Matches in SemOpenAlex for { <https://semopenalex.org/work/W2017230462> ?p ?o ?g. }
- W2017230462 endingPage "368" @default.
- W2017230462 startingPage "357" @default.
- W2017230462 abstract "Dietary or caloric restriction confers various clinical benefits. Short‐term fasting of mice is a common experimental procedure that may involve systemic metabolic remodeling, which may significantly affect experimental outputs. This study evaluated adaptive cellular responses after 1‐ or 2‐day fasting in 13 mouse tissues by quantitative PCR using 15 marker primer sets for the activation of ubiquitin–proteasome ( Atrogin‐1 and MuRF1 ), autophagy–lysosome ( LC3b , p62 and Lamp2 ), amino acid response ( Asns , Trib3 , Herpud1 , xCT , and Chop ), Nrf2‐mediated antioxidant ( HO‐1 and Gsta1 ), and amino acid transport ( Slc38a2 , Slc7a5 , and Slc7a1 ) systems. Differential activation profiles obtained in seven highly (thymus, liver, spleen, and small intestine) or mildly (stomach, kidney, and colon) atrophied tissues as well as in six non‐atrophied tissues (brain, eye, lung, heart, skeletal muscle, and testis) suggested tissue‐specific active metabolic remodeling." @default.
- W2017230462 created "2016-06-24" @default.
- W2017230462 creator A5015184925 @default.
- W2017230462 creator A5032696096 @default.
- W2017230462 creator A5051046396 @default.
- W2017230462 creator A5073977175 @default.
- W2017230462 creator A5077292737 @default.
- W2017230462 creator A5079485382 @default.
- W2017230462 date "2015-01-01" @default.
- W2017230462 modified "2023-10-14" @default.
- W2017230462 title "Differential adaptive responses to 1‐ or 2‐day fasting in various mouse tissues revealed by quantitative PCR analysis" @default.
- W2017230462 cites W1613701641 @default.
- W2017230462 cites W1967267087 @default.
- W2017230462 cites W1980195461 @default.
- W2017230462 cites W1987107881 @default.
- W2017230462 cites W2000087607 @default.
- W2017230462 cites W2010852858 @default.
- W2017230462 cites W2012457100 @default.
- W2017230462 cites W2025665129 @default.
- W2017230462 cites W2029187086 @default.
- W2017230462 cites W2030908500 @default.
- W2017230462 cites W2042141094 @default.
- W2017230462 cites W2063973072 @default.
- W2017230462 cites W2064779113 @default.
- W2017230462 cites W2065056367 @default.
- W2017230462 cites W2069048337 @default.
- W2017230462 cites W2069307303 @default.
- W2017230462 cites W2078253583 @default.
- W2017230462 cites W2078739475 @default.
- W2017230462 cites W2086717365 @default.
- W2017230462 cites W2090962870 @default.
- W2017230462 cites W2092408228 @default.
- W2017230462 cites W2096388436 @default.
- W2017230462 cites W2107045511 @default.
- W2017230462 cites W2117800935 @default.
- W2017230462 cites W2126271200 @default.
- W2017230462 cites W2129132663 @default.
- W2017230462 cites W2160114161 @default.
- W2017230462 cites W2264407089 @default.
- W2017230462 cites W2602035017 @default.
- W2017230462 cites W4383997435 @default.
- W2017230462 doi "https://doi.org/10.1016/j.fob.2015.04.012" @default.
- W2017230462 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/4420774" @default.
- W2017230462 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/25973363" @default.
- W2017230462 hasPublicationYear "2015" @default.
- W2017230462 type Work @default.
- W2017230462 sameAs 2017230462 @default.
- W2017230462 citedByCount "19" @default.
- W2017230462 countsByYear W20172304622015 @default.
- W2017230462 countsByYear W20172304622016 @default.
- W2017230462 countsByYear W20172304622017 @default.
- W2017230462 countsByYear W20172304622018 @default.
- W2017230462 countsByYear W20172304622019 @default.
- W2017230462 countsByYear W20172304622020 @default.
- W2017230462 countsByYear W20172304622021 @default.
- W2017230462 countsByYear W20172304622022 @default.
- W2017230462 crossrefType "journal-article" @default.
- W2017230462 hasAuthorship W2017230462A5015184925 @default.
- W2017230462 hasAuthorship W2017230462A5032696096 @default.
- W2017230462 hasAuthorship W2017230462A5051046396 @default.
- W2017230462 hasAuthorship W2017230462A5073977175 @default.
- W2017230462 hasAuthorship W2017230462A5077292737 @default.
- W2017230462 hasAuthorship W2017230462A5079485382 @default.
- W2017230462 hasBestOaLocation W20172304621 @default.
- W2017230462 hasConcept C126322002 @default.
- W2017230462 hasConcept C134018914 @default.
- W2017230462 hasConcept C181199279 @default.
- W2017230462 hasConcept C190283241 @default.
- W2017230462 hasConcept C195580219 @default.
- W2017230462 hasConcept C203522944 @default.
- W2017230462 hasConcept C2779959927 @default.
- W2017230462 hasConcept C2780091579 @default.
- W2017230462 hasConcept C2780216420 @default.
- W2017230462 hasConcept C2780931953 @default.
- W2017230462 hasConcept C3675279 @default.
- W2017230462 hasConcept C55493867 @default.
- W2017230462 hasConcept C62231903 @default.
- W2017230462 hasConcept C71924100 @default.
- W2017230462 hasConcept C86803240 @default.
- W2017230462 hasConcept C96942376 @default.
- W2017230462 hasConceptScore W2017230462C126322002 @default.
- W2017230462 hasConceptScore W2017230462C134018914 @default.
- W2017230462 hasConceptScore W2017230462C181199279 @default.
- W2017230462 hasConceptScore W2017230462C190283241 @default.
- W2017230462 hasConceptScore W2017230462C195580219 @default.
- W2017230462 hasConceptScore W2017230462C203522944 @default.
- W2017230462 hasConceptScore W2017230462C2779959927 @default.
- W2017230462 hasConceptScore W2017230462C2780091579 @default.
- W2017230462 hasConceptScore W2017230462C2780216420 @default.
- W2017230462 hasConceptScore W2017230462C2780931953 @default.
- W2017230462 hasConceptScore W2017230462C3675279 @default.
- W2017230462 hasConceptScore W2017230462C55493867 @default.
- W2017230462 hasConceptScore W2017230462C62231903 @default.
- W2017230462 hasConceptScore W2017230462C71924100 @default.
- W2017230462 hasConceptScore W2017230462C86803240 @default.
- W2017230462 hasConceptScore W2017230462C96942376 @default.
- W2017230462 hasFunder F4320320909 @default.
- W2017230462 hasFunder F4320320912 @default.