Nanotechnol Brisbane Qld 4072 Australia;

    Univ Illinois Dept Chem Dept Phys Chicago IL 60607 USA;

    Univ New South Wales Australian Ctr NanoMed EMBL Australia Node Single Mol Sci Sydney NSW 2052 Australia;

    Univ New South Wales Australian Ctr NanoMed Sch Chem Sydney NSW 2052 Australia;

    Univ Queensland Australian Inst Bioengn &

    Nanotechnol Brisbane Qld 4072 Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

    fluorine; nanoparticles; polymers; nanomedicines; drug delivery; breast cancer;

    机译:氟;纳米颗粒;聚合物;纳米胺;药物递送;乳腺癌;

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