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Shaping the future of nanomedicine: anisotropy in polymeric nanoparticle design

机译:塑造纳米医学的未来:聚合物纳米颗粒设计中的各向异性

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Nanofabrication and biomedical applications of polymeric nanoparticles have become important areas of research. Biocompatible polymeric nanoparticles have been investigated for their use as delivery vehicles for therapeutic and diagnostic agents. Although polymeric nanoconstructs have traditionally been fabricated as isotropic spheres, anisotropic, nonspherical nanoparticles have gained interest in the biomaterials community owing to their unique interactions with biological systems. Polymeric nanoparticles with different forms of anisotropy have been manufactured using a variety of novel methods in recent years. In addition, they have enhanced physical, chemical, and biological properties compared with spherical nanoparticles, including increased targeting avidity and decreased nonspecific in vivo clearance. With these desirable properties, anisotropic nanoparticles have been successfully utilized in many biomedical settings and have performed superiorly to analogous spherical nanoparticles. We summarize the current state-of-the-art fabrication methods for anisotropic polymeric nanoparticles including top-down, bottom-up, and microfluidic design approaches. We also summarize the current and potential future applications of these nanoparticles, including drug delivery, biological targeting, immunoengineering, and tissue engineering. Ongoing research into the properties and utility of anisotropic polymeric nanoparticles will prove critical to realizing their potential in nanomedicine. WIREs Nanomed Nanobiotechnol 2016, 8:191-207. doi: 10.1002/wnan.1348 For further resources related to this article, please visit the .
机译:聚合物纳米颗粒的纳米加工和生物医学应用已成为重要的研究领域。已经研究了生物相容性聚合物纳米颗粒作为治疗剂和诊断剂的递送载体的用途。尽管传统上已将聚合物纳米结构制造为各向同性球体,但各向异性,非球形的纳米颗粒由于其与生物系统的独特相互作用而引起了生物材料界的关注。近年来,已经使用多种新颖的方法制造了具有不同形式的各向异性的聚合物纳米颗粒。此外,与球形纳米颗粒相比,它们具有增强的物理,化学和生物学特性,包括增加的靶向亲和力和减少的非特异性体内清除率。凭借这些理想的性能,各向异性纳米粒子已成功用于许多生物医学领域,并且性能优于类似球形纳米粒子。我们总结了各向异性聚合物纳米粒子的当前最先进的制造方法,包括自上而下,自下而上和微流体设计方法。我们还总结了这些纳米颗粒的当前和潜在的未来应用,包括药物递送,生物靶向,免疫工程和组织工程。各向异性聚合物纳米粒子的性质和实用性的持续研究将证明对于实现其在纳米医学中的潜力至关重要。电线Nanomed Nanobiotechnol 2016,8:191-207。 doi:10.1002 / wnan.1348有关本文的更多资源,请访问。

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