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接枝于金表面的氟化及带电氢化烷硫醇盐:拓展用于生物应用的混合单层纳米颗粒的多样性

Fluorinated and Charged Hydrogenated Alkanethiolates Grafted on Gold: Expanding the Diversity of Mixed-Monolayer Nanoparticles for Biological Applications.

作者信息

Bidoggia Silvia, Milocco Francesca, Polizzi Stefano, Canton Patrizia, Saccani Alessandra, Sanavio Barbara, Krol Silke, Stellacci Francesco, Pengo Paolo, Pasquato Lucia

机构信息

Department of Chemical and Pharmaceutical Sciences, University of Trieste and INSTM Trieste Unit , via L. Giorgieri 1, 34127 Trieste, Italy.

Dipartimento di Scienze Molecolari e Nanosistemi and Centro di Microscopia Elettronica R. Stevanato, Università Ca' Foscari Venezia , Via Torino 155/b, 30172 Venezia-Mestre, Italy.

出版信息

Bioconjug Chem. 2017 Jan 18;28(1):43-52. doi: 10.1021/acs.bioconjchem.6b00585. Epub 2016 Dec 6.

Abstract

Low intrinsic toxicity, high solubility, and stability are important and necessary features of gold nanoparticles to be used in the biomedical field. In this context, charged nanoparticles proved to be very versatile, and among them charged mixed-monolayer gold nanoparticles, displaying monolayers with well-defined morphologies, represent a paradigm. By using mixtures of hydrogenated and fluorinated thiols, the formation of monolayer domains may be brought to an extreme because of the immiscibility of fluorinated and hydrogenated chains. Following this rationale, mixed monolayer gold nanoparticles featuring ammonium, sulfonate, or carboxylic groups on their surface were prepared by using amphiphilic hydrogenated thiols and 1H,1H,2H,2H-perfluoro-alkanethiols. The toxicity of these systems was assessed in HeLa cells and was found to be, in general, low even for the cationic nanoparticles which usually show a high cytotoxicity and is comparable to that of homoligand gold nanoparticles displaying amphiphilic-charge neutral-hydrogenated or fluorinated thiolates in their monolayer. These properties make the mixed ligand monolayer gold nanoparticles an interesting new candidate for medical application.

摘要

低内在毒性、高溶解度和稳定性是用于生物医学领域的金纳米颗粒的重要且必要的特性。在这种情况下,带电纳米颗粒被证明具有很强的通用性,其中带电混合单层金纳米颗粒呈现出形态明确的单层结构,堪称典范。通过使用氢化硫醇和氟化硫醇的混合物,由于氟化链和氢化链的不混溶性,单层域的形成可能会达到极致。基于这一原理,通过使用两亲性氢化硫醇和1H,1H,2H,2H-全氟烷硫醇制备了表面带有铵基、磺酸根基团或羧基的混合单层金纳米颗粒。这些体系在HeLa细胞中的毒性进行了评估,结果发现,即使对于通常具有高细胞毒性的阳离子纳米颗粒,其毒性一般也较低,并且与在单层中显示两亲性电荷中性氢化或氟化硫醇盐的同配体金纳米颗粒的毒性相当。这些特性使混合配体单层金纳米颗粒成为医学应用中一个有趣的新候选物。

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