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Peripheral dopamine suppression and elevated cystatin C in early diabetic nephropathy in spontaneously diabetic rats
Shoichiro Horita1,2, Guy Watanabe1,3, Shingen Misaka1
1Department of Bioregulation and Pharmacological Medicine, Fukushima Medical University School of Medicine, Fukushima, Japan.
Abstract:
Intrarenal dopamine plays a protective role against the development of diabetic nephropathy during the early stages of the disease. In streptozotocin-induced diabetic mice with renal-specific catechol-O-methyl transferase knockout, intrarenal dopamine was found to suppress glomerular hyperfiltration, reduce oxidative stress and inflammation, and inhibit fibrosis. However, although dopamine activation in streptozotocin-induced diabetic models has been shown to provide renal protection, the role of dopamine in models of naturally induced diabetes mellitus is still unclear. In the present study, we orally administered 10 mg/kg benserazide, a peripheral decarboxylase inhibitor, to spontaneously diabetic Torii rats daily to investigate the activation of the renal dopaminergic system during the progression of diabetic nephropathy. Our findings show that peripheral dopamine decreased urinary 8-iso-prostaglandin F2α and suppressed increases in plasma cystatin C levels. This study demonstrates that a reduction in peripheral dopamine can exacerbate renal dysfunction, even in the early stages of diabetic nephropathy characterized by glomerular hyperfiltration, thereby clarifying the pivotal role of endogenous peripheral dopamine in modulating oxidative stress and kidney performance.NEW & NOTEWORTHY By administering a peripheral decarboxylase inhibitor, we revealed that peripheral dopamine inhibits both the increase in urinary 8-iso-prostaglandin F2α, an oxidative stress marker, and the increase in plasma cystatin C, an early renal dysfunction marker, even in the early stages of diabetic nephropathy characterized by glomerular hyperfiltration. By visualizing renal dopamine precursor distribution, we highlighted the role of endogenous renal dopamine in oxidative stress and renal function following the onset of glomerular hyperfiltration.
Insights
Peripheral dopamine protects kidneys in early diabetic nephropathy. Reduced dopamine levels worsen kidney dysfunction and oxidative stress, even with glomerular hyperfiltration. This highlights dopamine's crucial role in kidney health.
Area of Science:
- Nephrology
- Endocrinology
- Pharmacology
Background:
- Intrarenal dopamine offers early protection against diabetic nephropathy.
- Previous studies in mice showed dopamine suppresses glomerular hyperfiltration, oxidative stress, inflammation, and fibrosis.
- The role of dopamine in naturally induced diabetes models remained unclear.
Purpose of the Study:
- To investigate the renal dopaminergic system's activation during diabetic nephropathy progression in spontaneously diabetic rats.
- To clarify the role of endogenous peripheral dopamine in modulating oxidative stress and kidney function.
Main Methods:
- Spontaneously diabetic Torii rats were orally administered benserazide (a peripheral decarboxylase inhibitor).
- Urinary 8-iso-prostaglandin F2α (oxidative stress marker) and plasma cystatin C (renal dysfunction marker) were measured.
- Renal dopamine precursor distribution was visualized.
Main Results:
- Peripheral dopamine administration reduced urinary 8-iso-prostaglandin F2α levels.
- Peripheral dopamine suppressed increases in plasma cystatin C levels.
- Reduced peripheral dopamine exacerbated renal dysfunction, even in early diabetic nephropathy with glomerular hyperfiltration.
Conclusions:
- Peripheral dopamine plays a pivotal role in modulating oxidative stress and maintaining kidney performance in early diabetic nephropathy.
- A reduction in peripheral dopamine can worsen renal dysfunction, emphasizing its protective function.
- Endogenous peripheral dopamine is crucial for kidney health during the progression of diabetic nephropathy.
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