Gravity sensing by cells: mechanisms and theoretical grounds

被引:0
作者
Mariano Bizzarri
Alessandra Cucina
Alessandro Palombo
Maria Grazia Masiello
机构
[1] Sapienza University of Rome,Department of Experimental Medicine
[2] Sapienza University of Rome,Department of Surgery “Pietro Valdoni”
[3] University of Rome Tor Vergata,Department of Clinical and Molecular Medicine
[4] Sapienza University of Rome,undefined
[5] Italian Space Agency (ASI),undefined
来源
Rendiconti Lincei | 2014年 / 25卷
关键词
Microgravity; Cell culture; Shape; Non-equilibrium theory; Gravity-sensing mechanisms;
D O I
暂无
中图分类号
学科分类号
摘要
Spaceflight technologies have disclosed amazing opportunities to outreach human knowledge and control over the natural world. However, the actual experience of microgravity has become a relevant threat that significantly limits the extent of man permanence in space. Since then, gravity effects on living organisms became a critical field of investigation. Gravity has been proven to affect a wide array of biological functions, interacting at different levels of complexity, from molecules to cells, tissue and the organisms as a whole. However, it is still a matter of investigation if gravity induces direct or indirect effects on cells. The non-equilibrium theory has been proven to explain how biological dissipative structures, like the cytoskeleton, may be sensitive enough to sense gravity change, then transferring the mechano-signal into biochemical pathways. Within that framework, gravity represents an ‘inescapable’ constraint that obliges living beings to adopt only a few configurations among many others. By removing the gravitational field, living structures will be free to recover more degrees of freedom, thus acquiring new phenotypes and new properties. Discoveries on that field are thought to advance our knowledge, providing amazing insights into the biological mechanism underlying physiology as well as many relevant diseases.
引用
收藏
页码:29 / 38
页数:9
相关论文
共 396 条
[1]  
Albrecht-Buehler G(1991)Possible mechanisms of indirect gravity sensing by cells ASGSB Bull 4 25-34
[2]  
Alpatov AM(1992)Biological role of gravity: hypotheses and results of experiments on “Cosmos” biosatellites Adv Space Res 12 27-32
[3]  
Antipov VV(2007)Critical phenomena in microgravity: past, present and future Rev Mod Phys 79 1-52
[4]  
Tairbekov MG(2013)Using space-based investigations to inform cancer research on Earth Nat Rev Cancer 13 315-327
[5]  
Barmatz M(1996)Free and membrane-bound calcium in microgravity and microgravity effects at the membrane level Adv Space Res 17 169-177
[6]  
Hahn I(2012)Human space flights: facts and dreams Ann Kinesiol 2 103-116
[7]  
Lipa JA(2013)Theoretical aspects of systems biology Progr Bioph Mol Biol 112 33-43
[8]  
Duncan RV(2013)Physical forces and non linear dynamics mould fractal cell shape. Quantitative morphological parameters and cell phenotype Histol Histopathol 28 155-174
[9]  
Becker JL(1999)Growth factor-induced signal transduction in adherent mammalian cells is sensitive to gravity FASEB J 13 S35-S42
[10]  
Souza GR(2005)Key gravity-sensitive signaling pathways drive T cell activation FASEB J 19 2020-2022