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Optimizing conditions for labeling of mesenchymal stromal cells (MSCs) with gold nanoparticles: a prerequisite for in vivo tracking of MSCs

机译:金纳米颗粒标记间充质基质细胞(MSCs)的优化条件:体内跟踪MSCs的前提。

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Mesenchymal stromal cells (MSCs) have an inherent migratory capacity towards tumor tissue in vivo. With the future objective to quantify the tumor homing efficacy of MSCs, as first step in this direction we investigated the use of inorganic nanoparticles (NPs), in particular ca. 4 nm-sized Au NPs, for MSC labeling. Time dependent uptake efficiencies of NPs at different exposure concentrations and times were determined via inductively coupled plasma mass spectrometry (ICP-MS). The labeling efficiency of the MSCs was determined in terms of the amount of exocytosed NPs versus the amount of initially endocytosed NPs, demonstrating that at high concentrations the internalized Au NPs were exocytosed over time, leading to continuous exhaustion. While exposure to NPs did not significantly impair cell viability or expression of surface markers, even at high dose levels, MSCs were significantly affected in their proliferation and migration potential. These results demonstrate that proliferation or migration assays are more suitable to evaluate whether labeling of MSCs with certain amounts of NPs exerts distress on cells. However, despite optimized conditions the labeling efficiency varied considerably in MSC lots from different donors, indicating cell specific loading capacities for NPs. Finally, we determined the detection limits of Au NP-labeled MSCs within murine tissue employing ICP-MS and demonstrate the distribution and homing of NP labeled MSCs in vivo. Although large amounts of NPs improve contrast for imaging, duration and extend of labeling needs to be adjusted carefully to avoid functional deficits in MSCs. We established an optimized labeling strategy for human MSCs with Au NPs that preserves their migratory capacity in vivo.
机译:间充质基质细胞(MSC)在体内对肿瘤组织具有固有的迁移能力。为了量化MSC的肿瘤归巢功效,我们朝着这个方向的第一步研究了无机纳米颗粒(NPs)的使用,特别是大约。 4纳米大小的金纳米颗粒,用于MSC标记。通过电感耦合等离子体质谱法(ICP-MS)确定了不同暴露浓度和时间下NPs随时间的吸收效率。 MSC的标记效率是根据胞吐的NP数量与最初胞吞的NP的数量来确定的,这表明随着时间的流逝,内在化的Au NP会随着时间的推移而胞吐,从而导致持续衰竭。尽管暴露于NP并不会显着损害细胞活力或表面标志物的表达,即使在高剂量水平下,MSC的增殖和迁移潜力也受到显着影响。这些结果表明,增殖或迁移测定法更适合评估用一定量的NP标记的MSC是否对细胞造成困扰。然而,尽管优化了条件,但来自不同供体的MSC批次中的标记效率仍存在很大差异,表明NP的细胞特异性负载能力。最后,我们使用ICP-MS确定了鼠组织中Au NP标记的MSC的检测限,并证明了NP标记的MSC在体内的分布和归巢。尽管大量NP可改善成像的对比度,但仍需仔细调整标记的持续时间和扩展范围,以避免MSCs的功能缺陷。我们建立了具有金纳米颗粒的人MSC的优化标记策略,该策略保留了它们在体内的迁移能力。

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