Qi‑Long Wang’s research while affiliated with Second Military Medical University and other places

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Publications (1)


Figure 1. EP4 protein expression in the rat liver during reperfusion. (A) Immunohistochemical and (B) western blot analyses of EP4 protein expression in the rat liver after 2 and 6 h of reperfusion following 60 min of ischemia. EP4 was prominently expressed in the membranes as well as in the cytoplasm of hepatocytes and on sinusoidal cells, mainly in the periportal region (magnification, x100). Higher EP4 protein expression was found in I/R livers than in sham livers after 2 h of reperfusion. After 6 h of reperfusion, EP4 expression decreased. Differences were evaluated using the unpaired two-tailed Student's t-test;
Figure 6. ERK1/2 inhibition decreases EP4 agonist-mediated hepatoprotection after 6 h of reperfusion. (A) H&E staining of liver tissues (magnification, x100) and percentages of necrotic cells measured in the H&E-stained sections. (B) Western blot analysis of p-GSK3β and GSK3β protein expression in liver tissues. (C) CRC levels in liver mitochondria. (D) ROS levels in liver tissues. n=6. * P<0.05. I/R, ischemia/reperfusion; EP4, prostaglandin E receptor subtype 4; H&E, hematoxylin and eosin; CAY, CAY10598; PD, PD98059; CATR, carboxyatractyloside; ROS, reactive oxygen species; CRC, calcium retention capacity; GSK3β, glycogen synthase kinase 3β.
EP4 activation ameliorates liver ischemia/reperfusion injury via ERK1/2‑GSK3β‑dependent MPTP inhibition
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March 2020

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84 Reads

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14 Citations

International Journal of Molecular Medicine

Lin‑Lin Cai

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Hai‑Tao Xu

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Qi‑Long Wang

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[...]

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Hai‑Long Fu

Prostaglandin E receptor subtype 4 (EP4) is widely distributed in the heart, but its role in hepatic ischemia/reperfusion (I/R), particularly in mitochondrial permeability transition pore (MPTP) modulation, is yet to be elucidated. In the present study, an EP4 agonist (CAY10598) was used in a rat model to evaluate the effects of EP4 activation on liver I/R and the mechanisms underlying this. I/R insult upregulated hepatic EP4 expression during early reperfusion. In addition, subcutaneous CAY10598 injection prior to the onset of reperfusion significantly increased hepatocyte cAMP concentrations and decreased serum ALT and AST levels and necrotic and apoptotic cell percentages, after 6 h of reperfusion. Moreover, CAY10598 protected mitochondrial morphology, markedly inhibited mitochondrial permeability transition pore (MPTP) opening and decreased liver reactive oxygen species levels. This occurred via activation of the ERK1/2‑GSK3β pathway rather than the janus kinase (JAK)2‑signal transducers and activators of transcription (STAT)3 pathway, and resulted in prevention of mitochondria‑associated cell injury. The MPTP opener carboxyatractyloside (CATR) and the ERK1/2 inhibitor PD98059 also partially reversed the protective effects of CAY10598 on the liver and mitochondria. The current findings indicate that EP4 activation induces ERK1/2‑GSK3β signaling and subsequent MPTP inhibition to provide hepatoprotection, and these observations are informative for developing new molecular targets and preventative therapies for I/R in a clinical setting.

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Citations (1)


... 17 In hepatic ischemiareperfusion, GSK-3β expression is activated after the use of prostaglandin receptor (IPR) agonists. 18 Therefore, we inferred BPS affected GSK-3β expression in MI. ...

Reference:

Beraprost sodium attenuates the development of myocardial fibrosis after myocardial infarction by regulating GSK‐3β expression in rats
EP4 activation ameliorates liver ischemia/reperfusion injury via ERK1/2‑GSK3β‑dependent MPTP inhibition

International Journal of Molecular Medicine