平原的
超重力
再生(生物学)
平衡
细胞生物学
氧化应激
氧化铈
纳米技术
材料科学
干细胞
生物
生物物理学
氧化物
生物化学
天体生物学
冶金
作者
Alessandra Salvetti,Andrea Degl’Innocenti,Gaetana Gambino,Jack J. W. A. van Loon,Chiara Ippolito,Sandra Ghelardoni,Éric Ghigo,Luca Leoncino,Mirko Prato,Leonardo Rossi,Gianni Ciofani
摘要
Gravity alterations elicit complex and mostly detrimental effects on biological systems. Among these, a prominent role is occupied by oxidative stress, with consequences for tissue homeostasis and development. Studies in altered gravity are relevant for both Earth and space biomedicine, but their implementation using whole organisms is often troublesome. Here we utilize planarians, simple worm model for stem cell and regeneration biology, to characterize the pathogenic mechanisms brought by artificial gravity alterations. In particular, we provide a comprehensive evaluation of molecular responses in intact and regenerating specimens, and demonstrate a protective action from the space-apt for nanotechnological antioxidant cerium oxide nanoparticles.
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