Department of Biosystems Science and Engineering (D-BSSE), Eidgenössische Technische Hochschule (ETH) Zurich, 4058, Basel, Switzerland.
Department of Biomedicine, University of Basel, 4058, Basel, Switzerland.
Small. 2018 Feb;14(8). doi: 10.1002/smll.201703386. Epub 2018 Jan 22.
While nanoparticles are an increasingly popular choice for labeling and tracking stem cells in biomedical applications such as cell therapy, their intracellular fate and subsequent effect on stem cell differentiation remain elusive. To establish an effective stem cell labeling strategy, the intracellular nanocrystal concentration should be minimized to avoid adverse effects, without compromising the intensity and persistence of the signal necessary for long-term tracking. Here, the use of second-harmonic generating barium titanate nanocrystals is reported, whose achievable brightness allows for high contrast stem cell labeling with at least one order of magnitude lower intracellular nanocrystals than previously reported. Their long-term photostability enables to investigate quantitatively at the single cell level their cellular fate in hematopoietic stem cells (HSCs) using both multiphoton and electron microscopy. It is found that the concentration of nanocrystals in proliferative multipotent progenitors is over 2.5-fold greater compared to quiescent stem cells; this difference vanishes when HSCs enter a nonquiescent, proliferative state, while their potency remains unaffected. Understanding the nanoparticle stem cell interaction allows to establish an effective and safe nanoparticle labeling strategy into somatic stem cells that can critically contribute to an understanding of their in vivo therapeutic potential.
尽管纳米颗粒在细胞治疗等生物医学应用中作为标记和跟踪干细胞的一种越来越受欢迎的选择,但其细胞内命运及其对干细胞分化的后续影响仍难以捉摸。为了建立有效的干细胞标记策略,应将细胞内纳米晶体浓度最小化,以避免不利影响,同时又不影响长期跟踪所需的信号强度和持久性。在这里,报告了使用二次谐波产生的钛酸钡纳米晶体,其可实现的亮度允许用比以前报道的至少低一个数量级的细胞内纳米晶体对干细胞进行高对比度标记。它们的长期光稳定性使我们能够使用多光子和电子显微镜在单个细胞水平上定量研究其在造血干细胞 (HSCs) 中的细胞命运。结果发现,与静止干细胞相比,增殖多能祖细胞中的纳米晶体浓度高 2.5 倍以上;当 HSCs 进入非静止、增殖状态时,这种差异消失,而其活力不受影响。了解纳米颗粒与干细胞的相互作用可以为体细胞干细胞建立有效的、安全的纳米颗粒标记策略,这对于理解其体内治疗潜力具有重要意义。