Complement 5a Receptor deficiency does not influence adverse cardiac remodeling after pressure-overload in mice

Publication date

2017-12-06

Authors

De Haan, Judith J.
Bosch, Lena
Borgman, Anouska
Bastemeijer, Marissa
Brans, Maike A
Van De Weg, Sander M.
de Kleijn, DominiqueORCID 0000-0003-2714-2140
Sluijter, JoostORCID 0000-0003-2088-9102ISNI 0000000392195257
El Azzouzi, HamidISNI 0000000391440329
Jager, Saskia Christel Antoinette deORCID 0000-0002-5233-0066ISNI 0000000390471772

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Abstract

Hypertension is one of the most common risk factors for the development heart failure in the general population. Inflammation plays a central role in this adverse remodeling and eventually to the development of heart failure. Circulating levels of Complement factor 5a (C5a) are increased in hypertensive patients and the C5a receptor is associated with the presence of cardiac fibrosis and inflammation in an experimental hypertension model. To test if C5aR is involved in adverse cardiac remodeling following pressure-overload, we induced transverse aortic constriction (TAC) in wildtype and C5a receptor deficient mice (C5aR-/-). Six weeks after TAC, C5aR-/- animals showed a similar degree of cardiac hypertrophy and decrease in cardiac function as wild type mice (End Systolic Volume; 50.30±5.32 μl vs. 55.81±8.16 μl). In addition, other features of adverse cardiac remodeling like cardiomyocyte cell size (WGA staining), fibrosis (picrosirius red staining) or collagen degradation (matrix metalloproteinase activity assay) did not differ either. In conclusion, full body C5aR deficiency does not affect adverse cardiac remodeling after pressure-overload. However, our finding are in contrast with C5a inhibition studies. Our observations do present the role of C5a-C5aR in adverse cardiac remodeling and heart failure as controversial at the least.

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De Haan, J J, Bosch, L, Borgman, A, Bastemeijer, M, Brans, M A D, Van De Weg, S M, De Kleijn, D P V, Sluijter, J P G, El Azzouzi, H & De Jager, S C A 2017, 'Complement 5a Receptor deficiency does not influence adverse cardiac remodeling after pressure-overload in mice', Scientific Reports, vol. 7, no. 1, 17045. https://doi.org/10.1038/s41598-017-16957-3