Stem Cell Health and Tissue Regeneration in Microgravity

被引:67
作者
Blaber, Elizabeth [1 ]
Sato, Kevin [1 ]
Almeida, Eduardo A. C. [1 ]
机构
[1] NASA, Ames Res Ctr, Space Biosci Div, Moffett Field, CA 94035 USA
关键词
HUMAN SKELETAL-MUSCLE; SPACE-FLIGHT; SPACEFLIGHT; BONE; PHYSIOLOGY; ADAPTATIONS; METABOLISM; EXERCISE; CALCIUM; TRAUMA;
D O I
10.1089/scd.2014.0408
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Exposure to microgravity causes significant mechanical unloading of mammalian tissues, resulting in rapid alterations of their physiology, which poses a significant risk for long-duration manned spaceflight. The immediate degenerative effects of spaceflight we understand best are those studied during short-term low-Earth-orbit experiments, and include rapid microgravity-adaptive bone and muscle loss, loss of cardiovascular capacity, defects in wound and bone fracture healing, and impaired immune function. Over the long-term, exposure to microgravity may cause severe deficits in mammalian stem cell-based tissue regenerative health, including, osteogenesis, hematopoiesis, and lymphopoeisis, as well as cause significant stem cell-based tissue degeneration in amphibian tail and lens regeneration. To address the needs for stem cell and other cell science research on the International Space Station (ISS), NASA has developed the new Bioculture System that will allow investigators to initiate and conduct on-orbit experiments that astronauts will be able to monitor and interact with during the course of cell cultures. This cell culture capability combined with advanced technologies for molecular biology and on-orbit measurement of gene expression (WetLab2) and other tools that are now coming online bring the ISS National Laboratory a step closer to becoming a fully functional space laboratory for advancing space biological sciences.
引用
收藏
页码:73 / 78
页数:6
相关论文
共 49 条
  • [1] Effects of spaceflight on murine skeletal muscle gene expression
    Allen, David L.
    Bandstra, Eric R.
    Harrison, Brooke C.
    Thorng, Seiha
    Stodieck, Louis S.
    Kostenuik, Paul J.
    Morony, Sean
    Lacey, David L.
    Hammond, Timothy G.
    Leinwand, Leslie L.
    Argraves, W. Scott
    Bateman, Ted A.
    Barth, Jeremy L.
    [J]. JOURNAL OF APPLIED PHYSIOLOGY, 2009, 106 (02) : 582 - 595
  • [2] Cardiovascular function and basics of physiology in microgravity
    Aubert, AE
    Beckers, F
    Verheyden, B
    [J]. ACTA CARDIOLOGICA, 2005, 60 (02) : 129 - 151
  • [3] Determinants of disuse-induced skeletal muscle atrophy: Exercise and nutrition countermeasures to prevent protein loss
    Bajotto, Gustavo
    Shimomura, Yoshiharu
    [J]. JOURNAL OF NUTRITIONAL SCIENCE AND VITAMINOLOGY, 2006, 52 (04) : 233 - 247
  • [4] Bikle Daniel D, 2003, Gravit Space Biol Bull, V16, P45
  • [5] Mechanical unloading of bone in microgravity reduces mesenchymal and hematopoietic stem cell-mediated tissue regeneration
    Blaber, E. A.
    Dvorochkin, N.
    Torres, M. L.
    Yousuf, R.
    Burns, B. P.
    Globus, R. K.
    Almeida, E. A. C.
    [J]. STEM CELL RESEARCH, 2014, 13 (02) : 181 - 201
  • [6] Microgravity Induces Pelvic Bone Loss through Osteoclastic Activity, Osteocytic Osteolysis, and Osteoblastic Cell Cycle Inhibition by CDKN1a/p21
    Blaber, Elizabeth A.
    Dvorochkin, Natalya
    Lee, Chialing
    Alwood, Joshua S.
    Yousuf, Rukhsana
    Pianetta, Piero
    Globus, Ruth K.
    Burns, Brendan P.
    Almeida, Eduardo A. C.
    [J]. PLOS ONE, 2013, 8 (04):
  • [7] Microgravity and immune responsiveness: Implications for space travel
    Borchers, AT
    Keen, CL
    Gershwin, ME
    [J]. NUTRITION, 2002, 18 (10) : 889 - 898
  • [8] Cytotoxic activity of natural killer cells in vitro under microgravity
    Buravkova L.B.
    Grigor'eva O.V.
    Rykova M.P.
    Grigor'ev A.I.
    [J]. Doklady Biological Sciences, 2008, 421 (1) : 275 - 277
  • [9] Microgravity reduces the differentiation of human osteoblastic MG-63 cells
    Carmeliet, G
    Nys, G
    Bouillon, R
    [J]. JOURNAL OF BONE AND MINERAL RESEARCH, 1997, 12 (05) : 786 - 794
  • [10] Cogoli A, 1996, J Gravit Physiol, V3, P1