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Surface coupling strength of gold nanoparticles affects cytotoxicity towards neurons

机译:金纳米颗粒的表面耦合强度会影响神经元的细胞毒性

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Gold nanoparticles (AuNPs) are versatile nanomaterials which are frequently used to manipulate and study cellular behavior on the nanometer scale. However, it has been recognized that freely diffusing colloidal particles can possess severe cytotoxicity. One strategy to overcome this harmful side effect is to tether the nanoparticles to sample surfaces. In this study, the cytotoxicity of immobilized AuNPs is investigated as a function of their sizes, surface density, and binding strength. The AuNPs are modified with positively charged aminoalkyl thiol molecules to promote the cell adhesion, while their background is passivated. Primary cortical neurons are cultured on the particle modified samples and the survival of the cells is investigated. This study reveals that besides the particle size, the particle binding strength influences the cytotoxicity during long time culture. Weakly bound particles dramatically decrease the survival of neurons while strongly bound particles hardly harm the neurons. More importantly, it is found that weakly bound AuNPs can cause higher cytotoxic effects on cells than colloidal particles dispersed in the culture medium. These results propose that the toxic effect of surface bound particles can be severe and therefore requires consideration, if nanoparticle modified surfaces are used for cell experiments.
机译:金纳米颗粒(AUNP)是通用的纳米材料,其经常用于操纵和研究纳米级上的蜂窝行为。然而,已经认识到,自由扩散胶体颗粒可以具有严重的细胞毒性。克服这种有害副作用的一种策略是将纳米颗粒系在样品表面。在该研究中,作为其尺寸,表面密度和结合强度的函数来研究固定化的AUNP的细胞毒性。通过带正电荷的氨基烷基硫醇分子进行修饰,以促进细胞粘附,而其背景钝化。初级皮质神经元在颗粒修饰的样品上培养,并研究细胞的存活。本研究表明,除了粒径之外,颗粒结合强度在长时间培养期间影响细胞毒性。弱束颗粒显着降低了神经元的存活,而强烈的颗粒几乎没有伤害神经元。更重要的是,发现弱束缚的AUNP可能会对细胞产生更高的细胞毒性,而不是分散在培养基中的胶体颗粒。这些结果提出,如果纳米颗粒改性表面用于细胞实验,则表面结合颗粒的毒性效果可能是严重的,因此需要考虑。

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