Facchi Débora P, da Cruz Joziel A, Bonafé Elton G, Pereira Antonio G B, Fajardo André R, Venter Sandro A S, Monteiro Johny P, Muniz Edvani C, Martins Alessandro F
Postgraduate Program in Environmental Engineering (PPGEA), Federal University of Technology (UTFPR-AP), 86812-460 Apucarana, PR. Brazil.
Postgraduate Program in Materials Science & Engineering (PPGCEM), Federal University of Technology (UTFPR-LD), 86036-370 Londrina, PR. Brazil.
Curr Med Chem. 2017;24(25):2701-2735. doi: 10.2174/0929867324666170309123351.
Gold nanoparticles (AuNPs) have enormous potential for application in imaging, diagnosis, and therapies in the medical field. AuNPs are renowned for their localized surface plasmon resonance (LSPR) properties, large surface area, and biocompatibility with body fluids. Further, AuNPs have featured prominently in new methodologies for cancer treatments, like photothermal and imaging therapies. Although AuNPs present enormous potential for application in the medical field, their instability under physiological conditions prevents further uses. However, this limitation may be overcome by associating AuNPs with biopolymers. To the best of our knowledge, a revision paper rationalizing the structure/property relationship and applications of AuNPspolysaccharide composites in the medical field has not been published yet.
This manuscript discusses the most relevant aspects and state-of-art concepts surrounding the synthesis of AuNPs based on green chemistry and their association with polysaccharides that can efficiently function both as stabilizing and reducing agents of Au nanoparticles. Even more, polysaccharide devices may inhibit non-specific interactions between AuNPs and biological macromolecules, suppressing unsuitable "protein corona" formations on AuNP surfaces, thereby increasing the potential of AuNP composites of being employing as drug delivery matrices and wound-healing devices as well as in photothermal/ imaging purposes for cancer treatments and biosensors.
金纳米颗粒(AuNPs)在医学领域的成像、诊断和治疗应用中具有巨大潜力。AuNPs以其局域表面等离子体共振(LSPR)特性、大表面积以及与体液的生物相容性而闻名。此外,AuNPs在癌症治疗的新方法中,如光热疗法和成像疗法中发挥了重要作用。尽管AuNPs在医学领域有巨大的应用潜力,但其在生理条件下的不稳定性阻碍了进一步应用。然而,将AuNPs与生物聚合物结合可能克服这一限制。据我们所知,尚未发表一篇综述文章来阐述AuNP-多糖复合材料在医学领域的结构/性能关系及应用。
本手稿讨论了基于绿色化学合成AuNPs及其与多糖结合的最相关方面和最新概念,多糖既可以作为Au纳米颗粒的稳定剂又可以作为还原剂发挥有效作用。此外,多糖装置可以抑制AuNPs与生物大分子之间的非特异性相互作用,抑制AuNP表面不适当的“蛋白质冠”形成,从而增加AuNP复合材料作为药物递送基质和伤口愈合装置以及用于癌症治疗和生物传感器的光热/成像目的的潜力。