| Literature DB >> 36148521 |
Jun Wu1, Jushuang Li1, Baohong Feng1, Zhimin Bi1, Geli Zhu1, Yanxia Zhang1, Xiangyou Li1.
Abstract
BACKGROUND: The pathogenesis of peritoneal dialysis (PD)-related peritoneal fibrosis (PF) is not clearly understood, and current treatment options are limited.Entities:
Keywords: AMPK; PGC-1α; Peritoneal dialysis; mitochondrial biogenesis; peritoneal fibrosis
Mesh:
Substances:
Year: 2022 PMID: 36148521 PMCID: PMC9518249 DOI: 10.1080/0886022X.2022.2126789
Source DB: PubMed Journal: Ren Fail ISSN: 0886-022X Impact factor: 3.222
Figure 2.Mitochondrial alterations in a mouse model of PF. To determine the effect of PF on mitochondrial morphology, we observed the mitochondrial changes in PMCs in parietal peritoneal tissue using TEM. Typical TEM images are displayed (magnification ×15,000). PMCs: peritoneal mesothelial cells; TEM: transmission electron microscopy; PF: peritoneal fibrosis; PF + Met: peritoneal fibrosis + metformin; PF + PGC-1α: peritoneal fibrosis + PGC-1α overexpression; PF + Vector: peritoneal fibrosis + empty adenoviral vector.
Figure 4.Activation of the AMPK-PGC-1α pathway inhibited the apoptosis of PMCs. The apoptosis of PMCs in parietal peritoneal tissue was revealed using a TUNEL assay. Representative images are displayed (magnification ×400). Quantitative analysis of TUNEL-positive cells. The results are representative of three independent experiments. *p < 0.05 vs. Control. #p < 0.05 vs. PF. PMCs: peritoneal mesothelial cells; TUNEL: TdT-mediated dUTP nick-end labeling; PF: peritoneal fibrosis; PF + Met: peritoneal fibrosis + metformin; PF + PGC-1α: peritoneal fibrosis + PGC-1α overexpression; PF + Vector: peritoneal fibrosis + empty adenoviral vector.