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Intercellular organelle trafficking by membranous nanotube connections: A possible new role in cellular rejuvenation?

机译:通过膜状纳米管连接的细胞间细胞器运输:可能在细胞复兴中的新角色?

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Cells could make actin-based filopodial extensions that connect up with other cells. Such close-ended, actin-based filopodial bridges, or cytonemes, have been observed during developmental and pathological processes. On the other hand, tunneling nanotubes (TNTs) form conduits with open ends that allow transfer of cytoplasmic materials and organelles between cells. The past years have witnessed the description of TNTs in multiple cell types, with a range of interesting physiological and pathophysiological activities. Some hints of the molecular components that drive their formations are now emerging. Recent work has further suggested that TNTs could be important in regenerative transfer of large cellular components, including organelles such as mitochondria and lysosomes between senescing and younger cell types (at least for cells in culture). These findings have intriguing implications in cell biology and regenerative medicine.
机译:细胞可以进行与其他细胞连接的基于肌动蛋白的丝状延伸。在发育和病理过程中已经观察到这种封闭的,基于肌动蛋白的丝状桥或细胞因子。另一方面,隧穿纳米管(TNT)形成具有开放端的导管,允许细胞质材料和细胞器在细胞之间转移。过去几年见证了多种细胞类型中TNT的描述,以及一系列有趣的生理和病理生理活动。现在正在出现一些驱动其形成的分子成分的提示。最近的工作进一步表明,TNTs在衰老和较年轻的细胞类型之间(至少对于培养的细胞而言)在包括细胞器(例如线粒体和溶酶体)在内的大型细胞成分的再生转移中可能很重要。这些发现对细胞生物学和再生医学具有有趣的意义。

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