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Increased nitric oxide formation in recurrent thrombotic microangiopathies: a possible mediator of microvascular
M Noris1, P Ruggenenti, M Todeschini
1Mario Negri Institute for Pharmacological Research, Ospedali Riuniti diBergamo, Rome, Italy.
Abstract:
The term thrombotic microangiopathy (TMA) has been used extensively to encompass hemolytic uremic syndrome and thrombotic thrombocytopenic purpura, two syndromes of hemolytic anemia, and thrombocytopenia associated with renal or brain involvement or both. There is evidence that endothelial damage is a crucial feature in the sequence of events that precedes the development of microvascular lesions. More recent studies would suggest that endothelial dysfunction could be a consequence of neutrophil activation. Activated neutrophils generate superoxide anions (O2-) that, combining with endothelial-derived nitric oxide (NO), form the highly cytotoxic hydroxyl radical. Seven patients with recurrent forms of TMA and seven healthy volunteers were studied. Plasma concentrations of the NO metabolites, nitrites/nitrates, were elevated in the acute phase of TMA, indicating an increased NO synthesis in vivo. In addition, elevated serum concentrations of tumor necrosis factor, a potent inducer of endothelial NO synthase, were found in acute TMA. Serum from patients with acute TMA induced NO synthesis in cultured endothelial cells more than normal serum. Enhanced stimulatory activity was no longer found in the recovery phase. Release of O2- by neutrophils ex vivo was higher than normal in patients with acute TMA, but decreased in the recovery phase. Exactly the same trend was observed for plasma malondialdehyde and conjugated dienes, indicating that excessive oxygen radical formation in acute TMA is associated with increased lipid peroxidation. Thus, in recurrent forms of TMA, NO formation was increased as compared with controls. This was associated with signs of lipid peroxidation, likely the consequence of the interaction of NO with neutrophil-derived oxygen products.
Insights
Thrombotic microangiopathy (TMA) involves increased nitric oxide (NO) production and neutrophil activation, leading to oxidative stress and lipid peroxidation. These findings shed light on the pathophysiology of recurrent TMA and its associated endothelial damage.
Area of Science:
- Nephrology
- Hematology
- Immunology
Background:
- Thrombotic microangiopathy (TMA) encompasses hemolytic uremic syndrome and thrombotic thrombocytopenic purpura.
- Endothelial damage is a key feature in TMA development, potentially linked to neutrophil activation.
Purpose of the Study:
- To investigate the role of nitric oxide (NO) and oxidative stress in recurrent thrombotic microangiopathy (TMA).
- To explore the relationship between neutrophil activation, NO synthesis, and lipid peroxidation in TMA patients.
Main Methods:
- Studied seven patients with recurrent TMA and seven healthy volunteers.
- Measured plasma nitrite/nitrate levels, serum tumor necrosis factor, neutrophil superoxide anion (O2-) release ex vivo, and plasma malondialdehyde and conjugated dienes.
Main Results:
- Elevated plasma nitrite/nitrate and serum tumor necrosis factor in acute TMA.
- Increased neutrophil O2- release and elevated lipid peroxidation markers (malondialdehyde, conjugated dienes) in acute TMA.
- Enhanced NO synthesis in cultured endothelial cells exposed to acute TMA serum.
Conclusions:
- Recurrent TMA is associated with increased NO formation and oxidative stress.
- Neutrophil-derived oxygen products interact with NO, contributing to lipid peroxidation and endothelial damage in TMA.