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Hydrophobic Modification of Copper Nanospheres for Incorporation into Poloxamer Micelles, Aggregated Micellar Nanocages and Supramolecular Assemblies

机译:铜纳米球的疏水改性掺入脊氧基胶束中,聚集胶束纳米物和超分子组件

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摘要

Background: Polymer nanogels are increasingly used for the encapsulation of nano-solids and quantum dots such as in advanced forms of drug and therapeutic isotope delivery. Objective: Unlike ex vivo application of systems in vivo application and internalization are likely to suffer from aspects of failure to ensure safety and biocompatibility. Biocompatible hydrophilic poloxamer (Pluronic F108 and F68) micelles were studied by light scattering and tensiometry. Methods: The micelles of nano-gels are synthetic heteropolymer aggregates, which are used to encapsulate drugs but in this study chemically-modified (hydrophobized) copper nano-spheres, for the purposes of demonstration for further application and medical use. Copper benzoate nano-particles (CuBzNPs) were produced by maceration and subsequently stabilized in Pluronic F108 solution was added at different concentrations. Results: The resulting particle size increase was studied by dynamic light scattering. Moderate size increase was observed at low Pluronic F108 concentrations, which indicated successful coating, but at higher F108 concentrations large size agglomerates formed. Coated copper benzoate nano-particles (CuBzNPs) were fabricated as a proof-of-principle and as a substitute for bare metal nano-particles (MNs), which were not successfully entrained in the poloxamer nano-gel. As part of the synthesis copper benzoate (CuBz) beads and their characterization through contact angle measurements were performed. Conclusion: Micelles sizes of 4 nm for F68 Pluronic at equilibrium surface tensions of 36 mNm~(﹣1) were captured in weak, 1.25 to 2.0 Pas pseudoplastic gels fabricated from hydroxypropylmethylcellulose (HPMC).
机译:背景:越来越多地用于纳米固体和量子点的包封诸如药物和治疗同位素递送的先进形式的纳米固体和量子点的封装。目的:与体内系统的exvivo应用不同,内化可能会遭受未能确保安全和生物相容性的方面。通过光散射和张力测定研究生物相容性亲水性泊洛克马酯(Pluronic F108和F68)胶束。方法:纳米凝胶的胶束是合成杂聚物聚集体,用于包封药,但在该研究中,在该研究中,用于进一步应用和医疗用途的示范性化学改性(疏水化)铜纳米球。通过钙制备铜苯甲酸铜纳米颗粒(CUBZNPS),随后在不同浓度下加入pluronic F108溶液中的稳定化。结果:通过动态光散射研究所得到的粒度增加。在低Pluronic F108浓度下观察到中等大小的增加,该浓度表明成功涂布,但在较高的F108浓度下形成大尺寸的聚集酯。将涂覆的铜苯甲酸铜纳米颗粒(CUBZNP)制成原则上,作为裸金属纳米颗粒(MNS)的替代品,其未成功地夹带在泊洛沙姆纳米凝胶中。作为合成铜的一部分,通过接触角测量进行苯甲酸盐(荟牙)珠子及其表征。结论:胶束尺寸为4nm的F68 Pluronic在36mnm〜(-1)平衡表面紧张的弱表面张力,从羟丙基甲基纤维素(HPMC)制成的1.25至2.0pas假塑料凝胶。

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  • 来源
    《Current nanomedicine》 |2019年第2期|共20页
  • 作者单位

    School of Electrical Engineering Jiujiang Vocational and Technical College Jiangxi Province 332007 People's Republic of China;

    Interfacial Nanotechnology Group School of Pharmacy and Biomolecular Sciences The University of Brighton Moulsecoomb Science Campus Lewes Road Brighton BN2 4GJ UK;

    Interfacial Nanotechnology Group School of Pharmacy and Biomolecular Sciences The University of Brighton Moulsecoomb Science Campus Lewes Road Brighton BN2 4GJ UK;

    Interfacial Nanotechnology Group School of Pharmacy and Biomolecular Sciences The University of Brighton Moulsecoomb Science Campus Lewes Road Brighton BN2 4GJ UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 其他科学技术在医学上的应用;
  • 关键词

    Encapsulation; hydrophobic; nano-gel; nano-solids; micelle; therapy;

    机译:封装;疏水;纳米凝胶;纳米固体;胶束;治疗;

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