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Pharmacologic control of oxidative stress and inflammation determines whether diabetic glomerulosclerosis progresses
Fabrizio Grosjean1, Elena M Yubero-Serrano2, Feng Zheng3
1Division of Nephrology, Dialysis and Transplantation, Fondazione IRCCS Policlinico San Matteo, Pavia, Italy.
Abstract:
Diabetic kidney disease (DKD) is characterized by progressive glomerulosclerosis (GS). ROP mice have a sclerosis-prone phenotype. However, they develop severe, rapidly progressive GS when rendered diabetic. Since GS also develops in aged C57Bl6 mice, and can be reversed using bone marrow from young mice which have lower oxidative stress and inflammation (OS/Infl), we postulated that this might also apply to DKD. Therefore, this pilot study asked whether reducing OS/Infl in young adult sclerosis-prone (ROP) diabetic mice leads to resolution of existing GS in early DKD using safe, FDA-approved drugs.After 4 weeks of stable streptozotocin-induced hyperglycemia 8-12 week-old female mice were randomized and treated for 22 weeks as follows: 1) enalapril (EN) (n = 8); 2) pyridoxamine (PYR)+EN (n = 8); 3) pentosan polysulfate (PPS)+EN (n = 7) and 4) PPS+PYR+EN (n = 7). Controls were untreated (non-DB, n = 7) and hyperglycemic (DB, n = 8) littermates. PPS+PYR+EN reduced albuminuria and reversed GS in DB. Treatment effects: 1) Anti-OS/Infl defenses: a) PPS+PYR+EN increased the levels of SIRT1, Nrf2, estrogen receptor α (ERα) and advanced glycation endproduct-receptor1 (AGER1) levels; and b) PYR+EN increased ERα and AGER1 levels. 2) Pro-OS/Infl factors: a) PPS+PYR+EN reduced sTNFR1, b) all except EN reduced MCP1, c) RAGE was reduced by all treatments. In summary, PYR+PPS+EN modulated GS in sclerosis-prone hyperglycemic mice. PYR+PPS+EN also decreased albuminuria, OS/Infl and the sclerosis-prone phenotype. Thus, reducing OS/Infl may reverse GS in early diabetes in patients, and albuminuria may allow early detection of the sclerosis-prone phenotype.
Insights
Reducing oxidative stress and inflammation with pyridoxamine, pentosan polysulfate, and enalapril reversed glomerulosclerosis in diabetic mice. This combination therapy may offer a new approach for treating diabetic kidney disease.
Area of Science:
- Nephrology
- Endocrinology
- Pharmacology
Background:
- Diabetic kidney disease (DKD) involves progressive glomerulosclerosis (GS).
- Sclerosis-prone mice (ROP) develop severe GS when diabetic.
- GS reversal in aged mice suggests potential for DKD treatment.
Purpose of the Study:
- To investigate if reducing oxidative stress and inflammation (OS/Infl) can reverse existing GS in early DKD.
- To evaluate the efficacy of safe, FDA-approved drugs in sclerosis-prone diabetic mice.
Main Methods:
- Female ROP mice (8-12 weeks old) with streptozotocin-induced hyperglycemia were randomized.
- Treatments included enalapril (EN), pyridoxamine (PYR)+EN, pentosan polysulfate (PPS)+EN, and PPS+PYR+EN for 22 weeks.
- Albuminuria, GS, and OS/Infl markers (SIRT1, Nrf2, ERα, AGER1, sTNFR1, MCP1, RAGE) were assessed.
Main Results:
- The combination of PPS+PYR+EN significantly reduced albuminuria and reversed glomerulosclerosis in diabetic mice.
- PPS+PYR+EN increased anti-OS/Infl markers (SIRT1, Nrf2, ERα, AGER1) and decreased pro-OS/Infl factors (sTNFR1, MCP1, RAGE).
- PYR+EN also increased ERα and AGER1 levels, while all treatments reduced RAGE.
Conclusions:
- Pyridoxamine, pentosan polysulfate, and enalapril combination therapy effectively modulated glomerulosclerosis in sclerosis-prone diabetic mice.
- This treatment regimen decreased albuminuria, oxidative stress, inflammation, and the sclerosis-prone phenotype.
- Reducing oxidative stress and inflammation may reverse early diabetic kidney disease, with albuminuria indicating potential for early detection.
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