Impaired exercise performance is independent of inflammation and cellular stress following genetic reduction or deletion of selenoprotein S

Addinsall, Alex Bernard, Wright, Craig Robert, Kotsiakos, Taryan L., Smith, Zoe M., Cook, Taylah R., Andrikopoulos, Sofianos, Van Der Poel, Chris and Stupka, Nicole 2020, Impaired exercise performance is independent of inflammation and cellular stress following genetic reduction or deletion of selenoprotein S, American journal of physiology - regulatory integrative and comparative physiology, vol. 318, no. 5, pp. R981-R996, doi: 10.1152/AJPREGU.00321.2019.

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Title Impaired exercise performance is independent of inflammation and cellular stress following genetic reduction or deletion of selenoprotein S
Author(s) Addinsall, Alex Bernard
Wright, Craig RobertORCID iD for Wright, Craig Robert orcid.org/0000-0001-7903-3144
Kotsiakos, Taryan L.
Smith, Zoe M.
Cook, Taylah R.
Andrikopoulos, Sofianos
Van Der Poel, Chris
Stupka, NicoleORCID iD for Stupka, Nicole orcid.org/0000-0002-1000-1707
Journal name American journal of physiology - regulatory integrative and comparative physiology
Volume number 318
Issue number 5
Start page R981
End page R996
Total pages 6
Publisher American Physiological Society
Place of publication Rockville, Md.
Publication date 2020-05
ISSN 0363-6119
1522-1490
Keyword(s) Science & Technology
Life Sciences & Biomedicine
Physiology
blood vessels
contractile properties
cytokines
endurance exercise
skeletal muscle
selenoprotein
ENDOTHELIAL GROWTH-FACTOR
ENDOPLASMIC-RETICULUM STRESS
CONTRACTION-INDUCED INJURY
OXIDE SYNTHASE INHIBITION
MESSENGER-RNA EXPRESSION
CORONARY-HEART-DISEASE
SERUM AMYLOID-A
SKELETAL-MUSCLE
NITRIC-OXIDE
OXIDATIVE STRESS
Language eng
DOI 10.1152/AJPREGU.00321.2019
Indigenous content off
Field of Research 06 Biological Sciences
11 Medical and Health Sciences
HERDC Research category C1 Refereed article in a scholarly journal
Persistent URL http://hdl.handle.net/10536/DRO/DU:30136770

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