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  4. High concentration of C5a-induced mitochondria-dependent apoptosis in murine kidney endothelial cells
 
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High concentration of C5a-induced mitochondria-dependent apoptosis in murine kidney endothelial cells

Journal
International Journal of Molecular Sciences
Journal Volume
20
Journal Issue
18
Date Issued
2019
Author(s)
I-JUNG TSAI  
WEI-CHOU LIN  
YAO-HSU YANG  
Tseng Y.-L.
YEN-HUNG LIN  
Chou C.-H.
Tsau Y.-K.
DOI
10.3390/ijms20184465
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85072141420&doi=10.3390%2fijms20184465&partnerID=40&md5=49a52933e3495d4cfaf3c4a48f493b9a
https://scholars.lib.ntu.edu.tw/handle/123456789/527643
Abstract
Patients with a relapse of idiopathic nephrotic syndrome have significantly increased levels of serum complement component 5a (C5a), and proteinuria has been noted in mice treated with C5a via changes in permeability of kidney endothelial cells (KECs) in established animal models. However, the apoptosis of KECs treated with high concentrations of C5a has also been observed. As mitochondrial damage is known to be important in cell apoptosis, the aim of this study was to examine the association between C5a-induced mouse KEC apoptosis and mitochondrial damage. Mouse KECs were isolated and treated with different concentrations of C5a. Cell viability assays showed that a high-concentration mouse recombinant protein C5a (rmC5a) treatment reduced mouse KEC growth. Cell cycle phase analysis, including apoptosis (sub-G1 phase) showed an increased percentage of the subG1 phase with a high-concentration rmC5a treatment. Cytochrome c and caspase 3/9 activities were significantly induced in the mouse KECs after a high-dose rmC5a (50 ng/mL) treatment, and this was rescued by pretreatment with the C5a receptor (C5aR) inhibitor (W-54011) and N-acetylcysteine (NAC). Reactive oxygen species (ROS) formation was detected in C5a-treated mouse KECs; however, W-54011 or NAC pretreatment inhibited high-dose rmC5a-induced ROS formation and also reduced cytochrome c release, apoptotic cell formation, and apoptotic DNA fragmentation. These factors determined the apoptosis of mouse KECs treated with high-dose C5a through C5aR and subsequently led to apoptosis via ROS regeneration and cytochrome c release. The results showed that high concentrations of C5a induced mouse KEC apoptosis via a C5aR/ROS/mitochondria-dependent pathway. These findings may shed light on the potential mechanism of glomerular sclerosis, a process in idiopathic nephrotic syndrome causing renal function impairment.
SDGs

[SDGs]SDG3

Publisher
MDPI AG
Type
journal article

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