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Ferumoxytol-based Dual-modality Imaging Probe for Detection of Stem Cell Transplant Rejection

机译:基于Ferumoxytol的双模式成像探针用于检测干细胞移植排斥

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摘要

>Purpose: Stem cell transplants are an effective approach to repair large bone defects. However, comprehensive techniques to monitor the fate of transplanted stem cells in vivo are lacking. Such strategies would enable corrective interventions at an early stage and greatly benefit the development of more successful tissue regeneration approaches. In this study, we designed and synthesized a dual-modality imaging probe (Feru-AFC) that can simultaneously localize transplanted stem cells and diagnose immune rejection-induced apoptosis at an early stage in vivo.>Methods: We used a customized caspase-3 cleavable peptide-dye conjugate to modify the surface of clinically approved ferumoxytol nanoparticles (NPs) to generate the dual-modality imaging probe with fluorescence “light-up” feature. We labeled both mouse mesenchymal stem cells (mMSCs, matched) and pig mesenchymal stem cells (pMSCs, mismatched) with the probe and transplanted the labeled cells with biocompatible scaffold at the calvarial defects in mice. We then employed intravital microscopy (IVM) and magnetic resonance imaging (MRI) to investigate the localization, engraftment, and viability of matched and mismatched stem cells, followed by histological analyses to evaluate the results obtained from in vivo studies.>Results: The Feru-AFC NPs showed good cellular uptake efficiency in the presence of lipofectin without cytotoxicity to mMSCs and pMSCs. The fluorescence of Feru-AFC NPs was turned on inside apoptotic cells due to the cleavage of peptide by activated caspase-3 and subsequent release of fluorescence dye molecules. Upon transplantation at the calvarial defects in mice, the intense fluorescence from the cleaved Feru-AFC NPs in apoptotic pMSCs was observed with a concomitant decrease in the overall cell number from days 1 to 6. In contrast, the Feru-AFC NP-treated mMSCs exhibited minimum fluorescence and the cell number also remained similar. Furthermore, in vivo MRI of the Feru-AFC NP-treated mMSC and pMSCs transplants could clearly indicate the localization of matched and mismatched cells, respectively.>Conclusions: We successfully developed a dual-modality imaging probe for evaluation of the localization and viability of transplanted stem cells in mouse calvarial defects. Using ferumoxytol NPs as the platform, our Feru-AFC NPs are superparamagnetic and display a fluorescence “light-up” signature upon exposure to activated caspase-3. The results show that the probe is a promising tool for long-term stem cell tracking through MRI and early diagnosis of immune rejection-induced apoptosis through longitudinal fluorescence imaging.
机译:>目的:干细胞移植是修复大骨缺损的有效方法。但是,缺乏用于监测体内移植干细胞命运的综合技术。这样的策略将使得能够在早期阶段进行矫正干预并且极大地有益于开发更成功的组织再生方法。在这项研究中,我们设计并合成了一种双模态成像探针(Feru-AFC),该探针可同时定位移植的干细胞并在体内早期诊断出免疫排斥诱导的凋亡。>方法:使用定制的caspase-3可裂解肽-染料缀合物修饰临床批准的阿魏三醇纳米颗粒(NPs)的表面,以产生具有荧光“点亮”功能的双峰成像探针。我们用探针标记了小鼠间充质干细胞(mMSCs,匹配的)和猪间充质干细胞(pMSCs,错配的),并在小鼠的颅骨缺损处用生物相容性支架移植了标记的细胞。然后,我们使用活体显微镜(IVM)和磁共振成像(MRI)来研究匹配和不匹配的干细胞的定位,植入和生存力,然后进行组织学分析以评估从体内研究中获得的结果。>结果: 在存在lipofectin的情况下,Feru-AFC NPs表现出良好的细胞吸收效率,而对mMSCs和pMSCs没有细胞毒性。 Feru-AFC NPs的荧光在凋亡细胞内部被激活,这是由于活化的caspase-3裂解了肽并随后释放了荧光染料分子。在小鼠颅盖缺损处移植后,从凋亡的pMSC中切割的Feru-AFC NPs发出强烈的荧光,从第1天到第6天总细胞数随之减少。相反,用Feru-AFC NP处理的mMSCs显示出最小的荧光,并且细胞数也保持相似。此外,经Feru-AFC NP处理的mMSC和pMSCs移植的体内MRI可以清楚地分别指示匹配和不匹配的细胞的定位。>结论:我们成功开发了一种双模态成像探针,用于评估小鼠颅盖缺损中移植干细胞的定位和生存力我们的Feru-AFC NP使用阿魏木NP作为平台,具有超顺磁性,并且在暴露于活化的caspase-3时显示出荧光“点亮”的特征。结果表明,该探针是通过MRI进行长期干细胞追踪和通过纵向荧光成像早期诊断免疫排斥诱导的细胞凋亡的有前途的工具。

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