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The Low Toxicity of Graphene Quantum Dots is Reflected by Marginal Gene Expression Changes of Primary Human Hematopoietic Stem Cells

机译:石墨烯量子点的低毒性反映了人类造血干细胞的边际基因表达变化。

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摘要

Graphene quantum dots (GQDs) are a promising next generation nanomaterial with manifold biomedical applications. For real world applications, comprehensive studies on their influence on the functionality of primary human cells are mandatory. Here, we report the effects of GQDs on the transcriptome of CD34+ hematopoietic stem cells after an incubation time of 36 hours. Of the 20 800 recorded gene expressions, only one, namely the selenoprotein W, 1, is changed by the GQDs in direct comparison to CD34+ hematopoietic stem cells cultivated without GQDs. Only a meta analysis reveals that the expression of 1171 genes is weakly affected, taking into account the more prominent changes just by the cell culture. Eight corresponding, weakly affected signaling pathways are identified, which include, but are not limited to, the triggering of apoptosis. These results suggest that GQDs with sizes in the range of a few nanometers hardly influence the CD34+ cells on the transcriptome level after 36 h of incubation, thereby demonstrating their high usability for in vivo studies, such as fluorescence labeling or delivery protocols, without strong effects on the functional status of the cells.
机译:石墨烯量子点(GQD)是具有广泛生物医学应用前景的下一代纳米材料。对于现实世界的应用,必须全面研究其对人类原代细胞功能的影响。在这里,我们报道了在孵育36小时后,GQDs对CD34 + 造血干细胞转录组的影响。与没有GQD的CD34 + 造血干细胞直接比较,GQD改变了记录的20 800个基因表达中只有一个,即硒蛋白W,1。仅荟萃分析显示,考虑到仅由细胞培养引起的更为突出的变化,1171基因的表达受到的影响很小。鉴定出八个相应的弱影响的信号传导途径,包括但不限于凋亡的触发。这些结果表明,大小为几纳米的GQD在孵育36h后几乎不会影响转录组水平上的CD34 + 细胞,从而证明了它们在体内研究中的高可用性,例如荧光标记或递送方案,对细胞的功能状态没有强烈影响。

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