Related Experiment Videos
Evidence suggesting a role for hydroxyl radical in puromycin aminonucleoside-induced proteinuria
V Thakur1, P D Walker, S V Shah
1Department of Medicine, Tulane Medical School, New Orleans, Louisiana.
Abstract:
A single intravenous injection of puromycin aminonucleoside (PAN) results in marked proteinuria and glomerular morphological changes that are similar to minimal change disease in humans. We examined the effect of hydroxyl radical scavengers and an iron chelator on PAN-induced proteinuria. PAN in a dose of 5 mg/100 g body wt significantly increased urinary protein by day 5 (saline: 15 +/- 2, N = 24: PAN: 63 +/- 17, N = 23, P less than 0.001); the proteinuria rapidly increased thereafter, reaching 216 +/- 34, N = 23 by day 7. Concurrent administration of hydroxyl radical scavengers dimethylthiourea, (DMTU 500 mg/kg followed by 125 mg/kg i.p. twice a day) and sodium benzoate (BENZ, 150 mg/kg followed by 125 mg/kg i.p. twice a day) starting the evening before PAN injection markedly reduced proteinuria throughout the course of the study (urinary protein, mg/24 hours on day 7, mean +/- SEM: PAN: 229 +/- 45, N = 15; PAN + DMTU: 30 +/- 5, N = 18; PAN + BENZ: 80 +/- 18, N = 16. Because of the participation of iron in biological systems to generate hydroxyl radical, we also examined the effect of deferoxamine (DFO, 30 mg/day), an iron chelator, on the PAN-induced proteinuria. Concurrent administration of DFO was also protective. In a second series of experiments, DMTU and DFO (administered as described above and then for two additional days after the PAN) provided marked protection even when they were stopped prior to the onset of proteinuria. The protective effects of two hydroxyl radical scavengers and iron chelator implicate an important role for hydroxyl radical in PAN-induced nephrotic syndrome.
Insights
Puromycin aminonucleoside (PAN) induces nephrotic syndrome. Hydroxyl radical scavengers, dimethylthiourea and sodium benzoate, and iron chelator deferoxamine, significantly reduced PAN-induced proteinuria, implicating hydroxyl radical in the disease.
Area of Science:
- Nephrology
- Biochemistry
- Pathology
Background:
- Puromycin aminonucleoside (PAN) injection causes proteinuria and glomerular changes resembling human minimal change disease.
- Hydroxyl radical generation is implicated in various pathological processes.
Purpose of the Study:
- To investigate the role of hydroxyl radicals in PAN-induced nephrotic syndrome.
- To evaluate the protective effects of hydroxyl radical scavengers and an iron chelator against PAN-induced proteinuria.
Main Methods:
- Administered PAN (5 mg/100 g body wt) intravenously to induce nephrotic syndrome.
- Concurrently administered hydroxyl radical scavengers dimethylthiourea (DMTU) and sodium benzoate (BENZ).
- Administered deferoxamine (DFO), an iron chelator, and assessed its effect on proteinuria.
Main Results:
- PAN significantly increased proteinuria by day 5 and day 7.
- Concurrent administration of DMTU and BENZ markedly reduced proteinuria.
- Deferoxamine (DFO) also demonstrated a protective effect against PAN-induced proteinuria.
- DMTU and DFO provided protection even when administered before proteinuria onset.
Conclusions:
- Hydroxyl radical scavengers (DMTU, BENZ) and iron chelator (DFO) significantly protect against PAN-induced nephrotic syndrome.
- These findings strongly suggest a critical role for hydroxyl radical in the pathogenesis of PAN-induced nephrotic syndrome.