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银纳米颗粒修饰的表面诱导小鼠肾源性干细胞分化。

Silver nanoparticle modified surfaces induce differentiation of mouse kidney-derived stem cells.

作者信息

Roy Chowdhury Neelika, Hopp Isabel, Zilm Peter, Murray Patricia, Vasilev Krasimir

机构信息

School of Engineering, University of South Australia Mawson Lakes SA 5095 Australia

Institute of Translational Medicine, University of Liverpool Liverpool UK

出版信息

RSC Adv. 2018 Jun 4;8(36):20334-20340. doi: 10.1039/c8ra02145g. eCollection 2018 May 30.

Abstract

In this paper, we interrogate the influence of silver nanoparticle (AgNPs)-based model surfaces on mouse kidney-derived stem cells (mKSCs) differentiation. The widespread use of silver in biomedical and consumer products requires understanding of this element's effect on kidney cells. Moreover, the potential for using stem cells in drug discovery require methods to direct their differentiation to specialized cells. Hence, we generated coated model substrates containing different concentrations of surface immobilized AgNPs, and used them to evaluate properties and functions of mKSCs. Initially, mKSCs exhibited reduced viability on higher silver containing surfaces. However, longer culture periods assisted mKSCs to recover. Greater degree of cell spreading and arborization led by AgNPs, suggest podocyte differentiation. Proximal tubule cell marker's expression revealed differentiation to the specific lineage. Although the exact mechanism underpinning these findings require significant future efforts, this study demonstrate silver's capacity to stimulate mKSC differentiation, which may provide opportunities for drug screenings.

摘要

在本文中,我们探究了基于银纳米颗粒(AgNPs)的模型表面对小鼠肾脏来源干细胞(mKSCs)分化的影响。银在生物医学和消费品中的广泛应用需要了解该元素对肾脏细胞的作用。此外,在药物发现中使用干细胞的潜力需要有将其分化为特定细胞的方法。因此,我们制备了含有不同浓度表面固定化AgNPs的包被模型底物,并使用它们来评估mKSCs的特性和功能。最初,mKSCs在含银量较高的表面上活力降低。然而,更长的培养时间有助于mKSCs恢复。由AgNPs导致的更大程度的细胞铺展和分支表明足细胞分化。近端小管细胞标志物的表达揭示了向特定谱系的分化。尽管支撑这些发现的确切机制在未来需要大量研究工作,但本研究证明了银刺激mKSC分化的能力,这可能为药物筛选提供机会。

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