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Non-invasive in vivo monitoring of transplanted stem cells in 3D-bioprinted constructs using near-infrared fluorescent imaging

机译:使用近红外荧光成像在3D-生物印刷构建体中对移植干细胞的体内监测的非侵入性

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Cell-based tissue engineering strategies have been widely established. However, the contributions of the transplanted cells within the tissue-engineered scaffolds to the process of tissue regeneration remain poorly understood. Near-infrared (NIR) fluorescence imaging systems have great potential to non-invasively monitor the transplanted cell-based tissue constructs. In this study, labeling mesenchymal stem cells (MSCs) using a lipophilic pentamethine indocyanine (CTNF127, emission at 700 nm) as a NIR fluorophore was optimized, and the CTNF127-labeled MSCs (NIR-MSCs) were printed embedding in gelatin methacryloyl bioink. The NIR-MSCs-loaded bioink showed excellent printability. In addition, NIR-MSCs in the 3D constructs showed high cell viability and signal stability for an extended period in vitro. Finally, we were able to non-invasively monitor the NIR-MSCs in constructs after implantation in a rat calvarial bone defect model, and the transplanted cells contributed to tissue formation without specific staining. This NIR-based imaging system for non-invasive cell monitoring in vivo could play an active role in validating the cell fate in cell-based tissue engineering applications.
机译:基于细胞的组织工程策略已被广泛建立。然而,组织工程支架内移植细胞在组织再生过程中的贡献仍然很差。近红外(NIR)荧光成像系统具有很大的潜力,不侵入地监测移植的基于细胞基组织构建体。在本研究中,优化了使用亲脂素吲哚菁(CTNF127,700nm发射)标记间充质干细胞(MSCs)作为NIR荧光团,并在明胶甲基丙烯酰基嵌入CTNF127标记的MSC(NIR-MSC)。 NIR-MSCS加载的生物链显示出优异的可印刷性。此外,3D构建体中的NIR-MSCs在体外延长时段显示出高的细胞活力和信号稳定性。最后,我们能够在植入大鼠颅骨缺陷模型中非侵入地监测构建体中的NIR-MSC,并且移植的细胞有助于组织形成而没有特异性染色。这种基于NIR的非侵入性细胞监测的成像系统在VIVO中可能在验证基于细胞的组织工程应用中的细胞命运方面发挥积极作用。

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