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Determining the fate of seeded cells in venous tissue-engineered vascular grafts using serial MRI

机译:使用串行MRI确定静脉组织工程化血管移植物中种子细胞的命运

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摘要

A major limitation of tissue engineering research is the lack of noninvasive monitoring techniques for observations of dynamic changes in single tissue-engineered constructs. We use cellular magnetic resonance imaging (MRI) to track the fate of cells seeded onto functional tissue-engineered vascular grafts (TEVGs) through serial imaging. After in vitro optimization, murine macrophages were labeled with ultrasmall superparamagnetic iron oxide (USPIO) nanoparticles and seeded onto scaffolds that were surgically implanted as inferior vena cava interposition grafts in SCID/bg mice. Serial MRI showed the transverse relaxation times (T2) were significantly lower immediately following implantation of USPIO-labeled scaffolds (T2=44±6.8 vs. 71±10.2 ms) but increased rapidly at 2 h to values identical to control implants seeded with unlabeled macrophages (T2=63±12 vs. 63±14 ms). This strongly indicates the rapid loss of seeded cells from the scaffolds, a finding verified using Prussian blue staining for iron containing macrophages on explanted TEVGs. Our results support a novel paradigm where seeded cells are rapidly lost from implanted scaffolds instead of developing into cells of the neovessel, as traditionally thought. Our findings confirm and validate this paradigm shift while demonstrating the first successful application of noninvasive MRI for serial study of cellular-level processes in tissue engineering.—Harrington, J. K., Chahboune, H., Criscione, J. M., Li, A. Y., Hibino, N., Yi, T., Villalona, G. A., Kobsa, S., Meijas, D., Duncan, D. R., Devine, L., Papademetri, X., Shin'oka, T., Fahmy, T. M., Breuer, C. K. Determining the fate of seeded cells in venous tissue engineered vascular grafts using serial MRI.
机译:组织工程研究的主要局限性在于缺乏非侵入性的监测技术来观察单个组织工程构建物中的动态变化。我们使用细胞核磁共振成像(MRI)来跟踪通过串行成像植入功能性组织工程化血管移植物(TEVGs)的细胞的命运。体外优化后,用超小型超顺磁性氧化铁(USPIO)纳米颗粒标记鼠巨噬细胞,并接种到支架上,该支架通过手术植入下腔静脉插入移植物至SCID / bg小鼠中。串行MRI显示,在植入USPIO标记的支架后,横向松弛时间(T2)显着降低(T2 = 44±6.8 vs. 71±10.2 ms),但在2 h迅速增加至与未标记巨噬细胞接种的对照植入物相同的值(T2 = 63±12 vs.63±14毫秒)。这有力地表明了从支架中种子细胞的快速损失,这一发现已通过普鲁士蓝染色证实了植入的TEVG上含铁巨噬细胞的存在。我们的研究结果支持了一种新的范例,即传统的想法是,植入的支架细胞会迅速失去种子细胞,而不是发展成新血管。我们的发现证实并验证了这种范式转换,同时证明了无创MRI在组织工程中细胞水平过程的系列研究中的首次成功应用。 。,Yi,T.,Villalona,GA,Kobsa,S.,Meijas,D.,Duncan,DR,Devine,L.,Papademetri,X.,Shin'oka,T.,Fahmy,TM,Breuer,CK确定串行MRI技术在静脉组织工程化血管移植物中植入细胞的命运。

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