Cardiac and placental mitochondrial characterization in a rabbit model of intrauterine growth restriction

dc.contributor.author
Guitart Mampel, Mariona
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González Tendero, Anna
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Niñerola, S.
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Morén Núñez, Constanza
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Catalán García, Marc
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González Casacuberta, Ingrid
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Juárez Flores, Diana Luz
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Ugarteburu López, Olatz
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Matalonga Borrel, Lesley
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Cascajo, M. V.
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Tort, Frederic
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Cortés, A.
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Tobías, Ester
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Milisenda, José
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Grau Junyent, Josep M. (Josep Maria)
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Crispi Brillas, Fàtima
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Gratacós Solsona, Eduard
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Garrabou Tornos, Glòria
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Cardellach, Francesc
dc.date.issued
2018-07-12T07:50:22Z
dc.date.issued
2019-02-13T06:10:19Z
dc.date.issued
2018-02-13
dc.date.issued
2018-07-12T07:50:22Z
dc.identifier
0304-4165
dc.identifier
https://hdl.handle.net/2445/123505
dc.identifier
677211
dc.identifier
29452236
dc.description.abstract
BACKGROUND: Intrauterine growth restriction (IUGR) is associated with cardiovascular remodeling persisting into adulthood. Mitochondrial bioenergetics, essential for embryonic development and cardiovascular function, are regulated by nuclear effectors as sirtuins. A rabbit model of IUGR and cardiovascular remodeling was generated, in which heart mitochondrial alterations were observed by microscopic and transcriptomic analysis. We aimed to evaluate if such alterations are translated at a functional mitochondrial level to establish the etiopathology and potential therapeutic targets for this obstetric complication. METHODS: Hearts and placentas from 16 IUGR-offspring and 14 controls were included to characterize mitochondrial function. RESULTS: Enzymatic activities of complexes II, IV and II + III in IUGR-hearts (-11.96 ± 3.16%; -15.58 ± 5.32%; -14.73 ± 4.37%; p < 0.05) and II and II + III in IUGR-placentas (-17.22 ± 3.46%; p < 0.005 and -29.64 ± 4.43%; p < 0.001) significantly decreased. This was accompanied by a not significant reduction in CI-stimulated oxygen consumption and significantly decreased complex II SDHB subunit expression in placenta (-44.12 ± 5.88%; p < 0.001). Levels of mitochondrial content, Coenzyme Q and cellular ATP were conserved. Lipid peroxidation significantly decreased in IUGR-hearts (-39.02 ± 4.35%; p < 0.001), but not significantly increased in IUGR-placentas. Sirtuin3 protein expression significantly increased in IUGR-hearts (84.21 ± 31.58%; p < 0.05) despite conserved anti-oxidant SOD2 protein expression and activity in both tissues. CONCLUSIONS: IUGR is associated with cardiac and placental mitochondrial CII dysfunction. Up-regulated expression of Sirtuin3 may explain attenuation of cardiac oxidative damage and preserved ATP levels under CII deficiency. GENERAL SIGNIFICANCE: These findings may allow the design of dietary interventions to modulate Sirtuin3 expression and consequent regulation of mitochondrial imbalance associated with IUGR and derived cardiovascular remodeling.
dc.format
50 p.
dc.format
application/pdf
dc.language
eng
dc.publisher
Elsevier B.V.
dc.relation
Versió postprint del document publicat a: https://doi.org/10.1016/j.bbagen.2018.02.006
dc.relation
Biochimica et Biophysica Acta-General Subjects, 2018, vol. 1862, num. 5, p. 1157-1167
dc.relation
https://doi.org/10.1016/j.bbagen.2018.02.006
dc.rights
cc-by-nc-nd (c) Elsevier B.V., 2018
dc.rights
http://creativecommons.org/licenses/by-nc-nd/3.0/es
dc.rights
info:eu-repo/semantics/openAccess
dc.source
Articles publicats en revistes (Cirurgia i Especialitats Medicoquirúrgiques)
dc.subject
Cor
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Creixement fetal
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Conills
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Obstetrícia
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Mitocondris
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Heart
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Fetal growth
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Rabbits
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Obstetrics
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Mitochondria
dc.title
Cardiac and placental mitochondrial characterization in a rabbit model of intrauterine growth restriction
dc.type
info:eu-repo/semantics/article
dc.type
info:eu-repo/semantics/acceptedVersion


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