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Differential Responses of Transplanted Stem Cells to Diseased Environment Unveiled by a Molecular NIR-II Cell Tracker

机译:移植干细胞对由分子NIR-II细胞跟踪器推出的患病环境的差分反应

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摘要

Stem cell therapy holds high promises in regenerative medicine. The major challenge of clinical translation is to precisely and quantitatively evaluate the in vivo cell distribution, migration, and engraftment, which cannot be easily achieved by current techniques. To address this issue, for the first time, we have developed a molecular cell tracker with a strong fluorescence signal in the second near-infrared (NIR-II) window (1,000-1,700 nm) for real-time monitoring of in vivo cell behaviors in both healthy and diseased animal models. The NIR-II tracker (CelTrac1000) has shown complete cell labeling with low cytotoxicity and profound long-term tracking ability for 30 days in high spatiotemporal resolution for semiquantification of the biodistribution of transplanted stem cells. Taking advantage of the unique merits of CelTrac1000, the responses of transplanted stem cells to different diseased environments have been discriminated and unveiled. Furthermore, we also demonstrate CelTrac1000 as a universal and effective technique for ultrafast real-time tracking of the cellular migration and distribution in a 100 μm single-cell cluster spatial resolution, along with the lung contraction and heart beating. As such, this NIR-II tracker will shift the optical cell tracking into a single-cell cluster and millisecond temporal resolution for better evaluating and understanding stem cell therapy, affording optimal doses and efficacy.
机译:干细胞疗法在再生医学中具有高承诺。临床翻译的主要挑战是精确和定量地评估体内细胞分布,迁移和植入,其不能通过当前技术容易地实现。为了解决这个问题,我们首次开发了一种分子细胞跟踪器,其在第二近红外(NIR-II)窗口中具有强大的荧光信号(1,000-1,700nm),用于实时监测体内细胞行为在健康和患病的动物模型中。 NIR-II跟踪器(CELTRAC1000)显示了具有低细胞毒性的完全细胞标记,并在高时的时间分辨率下30天进行了深度的长期跟踪能力,以进行移植干细胞的生物分布的半阶段。利用Celtrac1000的独特优点,已经区分了移植干细胞对不同患病环境的反应。此外,我们还将Celtrac1000展示为超快实时跟踪蜂窝迁移和100μm单细胞间隔空间分辨率的超快实时跟踪,以及肺收缩和心脏跳动。因此,该NIR-II跟踪器将光电电池跟踪转换为单细胞聚类和毫秒的时间分辨率,以便更好地评估和理解干细胞疗法,得到最佳剂量和功效。

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