P1483: EPELEUTON, A NOVEL SYNTHETIC SECOND GENERATION W-3 FATTY ACID, PROTECTS HUMANIZED SICKLE CELL MICE AGAINST HYPOXIA/REOXYGENATION ORGAN DAMAGE

Bibliographic Details
Main Authors: E. Federti, A. Matte’, M. Hamza, A. Lafferty, D. Coughlan, M. Weissbach, D. L. Bhatt, V. Riccardi, R. Perissinotto, A. Siciliano, J. Climax, C. Brugnara, L. De Franceschi
Format: Article
Language:English
Published: Wiley 2022-06-01
Series:HemaSphere
Online Access:http://journals.lww.com/10.1097/01.HS9.0000848788.30039.63
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author E. Federti
A. Matte’
M. Hamza
A. Lafferty
D. Coughlan
M. Weissbach
D. L. Bhatt
V. Riccardi
R. Perissinotto
A. Siciliano
J. Climax
C. Brugnara
L. De Franceschi
author_facet E. Federti
A. Matte’
M. Hamza
A. Lafferty
D. Coughlan
M. Weissbach
D. L. Bhatt
V. Riccardi
R. Perissinotto
A. Siciliano
J. Climax
C. Brugnara
L. De Franceschi
author_sort E. Federti
collection DOAJ
first_indexed 2024-03-07T16:55:28Z
format Article
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institution Directory Open Access Journal
issn 2572-9241
language English
last_indexed 2024-03-07T16:55:28Z
publishDate 2022-06-01
publisher Wiley
record_format Article
series HemaSphere
spelling doaj.art-eb2a7b04aa7d4fd4b4f1a62bb1e14c9d2024-03-03T04:28:14ZengWileyHemaSphere2572-92412022-06-0161365136610.1097/01.HS9.0000848788.30039.63202206003-01365P1483: EPELEUTON, A NOVEL SYNTHETIC SECOND GENERATION W-3 FATTY ACID, PROTECTS HUMANIZED SICKLE CELL MICE AGAINST HYPOXIA/REOXYGENATION ORGAN DAMAGEE. Federti0A. Matte’1M. Hamza2A. Lafferty3D. Coughlan4M. Weissbach5D. L. Bhatt6V. Riccardi7R. Perissinotto8A. Siciliano9J. Climax10C. Brugnara11L. De Franceschi121 Dept of Medicine, University of Verona, Verona, Italy1 Dept of Medicine, University of Verona, Verona, Italy2 Afimmune Ltd, Dublin, Ireland2 Afimmune Ltd, Dublin, Ireland2 Afimmune Ltd, Dublin, Ireland2 Afimmune Ltd, Dublin, Ireland3 Brigham and Women’s Hospital Heart & Vascular Center1 Dept of Medicine, University of Verona, Verona, Italy1 Dept of Medicine, University of Verona, Verona, Italy1 Dept of Medicine, University of Verona, Verona, Italy2 Afimmune Ltd, Dublin, Ireland4 Dept of Laboratory Medicine, Harvard Medical School, Boston, United States of America1 Dept of Medicine, University of Verona, Verona, Italyhttp://journals.lww.com/10.1097/01.HS9.0000848788.30039.63
spellingShingle E. Federti
A. Matte’
M. Hamza
A. Lafferty
D. Coughlan
M. Weissbach
D. L. Bhatt
V. Riccardi
R. Perissinotto
A. Siciliano
J. Climax
C. Brugnara
L. De Franceschi
P1483: EPELEUTON, A NOVEL SYNTHETIC SECOND GENERATION W-3 FATTY ACID, PROTECTS HUMANIZED SICKLE CELL MICE AGAINST HYPOXIA/REOXYGENATION ORGAN DAMAGE
HemaSphere
title P1483: EPELEUTON, A NOVEL SYNTHETIC SECOND GENERATION W-3 FATTY ACID, PROTECTS HUMANIZED SICKLE CELL MICE AGAINST HYPOXIA/REOXYGENATION ORGAN DAMAGE
title_full P1483: EPELEUTON, A NOVEL SYNTHETIC SECOND GENERATION W-3 FATTY ACID, PROTECTS HUMANIZED SICKLE CELL MICE AGAINST HYPOXIA/REOXYGENATION ORGAN DAMAGE
title_fullStr P1483: EPELEUTON, A NOVEL SYNTHETIC SECOND GENERATION W-3 FATTY ACID, PROTECTS HUMANIZED SICKLE CELL MICE AGAINST HYPOXIA/REOXYGENATION ORGAN DAMAGE
title_full_unstemmed P1483: EPELEUTON, A NOVEL SYNTHETIC SECOND GENERATION W-3 FATTY ACID, PROTECTS HUMANIZED SICKLE CELL MICE AGAINST HYPOXIA/REOXYGENATION ORGAN DAMAGE
title_short P1483: EPELEUTON, A NOVEL SYNTHETIC SECOND GENERATION W-3 FATTY ACID, PROTECTS HUMANIZED SICKLE CELL MICE AGAINST HYPOXIA/REOXYGENATION ORGAN DAMAGE
title_sort p1483 epeleuton a novel synthetic second generation w 3 fatty acid protects humanized sickle cell mice against hypoxia reoxygenation organ damage
url http://journals.lww.com/10.1097/01.HS9.0000848788.30039.63
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