Moritz Schnelle, Iain Sawyer, Narayana Anilkumar, Belal A. Mohamed, Daniel A. Richards, Karl Toischer, Min Zhang, Norman Catibog, Greta Sawyer, Héloïse Mongue-Din, Katrin Schröder, Gerd Hasenfuß, Ajay M. Shah
- Aims: Chronic pressure or volume overload induce concentric vs. eccentric left ventricular (LV) remodelling, respectively. Previous studies suggest that distinct signalling pathways are involved in these responses. NADPH oxidase-4 (Nox4) is a reactive oxygen species-generating enzyme that can limit detrimental cardiac remodelling in response to pressure overload. This study aimed to assess its role in volume overload-induced remodelling.
Methods and results: We compared the responses to creation of an aortocaval fistula (Shunt) to induce volume overload in Nox4-null mice (Nox4−/−) vs. wild-type (WT) littermates. Induction of Shunt resulted in a significant increase in cardiac Nox4 mRNA and protein levels in WT mice as compared to Sham controls. Nox4−/− mice developed less eccentric LV remodelling than WT mice (echocardiographic relative wall thickness: 0.30 vs. 0.27, P < 0.05), with less LV hypertrophy at organ level (increase in LV weight/tibia length ratio of 25% vs. 43%, P < 0.01) and cellular level (cardiomyocyte cross-sectional area: 323 µm2 vs. 379 μm2, P < 0.01). LV ejection fraction, foetal gene expression, interstitial fibrosis, myocardial capillary density, and levels of myocyte apoptosis after Shunt were similar in the two genotypes. Myocardial phospho-Akt levels were increased after induction of Shunt in WT mice, whereas levels decreased in Nox4−/− mice (+29% vs. −21%, P < 0.05), associated with a higher level of phosphorylation of the S6 ribosomal protein (S6) and the eIF4E-binding protein 1 (4E-BP1) in WT compared to Nox4−/− mice. We identified that Akt activation in cardiac cells is augmented by Nox4 via a Src kinase-dependent inactivation of protein phosphatase 2A.
Conclusion: Endogenous Nox4 is required for the full development of eccentric cardiac hypertrophy and remodelling during chronic volume overload. Nox4-dependent activation of Akt and its downstream targets S6 and 4E-BP1 may be involved in this effect.
MetadatenAuthor: | Moritz SchnelleORCiD, Iain Sawyer, Narayana Anilkumar, Belal A. MohamedORCiD, Daniel A. RichardsORCiD, Karl ToischerORCiDGND, Min Zhang, Norman CatibogORCiD, Greta SawyerORCiD, Héloïse Mongue-DinORCiD, Katrin SchröderORCiDGND, Gerd HasenfußORCiDGND, Ajay M. ShahORCiD |
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URN: | urn:nbn:de:hebis:30:3-633187 |
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DOI: | https://doi.org/10.1093/cvr/cvz331 |
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ISSN: | 1755-3245 |
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Parent Title (English): | Cardiovascular research |
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Publisher: | Oxford University Press |
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Place of publication: | Oxford |
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Document Type: | Article |
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Language: | English |
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Date of Publication (online): | 2019/12/10 |
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Date of first Publication: | 2019/12/10 |
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Publishing Institution: | Universitätsbibliothek Johann Christian Senckenberg |
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Release Date: | 2023/07/19 |
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Tag: | Cardiac remodelling; Heart; Mouse models; NADPH oxidase; Volume overload; cardiac myocytes; cardiomegaly; excess fluid volume; mice; myocardium; nadp; phosphorylation; proto-oncogene proteins c-akt; shunt |
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Volume: | 117 |
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Issue: | 1 |
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Page Number: | 10 |
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First Page: | 178 |
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Last Page: | 187 |
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HeBIS-PPN: | 511905882 |
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Institutes: | Medizin / Medizin |
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Dewey Decimal Classification: | 6 Technik, Medizin, angewandte Wissenschaften / 61 Medizin und Gesundheit / 610 Medizin und Gesundheit |
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Sammlungen: | Universitätspublikationen |
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Licence (German): | Creative Commons - CC BY - Namensnennung 4.0 International |
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