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Control of Wnt/beta-Catenin Signaling Pathway in Vivo via Light Responsive Capsules

机译:Wnt /β-Catenin信号转导通路在体内通过光响应胶囊的控制。

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The possibility to remotely manipulate intracellular pathways in single cells is among the current goals of biomedicine, demanding new strategies to control cell function and reprogramming cell fate upon external triggering. Optogenetics is one approach in this direction, allowing specific cell stimulation by external illumination. Here, we developed optical switchers of an ancient and highly conserved system controlling a variety of developmental and adult processes in all metazoans, from Hydra to mammals, the Wnt/beta-catenin signaling pathway. An intracellular modulator of the Wnt pathway was enclosed into polyelectrolyte multilayer microcapsules engineered to include self-tracking (i.e., fluorescence labeling) and light mediated heating functionalities (i.e., plasmonic nanoparticles). Capsules were delivered in vivo to Hydra and NIR triggered drug release caused forced activation of the Wnt pathway. The possibility to remotely manipulate the Wnt pathway by optical switchers may be broadly translated to achieve spatiotemporal control of cell fate for new therapeutic strategies.
机译:远程操纵单个细胞内细胞内途径的可能性是生物医学的当前目标之一,需要新的策略来控制细胞功能并在外部触发时重新设定细胞命运。光遗传学是朝这个方向发展的一种方法,可以通过外部照明来刺激特定的细胞。在这里,我们开发了一种古老且高度保守的系统的光开关,它控制从水Hy到哺乳动物,Wnt /β-catenin信号通路的所有后生动物的各种发育和成年过程。 Wnt途径的细胞内调节剂被包封在聚电解质多层微囊中,该微囊经工程设计以包括自跟踪(即,荧光标记)和光介导的加热功能(即,等离子体纳米颗粒)。胶囊在体内被递送至Hydra,而NIR触发的药物释放导致Wnt途径的强制激活。可以广泛地转换通过光学开关来操纵Wnt途径的可能性,以实现针对新治疗策略的细胞命运的时空控制。

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