FR Tours Dumas JF: Difference between revisions
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<nowiki>{{ | <nowiki> {{O2k-Network Lab | ||
| | |institution=Inserm U 921, Laboratoire Nutrition, Croissance et Cancer, Facultรฉ de Mรฉdecine, Bรขtiment Dutrochet | ||
ย | |address=10 bis boulevard Tonnellรฉ | ||
Inserm U 921 | |area code=37032 ย | ||
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Laboratoire Nutrition, Croissance et Cancer | |||
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Facultรฉ de Mรฉdecine | |||
ย | |||
Bรขtiment Dutrochet | |||
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10 bis boulevard Tonnellรฉ | |||
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37032 | |||
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|city=Tours | |city=Tours | ||
|country=France | |country=France | ||
|MiPNetLab=Dumas JF, | |Contact=Dumas Jean-Francois | ||
| | |MiPNetLab= Dumas JF, | ||
|Team previous= | |||
|Status= | |||
|info= | |||
}} | }} | ||
Revision as of 16:10, 4 March 2015
FR Tours Dumas JF
O2k-Network Lab | Inserm U 921, Laboratoire Nutrition, Croissance et Cancer, Facultรฉ de Mรฉdecine, Bรขtiment Dutrochet |
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Address | 10 bis boulevard Tonnellรฉ, 37032 |
City | Tours |
State/Prov | |
Country | France |
Weblink | |
Contact | Dumas Jean-Francois |
Team | Dumas JF |
Team previous | |
Status | |
Oroboros Events | |
Topics |
O2k-Publications
Published | Reference | |
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Peyta 2016 Biochim Biophys Acta | 2016 | Peyta L, Jarnouen K, Pinault M, Guimaraes C, Pais de Barros JP, Chevalier S, Dumas JF, Maillot F, Hatch GM, Loyer P, Servais S (2016) Reduced cardiolipin content decreases respiratory chain capacities and increases ATP synthesis yield in the human HepaRG cells. Biochim Biophys Acta 1857:443-53. |
Peyta 2015 Biochim Biophys Acta | 2015 | Peyta L, Jarnouen K, Pinault M, Coulouarn C, Guimaraes C, Goupille C, de Barros JP, Chevalier S, Dumas JF, Maillot F, Hatch GM, Loyer P, Servais S (2015) Regulation of hepatic cardiolipin metabolism by TNFฮฑ: Implication in cancer cachexia. Biochim Biophys Acta 1851:1490-500. |
Seillier 2015 EMBO Mol Med | 2015 | Seillier M, Pouyet L, N'Guessan P, Nollet M, Capo F, Guillaumond F, Peyta L, Dumas JF, Varrault A, Bertrand G, Bonnafous S, Tran A, Meur G, Marchetti P, Ravier MA, Dalle S, Gual P, Muller D, Rutter GA, Servais S, Iovanna JL, Carrier A (2015) Defects in mitophagy promote redox-driven metabolic syndrome in the absence of TP53INP1. EMBO Mol Med 7:802-18. |
O2k-Abstracts
update please