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Real-time tracking of stem cell viability, proliferation, and differentiation with autonomous bioluminescence imaging

机译:与自主生物发光成像的干细胞活力,增殖和分化的实时跟踪

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BACKGROUND:Luminescent reporter proteins are vital tools for visualizing cells and cellular activity. Among the current toolbox of bioluminescent systems, only bacterial luciferase has genetically defined luciferase and luciferin synthesis pathways that are functional at the mammalian cell temperature optimum of 37?°C and have the potential for in vivo applications. However, this system is not functional in all cell types, including stem cells, where the ability to monitor continuously and in real-time cellular processes such as differentiation and proliferation would be particularly advantageous.RESULTS:We report that artificial subdivision of the bacterial luciferin and luciferase pathway subcomponents enables continuous or inducible bioluminescence in pluripotent and mesenchymal stem cells when the luciferin pathway is overexpressed with a 20-30:1 ratio. Ratio-based expression is demonstrated to have minimal effects on phenotype or differentiation while enabling autonomous bioluminescence without requiring external excitation. We used this method to assay the proliferation, viability, and toxicology responses of iPSCs and showed that these assays are comparable in their performance to established colorimetric assays. Furthermore, we used the continuous luminescence to track stem cell progeny post-differentiation. Finally, we show that tissue-specific promoters can be used to report cell fate with this system.CONCLUSIONS:Our findings expand the utility of bacterial luciferase and provide a new tool for stem cell research by providing a method to easily enable continuous, non-invasive bioluminescent monitoring in pluripotent cells.
机译:背景:发光报道蛋白是可视化细胞和细胞活性的重要工具。在生物发光系统的当前工具箱中,只有细菌荧光素酶具有遗传定义的荧光素酶和荧光素合成途径,其在哺乳动物细胞温度下具有37Ω·℃的功能,并且具有体内应用的可能性。然而,该系统在所有细胞类型中不起作用,包括干细胞,其中在诸如分化和增殖的实时细胞过程中监测的能力是特别有利的。结果:我们报告了细菌荧光素的人工细分荧光素酶途径子组件使得当荧光素途径过表达时,在多能和间充质干细胞中能够在多能和间充质干细胞中能够连续或诱导的生物发光,以20-30:1的比例过表达。基于比率的表达式对表型或分化具有最小的影响,同时能够实现自主生物发光而不需要外部激发。我们使用该方法来测定IPSCS的增殖,活力和毒理学响应,并表明这些测定在其性能方面与建立比色测定相当。此外,我们使用连续发光来跟踪干细胞后代分化后。最后,我们表明组织特异性启动子可以用这种系统报告细胞命运。结论:我们的研究结果扩大了细菌荧光素酶的效用,并提供了一种新的用于干细胞研究的新工具,通过提供一种容易实现的方法来实现连续,非多能细胞中的侵入性生物发光监测。

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