Hotowy Anna, Grodzik Marta, Zielińska-Górska Marlena, Chojnacka Natalia, Kurantowicz Natalia, Dyjak Sławomir, Strojny Barbara, Kutwin Marta, Chwalibog André, Sawosz Ewa
Department of Nanobiotechnology and Experimental Ecology, Warsaw University of Life Sciences, 02-786 Warsaw, Poland.
Institute of Chemistry, Military University of Technology, 00-908 Warsaw, Poland.
Materials (Basel). 2020 May 7;13(9):2159. doi: 10.3390/ma13092159.
The characteristic features of nanomaterials provide rich opportunities for a broad range of applications due to their different physicochemical properties. Nanocolloidal silver and graphenic carbon materials differ in most physicochemical characteristics, except for their nanodimensions. Since there is a growing demand for stem cell therapies for coronary disorders, examining cardiac progenitor cells (CPC) in terms of their response to nanostructure treatment seems to be a reasonable approach. Morphological studies and viability assessments were performed with CPC in vitro, treated with small concentrations of silver nanoparticles (AgNP), hierarchical nanoporous graphenic carbon (HNC) and their mixtures. A viability test confirmed the morphological assessment of CPC treated with AgNP and HNC; moreover, the action of both nanomaterials was time-dependent and dose-dependent. For AgNP, between the two of the applied concentrations lies a border between their potential beneficial effect and toxicity. For HNC, at a lower concentration, strong stimulation of cell viability was noted, whereas a higher dosage activated their differentiation. It is necessary to perform further research examining the mechanisms of the action of AgNP and especially of unexplored HNC, and their mixtures, on CPC and other cells.
由于其不同的物理化学性质,纳米材料的特性为广泛的应用提供了丰富的机会。纳米胶体银和石墨烯碳材料在大多数物理化学特性上有所不同,除了它们的纳米尺寸。鉴于对冠状动脉疾病干细胞疗法的需求不断增长,从心脏祖细胞(CPC)对纳米结构处理的反应方面进行研究似乎是一种合理的方法。对体外培养的CPC进行形态学研究和活力评估,这些CPC用低浓度的银纳米颗粒(AgNP)、分级纳米多孔石墨烯碳(HNC)及其混合物处理。活力测试证实了对用AgNP和HNC处理的CPC的形态学评估;此外,两种纳米材料的作用均呈时间依赖性和剂量依赖性。对于AgNP,在所应用的两个浓度之间存在其潜在有益作用和毒性的界限。对于HNC,在较低浓度下,观察到对细胞活力有强烈刺激,而较高剂量则激活了它们的分化。有必要进一步研究AgNP尤其是未被探索的HNC及其混合物对CPC和其他细胞的作用机制。