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(Pro)Renin Receptor Decoy Peptide PRO20 Protects against Oxidative Renal Damage Induced by Advanced Oxidation Protein
Hui Fang1, Teng Yang1, Baolong Zhou1
1School of Pharmacy, Weifang Medical University, Weifang 261053, China.
Abstract:
Chronic kidney disease (CKD) is associated with advanced oxidation protein products (AOPPs). A recent study has shown that AOPP-induced renal tubular injury is mediated by the (pro)renin receptor (PRR). However, it is unclear whether the PRR decoy inhibitor PRO20 can protect against renal damage related to AOPPs in vivo. In this study, we examined the role of the PRR in rats with AOPP-induced renal oxidative damage. Male SD rats were subjected to unilateral nephrectomy, and after a four-day recuperation period, they were randomly divided into four groups (n = 6/group) for four weeks: control (CTR), unmodified rat serum albumin (RSA, 50 mg/kg/day via tail-vein injection), AOPPs-RSA (50 mg/kg/day via tail-vein injection), and AOPPs-RSA + PRO20 (50 mg/kg/day via tail-vein injection + 500 μg/kg/day via subcutaneous injection) groups. PRO20 was administered 3 days before AOPPs-RSA injection. Renal histopathology evaluation was performed by periodic acid-Schiff (PAS) staining, and biochemical parameters related to renal injury and oxidative stress biomarkers were evaluated. The expression of related indicators was quantified by RT-qPCR and immunoblotting analysis. In the results, rats in the AOPPs-RSA group exhibited higher levels of albuminuria, inflammatory cell infiltration, and tubular dilation, along with upregulation of oxidative stress, profibrotic and proinflammatory factors, and elevation of AOPP levels. Meanwhile, in the PRO20 group, these were significantly reduced. Moreover, the levels of almost all components of the renin-angiotensin system (RAS) and Nox4-dependent H2O2 production in urine and the kidneys were elevated by AOPPs-RSA, while they were suppressed by PRO20. Furthermore, AOPPs-RSA rats showed elevated kidney expression of the PRR and soluble PRR (sPRR) and increased renal excretion of sPRR. In summary, these findings suggest that PRR inhibition may serve as a protective mechanism against AOPP-induced nephropathy by inhibiting the intrarenal RAS and Nox4-derived H2O2 mechanisms.
Insights
The (pro)renin receptor (PRR) inhibitor PRO20 protected against advanced oxidation protein product (AOPP)-induced kidney damage in rats. PRO20 reduced oxidative stress, inflammation, and fibrosis by inhibiting the intrarenal renin-angiotensin system (RAS) and Nox4-derived hydrogen peroxide.
Area of Science:
- Nephrology
- Oxidative Stress Research
- Molecular Medicine
Background:
- Chronic kidney disease (CKD) is linked to advanced oxidation protein products (AOPPs).
- AOPP-induced renal tubular injury involves the (pro)renin receptor (PRR).
- The protective effect of PRR decoy inhibitor PRO20 against AOPP-related kidney damage in vivo is unknown.
Purpose of the Study:
- To investigate the role of PRR in AOPP-induced renal oxidative damage in rats.
- To evaluate the protective potential of PRO20 against AOPP-induced nephropathy.
Main Methods:
- Male Sprague-Dawley rats underwent unilateral nephrectomy and were divided into four groups: control, unmodified rat serum albumin (RSA), AOPPs-RSA, and AOPPs-RSA + PRO20.
- Treatment involved daily tail-vein injections of RSA or AOPPs-RSA, with PRO20 administered subcutaneously.
- Renal histopathology, biochemical parameters, oxidative stress biomarkers, and gene/protein expression were assessed.
Main Results:
- AOPPs-RSA induced albuminuria, inflammation, tubular dilation, oxidative stress, and elevated AOPP levels.
- PRO20 treatment significantly ameliorated these AOPPs-RSA-induced changes.
- AOPPs-RSA increased renin-angiotensin system (RAS) components and Nox4-dependent H2O2 production, which were suppressed by PRO20.
- Kidney PRR and soluble PRR (sPRR) expression and renal sPRR excretion were elevated by AOPPs-RSA.
Conclusions:
- PRR inhibition by PRO20 demonstrates a protective effect against AOPP-induced nephropathy in rats.
- This protection is mediated by the inhibition of intrarenal RAS and Nox4-derived hydrogen peroxide (H2O2) production.
- PRR may be a therapeutic target for AOPP-related kidney diseases.
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