Key result
Dual PAR1 and PAR2 blockade additively reduces UACR and histological injury in diabetic mice.
Why the study?
It was unclear how PAR1 and PAR2 cooperatively contribute to diabetic kidney disease pathogenesis and whether dual blockade of both receptors is more effective.
Does dual blockade of PAR1 and PAR2 ameliorate diabetic kidney disease in a mouse model?
Does dual blockade of PAR1 and PAR2 ameliorate diabetic kidney disease in a mouse model?
Dual blockade of PAR1 and PAR2 additively ameliorates diabetic kidney disease in a mouse model, suggesting a potential novel therapeutic option.
Hypothesis-generating for dual PAR1/PAR2 blockade in diabetic kidney disease; leaves open translation to human therapy.
Protease-activated receptors (PARs) are coagulation protease targets, and they increase expression of inflammatory cytokines and chemokines in various diseases. Of all PARs, previous reports have shown that PAR1 or PAR2 inhibition is protective against diabetic glomerular injury. However, how PAR1 and PAR2 cooperatively contribute to diabetic kidney disease (DKD) pathogenesis and whether dual blockade of PARs is more effective in DKD remain elusive. To address this issue, male type I diabetic Akita mice heterozygous for endothelial nitric oxide synthase were used as a model of DKD. Mice (4 mo old) were divided into four treatment groups and administered vehicle, PAR1 antagonist (E5555, 60 mg·kg−1·day−1), PAR2 antagonist (FSLLRY, 3 mg·kg−1·day−1), or E5555 + FSLLRY for 4 wk. The results showed that the urinary albumin creatinine ratio was significantly reduced when both PAR1 and PAR2 were blocked with E5555 + FSLLRY compared with the vehicle-treated group. Dual blockade of PAR1 and PAR2 by E5555 + FSLLRY additively ameliorated histological injury, including mesangial expansion, glomerular macrophage infiltration, and collagen type IV deposition. Marked reduction of inflammation- and fibrosis-related gene expression in the kidney was also observed. In vitro, PAR1 and PAR2 agonists additively increased mRNA expression of macrophage chemoattractant protein 1 or plasminogen activator inhibitor-1 in human endothelial cells. Changes induced by the PAR1 agonist were blocked by a NF-κB inhibitor, whereas those of the PAR2 agonist were blocked by MAPK and/or NF-κB inhibitors. These findings suggest that PAR1 and PAR2 additively contribute to DKD pathogenesis and that dual blockade of both could be a novel therapeutic option for treatment of patients with DKD.
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Mitsui et al. (2020) studied Diabetic kidney disease. E5555 + FSLLRY (PAR1 and PAR2 antagonists) vs. Vehicle, PAR1 antagonist alone, or PAR2 antagonist alone was evaluated on Urinary albumin creatinine ratio and histological injury. Dual blockade of PAR1 and PAR2 with E5555 and FSLLRY additively reduced the urinary albumin creatinine ratio and ameliorated histological injury in a mouse model of diabetic kidney disease.
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