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The complement C3-complement factor D-C3a receptor signalling axis regulates cardiac remodelling in right ventricular failure

delete2022-09-15
delete14
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OA
AI
S
Shogo Ito
H
Hisayuki Hashimoto
H
Hiroyuki Yamakawa
D
Dai Kusumoto
Y
Yohei Akiba
T
Takahiro Nakamura
M
Mizuki Momoi
J
Jin Komuro
T
Toshiomi Katsuki
M
Mai Kimura
Y
Yoshikazu Kishino
S
Shin Kashimura
A
Akira Kunitomi
M
Mark Lachmann
M
Masaya Shimojima
G
Gakuto Yozu
C
Chikaaki Motoda
T
Tomohisa Seki
T
Tsunehisa Yamamoto
Y
Yoshiki Shinya
T
Takahiro Hiraide
M
Masaharu Kataoka
T
Takashi Kawakami
K
K. Suzuki
K
Kei Ito
H
Hirotaka Yada
M
Manabu Abe
M
Mizuko Osaka
H
Hiromi Tsuru
M
Masayuki Yoshida
K
Kenji Sakimura
Y
Yoshihiro Fukumoto
M
Michisuke Yuzaki
K
Keiichi Fukuda
S
Shinsuke Yuasa *
DOI:10.1038/s41467-022-33152-9delete
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Abstract

Abstract

En 中文
Right ventricular (RV) failure is clinically crucial, but there is no specific therapy. Here, the authors show that the complement alternative pathway is activated in RV failure and that blockade of the pathway ameliorates RV failure in mice. Failure of the right ventricle plays a critical role in any type of heart failure. However, the mechanism remains unclear, and there is no specific therapy. Here, we show that the right ventricle predominantly expresses alternative complement pathway-related genes, including Cfd and C3aR1. Complement 3 (C3)-knockout attenuates right ventricular dysfunction and fibrosis in a mouse model of right ventricular failure. C3a is produced from C3 by the C3 convertase complex, which includes the essential component complement factor D (Cfd). Cfd-knockout mice also show attenuation of right ventricular failure. Moreover, the plasma concentration of CFD correlates with the severity of right ventricular failure in patients with chronic right ventricular failure. A C3a receptor (C3aR) antagonist dramatically improves right ventricular dysfunction in mice. In summary, we demonstrate the crucial role of the C3-Cfd-C3aR axis in right ventricular failure and highlight potential therapeutic targets for right ventricular failure.
Keywords:
HEART-FAILURE
WORKING GROUP
MOLECULAR-MECHANISMS
ACTIVATION
C3A
CELLS
DYSFUNCTION
MANAGEMENT
STATEMENT
DISEASE
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Nature Communications cover
Nature Communications
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15.7
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9.2W
Citations:
91.2W

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Keio University
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national defense medical college - japan
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