...
首页> 外文期刊>Journal of Nanobiotechnology >Chitosan functionalisation of gold nanoparticles encourages particle uptake and induces cytotoxicity and pro-inflammatory conditions in phagocytic cells, as well as enhancing particle interactions with serum components
【24h】

Chitosan functionalisation of gold nanoparticles encourages particle uptake and induces cytotoxicity and pro-inflammatory conditions in phagocytic cells, as well as enhancing particle interactions with serum components

机译:金纳米颗粒的壳聚糖功能化可促进颗粒摄取,并在吞噬细胞中诱导细胞毒性和促炎条件,并增强颗粒与血清成分的相互作用

获取原文
           

摘要

Gold nanoparticles (AuNPs) are a popular choice for use in medical and biomedical research applications. With suitable functionalisation AuNPs can be applied in drug delivery systems, or can aid in disease diagnosis. One such functionalisation is with chitosan, which enables efficient interaction and permeation of cellular membranes, providing an effective adjuvant. As both AuNPs and chitosan have been shown to have low toxicity and high biocompatibility their proposed use in nanomedicine, either individually or combined, is expanding. However, further toxicological and immunological assessments of AuNP-chitosan conjugates are still needed. Therefore, we have evaluated how AuNP functionalisation with chitosan can affect uptake, cytotoxicity, and immunological responses within mononuclear cells, and influence the interaction of AuNPs with biomolecules within a complex biofluid. The AuNPs used were negatively charged through citrate-coating, or presented either low or high positive charge through chitosan-functionalisation. Uptake by THP-1 cells was assessed via transmission electron microscopy and electron energy loss spectroscopy, pro-inflammatory responses by ELISA and qRT-PCR, and cell death and viability via lactate dehydrogenase release and mitochondrial activity, respectively. Interactions of AuNPs with protein components of a frequently used in vitro cell culture medium supplement, foetal calf serum, were investigated using mass spectrometry. Although cells internalised all AuNPs, uptake rates and specific routes of intracellular trafficking were dependent upon chitosan-functionalisation. Accordingly, an enhanced immune response was found to be chitosan-functionalisation-dependent, in the form of CCL2, IL-1β, TNF-α and IL-6 secretion, and expression of IL-1β and NLRP3 mRNA. A corresponding increase in cytotoxicity was found in response to chitosan-coated AuNPs. Furthermore, chitosan-functionalisation was shown to induce an increase in unique proteins associating with these highly charged AuNPs. It can be concluded that functionalisation of AuNPs with the perceived non-toxic biocompatible molecule chitosan at a high density can elicit functionalisation-dependent intracellular trafficking mechanisms and provoke strong pro-inflammatory conditions, and that a high affinity of these NP-conjugates for biomolecules may be implicit in these cellular responses.
机译:金纳米颗粒(AuNPs)是用于医学和生物医学研究应用的流行选择。通过适当的功能化,AuNP可以应用于药物输送系统,或有助于疾病诊断。一种这样的功能化是用壳聚糖,其能够有效地相互作用和渗透细胞膜,从而提供有效的佐剂。由于已经证明AuNP和壳聚糖都具有低毒性和高生物相容性,因此它们在纳米药物中的应用建议无论是单独使用还是组合使用都在不断扩大。但是,仍然需要对AuNP-壳聚糖结合物进行进一步的毒理学和免疫学评估。因此,我们评估了壳聚糖的AuNP功能化如何影响单核细胞内的摄取,细胞毒性和免疫反应,以及如何影响AuNP与复杂生物流体中生物分子的相互作用。所用的AuNPs通过柠檬酸盐涂层带负电,或通过壳聚糖功能化呈现低或高正电荷。通过透射电子显微镜和电子能量损失光谱,通过ELISA和qRT-PCR的促炎反应以及通过乳酸脱氢酶释放和线粒体活性的细胞死亡和生存力来评估THP-1细胞的摄取。使用质谱法研究了AuNPs与经常使用的体外细胞培养基补充剂,胎牛血清中蛋白质成分的相互作用。尽管细胞内在化了所有AuNPs,但摄取速率和细胞内运输的特定途径取决于壳聚糖功能化。因此,发现增强的免疫应答是壳聚糖功能依赖性的,形式为CCL2,IL-1β,TNF-α和IL-6分泌,以及IL-1β和NLRP3 mRNA的表达。发现响应于脱乙酰壳多糖包被的AuNPs,细胞毒性相应增加。此外,壳聚糖功能化显示可诱导与这些高电荷AuNPs相关的独特蛋白质的增加。可以得出结论,以高密度用感知到的无毒生物相容性分子壳聚糖对AuNPs进行功能化可以引发依赖于功能化的细胞内运输机制并引发强烈的促炎条件,并且这些NP-缀合物对生物分子的高亲和力可能隐含在这些细胞反应中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号