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Adenosine is upregulated during peritonitis and is involved in downregulation of inflammation
1Department of Nephrology, Soroka Medical Center and Ben-Gurion University of the Negev, Beer Sheva, Israel.
Abstract:
Loss of function of the peritoneal membrane is associated with peritonitis. Adenosine levels in sites of inflammation were shown to increase and exhibit immunoregulatory effects. Our aim was to elucidate the regulatory role of adenosine during peritonitis and to test the involvement of peritoneal mesothelial cells (PMC) in adenosine regulation. In a mice model of Escherichia coli peritonitis, the adenosine A(2A) receptor (A(2A)R) agonist (CGS21680) prevented leukocyte recruitment and reduced tumor necrosis factor alpha (TNF-alpha) and interleukin-6 (IL-6) levels. Peritonitis induced the elevation of adenosine with a peak at 24 h. Analysis of adenosine receptor levels on peritoneum showed that A(1) receptor (A(1)R) protein levels peak at 12 h after inoculation and then return to baseline at 24 h, whereas high affinity A(2A)R protein levels peak at 24 h concomitantly with the peak of adenosine concentration. Low affinity A(2B) receptor (A(2B)R) levels elevated slowly, remaining elevated up to 48 h. In human PMC (HPMC), the early cytokines, IL-1-alpha, and TNF-alpha upregulated the A(2B) and A(2A) receptors. However, interferon-gamma (IFN-gamma) upregulated the A(2B)R and decreased A(2A)R levels. Treatment with the A(2A)R agonist reduced IL-1-dependent IL-6 secretion from HPMC. In conclusion, the kinetics of adenosine receptors suggest that at early stage of peritonitis, the A(1)R dominates, and later its dominance is replaced by the G stimulatory (Gs) protein-coupled A(2A)R that suppresses inflammation. Early proinflammatory cytokines are an inducer of the A(2A)R and this receptor reduces their production and leukocyte recruitment. Future treatment with adenosine agonists should be considered for attenuating the damage to mesothelium during the course of acute peritonitis.
Insights
Adenosine receptors, particularly A(2A)R, play a key role in regulating inflammation during peritonitis. Targeting these adenosine receptors may offer new treatments for acute peritonitis and mesothelial damage.
Area of Science:
- Immunology
- Cell Biology
- Pharmacology
Background:
- Peritonitis involves peritoneal membrane dysfunction and increased adenosine levels at inflammatory sites.
- Adenosine exhibits immunoregulatory effects, but its specific role in peritonitis requires elucidation.
- Peritoneal mesothelial cells (PMC) are investigated for their involvement in adenosine regulation during peritonitis.
Purpose of the Study:
- To clarify the regulatory role of adenosine in peritonitis.
- To investigate the involvement of peritoneal mesothelial cells (PMC) in adenosine regulation.
- To assess the therapeutic potential of adenosine receptor agonists in peritonitis.
Main Methods:
- An Escherichia coli peritonitis mouse model was used to study adenosine receptor kinetics and function.
- Adenosine receptor (A(1)R, A(2A)R, A(2B)R) protein levels were analyzed in the peritoneum over time.
- Human PMC (HPMC) were treated with cytokines (IL-1-alpha, TNF-alpha, IFN-gamma) to assess receptor expression and cytokine secretion.
Main Results:
- Adenosine A(2A) receptor (A(2A)R) agonist administration reduced leukocyte recruitment and pro-inflammatory cytokine levels (TNF-alpha, IL-6).
- Adenosine levels peaked at 24 hours post-infection, coinciding with elevated A(2A)R and A(2B)R protein levels.
- Pro-inflammatory cytokines upregulated A(2B)R and A(2A)R in HPMC, while IFN-gamma decreased A(2A)R. A(2A)R agonist treatment reduced IL-6 secretion.
Conclusions:
- Adenosine receptor kinetics shift during peritonitis, with A(1)R dominating early and A(2A)R later, suppressing inflammation.
- Early pro-inflammatory cytokines induce A(2A)R, which subsequently reduces their production and leukocyte recruitment.
- Adenosine agonists represent a potential therapeutic strategy for mitigating mesothelial damage in acute peritonitis.
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