biology and biotechnology

(やまだぃちぅ) #1

FRTL5 Albi E, Ambesi-Impiombato FS, Villani M, et al.
Thyroid cell growth: Sphingomyelin metabolism
as non-invasive marker for cell damage acquired
during spaceflight. Astrobiology.
2010;10(8):811-820. doi:
10.1089/ast.2010.0461.


ESA


FRTL5 Meli A, Perrella G, Toller M, et al. Ambesi-
Impiombato FS, FRTL-5 experiment during
ENEIDE mission. Microgravity Science and
Technology. September 2007;19(5-6):175-179.
doi: 10.1007/BF02919476.


ESA


Gene Expression Herranz R, Benguria A, Laván DA, et al.
Spaceflight-related suboptimal conditions can
accentuate the altered gravity response of
Drosophila transcriptome. Molecular Ecology.
October 2010;19(19):4255-4264. doi:
10.1111/j.1365-294X.2010.04795.x.


ESA


Gene Expression Khairul-Bariah A, Then SM, Rageshwary R, et al.
Changes in gene expression of hepG2 cells
exposed to microgravity. Gravitational and
Space Biology. 2010;23(2):91-92.


ESA


Gene Expression Herranz R, Laván DA, Medina F, van Loon JJ,
Marco R. Drosophila GENE experiment in the
Spanish Soyuz Mission to the ISS: II. Effects of
the containment constraints. Microgravity
Science and Technology. 2008;21(4):299-304.
doi: 10.1007/s12217- 008 - 9097 - 1.


ESA


Gene Expression Herranz R, Laván DA, Benguria A, et al. The
“gene” experiment in the Spanish Soyuz mission
to the ISS. Effects of the cold transportation
step. Microgravity Science and Technology.
2007;19(5-6):196-200. doi:
10.1007/BF02919481.


ESA


Gene Expression Herranz R, Benguria A, Fernandez-Pineda E, et
al. Gene expression variations during Drosophila
metamorphosis in space. The GENE experiment
in the Spanish Cervantes Mission to the ISS.
Journal of Gravitational Physiology. 2005;12(1).


ESA

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