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Labeling adipose derived stem cell sheet by ultrasmall super-paramagnetic Fe3O4 nanoparticles and magnetic resonance tracking in vivo

机译:超小型超顺磁性Fe3O4纳米粒子标记脂肪来源的干细胞片并在体内进行磁共振追踪

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摘要

Cell sheet therapy has emerged as a potential therapeutic option for reparation and reconstruction of damaged tissues and organs. However, an effective means to assess the fate and distribution of transplanted cell sheets in a serial and noninvasive manner is still lacking. To investigate the feasibility of tracking Adipose derived stem cells (ADSCs) sheet in vivo using ultrasmall super-paramagnetic Fe3O4 nanoparticles (USPIO), canine ADSCs were cultured and incubated with USPIO and 0.75 μg/ml Poly-L-Lysine (PLL) for 12 h. Labeling efficiency, cell viability, apoptotic cell rate were assessed to screen the optimum concentrations of USPIO for best labeling ADSCs. The results showed ADSCs were labeled by USPIO at an iron dose of 50 μg/ml for a 12 h incubation time, which can most efficiently mark cells and did not impair the cell survival, self-renewal, and proliferation capacity. USPIO-labeled ADSCs sheets can be easily and clearly detected in vivo and have persisted for at least 12 weeks. Our experiment confirmed USPIO was feasible for in vivo labeling of the ADSCs sheets with the optimal concentration of 50 μg Fe/ml and the tracing time is no less than 12 weeks.
机译:细胞片疗法已经成为修复和重建受损组织和器官的潜在治疗选择。然而,仍然缺乏以连续和非侵入性的方式评估移植的细胞片的命运和分布的有效手段。为了研究使用超小型超顺磁性Fe3O4纳米颗粒(USPIO)体内追踪脂肪衍生干细胞(ADSCs)薄片的可行性,将犬ADSCs培养并与USPIO和0.75μg/ ml聚L-赖氨酸(PLL)孵育12 H。评估标记效率,细胞活力,凋亡细胞率,以筛选USPIO的最佳浓度,以获得最佳标记ADSC。结果表明,USSCIO以50μg/ ml的铁剂量对ADSCs进行了12µh的孵育,可以最有效地标记细胞,并且不损害细胞的存活,自我更新和增殖能力。 USPIO标记的ADSCs片材可以在体内轻松清晰地检测到,并且可以持续至少12周。我们的实验证实,USPIO可以用于ADSCs片的体内标记,最佳浓度为50μg/ g Fe / ml,追踪时间不少于12周。

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