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April 1, 1998Journal of Clinical Investigation349 citationsOpen Access

Tetrahydrobiopterin alters superoxide and nitric oxide release in prehypertensive rats.

FCFrancesco CosentinoSPStephen R. PattonLDLivius V. d’Uscio

Key Result

In prehypertensive spontaneously hypertensive rats, A23187-stimulated nitric oxide release was significantly reduced (120 vs 200 nmol/liter, p<0.005) and superoxide production was higher compared to normotensive rats, which was reversed by exogenous tetrahydrobiopterin.

Structured PICO

Does dysfunctional cNOS generate superoxide in prehypertensive spontaneously hypertensive rats, and is this altered by tetrahydrobiopterin?

P
Population
Aortas from 4-week-old male spontaneously hypertensive rats (SHR) and normotensive Wistar-Kyoto (WKY) rats.
I
Intervention
Stimulation of constitutive nitric oxide synthase (cNOS) by calcium ionophore A23187, with or without exogenous (6R)-5,6,7,8-tetrahydrobiopterin (H4B).
C
Comparator
WKY rats (normotensive controls) and untreated SHR aortas.
O
Outcome
In situ measurements of nitric oxide, hydrogen peroxide, and superoxide production, and isometric tension (endothelium-dependent relaxations).surrogate

Dysfunctional cNOS due to insufficient tetrahydrobiopterin may be a source of superoxide in prehypertensive rats, contributing to the development of hypertension and vascular complications.

Main Result

Absolute Event Rate: 120% vs 200%

p-value: p=<0.005

Limitations

  • Data do not completely exclude the possibility that the increase of superoxide is derived from non-NOS sources.
  • Cannot prove dynamic or static model of cNOS-H4B interaction without tertiary crystallographic structures of the enzyme.
  • Data do not completely exclude the possibility that the increase of O2- is derived from non-NOS sources.

Abstract

Constitutive nitric oxide synthase (cNOS) with insufficient cofactor (6R)-5,6,7,8-tetrahydrobiopterin (H4B) may generate damaging superoxide (O2-). This study was designed to determine whether cNOS-dependent generation of O2- occurs in spontaneously hypertensive rats (SHR) before the onset of hypertension. Aortas from 4-wk-old SHR and Wistar-Kyoto rats were used. cNOS was stimulated by calcium ionophore A23187. In situ measurements of nitric oxide and hydrogen peroxide by electrochemical sensors and O2- production by chemiluminescence method were performed. Isometric tension was continuously recorded. H4B by high performance liquid chromatography and 3Hcitrulline assay were determined in homogenized tissue. The A23187-stimulated production of O2- and its superoxide dismutase product hydrogen peroxide were significantly higher, whereas nitric oxide release was reduced in SHR aortas, with opposite results in the presence of exogenous H4B. Furthermore, NG-monomethyl-L-arginine inhibited the generation of cNOS-dependent O2- by approximately 70%. Natural H4B levels were similar in both strains; however, equivalent cNOS activity required additional H4B in SHR. The endothelium-dependent relaxations to A23187 were significantly inhibited by catalase, and enhanced by superoxide dismutase, only in SHR; however, these enzymes had no effect in the presence of H4B. Thus, dysfunctional cNOS may be a source of O2- in prehypertensive SHR and contribute to the development of hypertension and its vascular complications.

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Cite This Study

Cosentino et al. (1998) studied Prehypertension. Tetrahydrobiopterin (H4B) vs. Wistar-Kyoto (WKY) normotensive rats was evaluated on Peak nitric oxide (NO) concentration after A23187 stimulation (nmol/liter) (p=<0.005). In prehypertensive spontaneously hypertensive rats, A23187-stimulated nitric oxide release was significantly reduced (120 vs 200 nmol/liter, p<0.005) and superoxide production was higher compared to normotensive rats, which was reversed by exogenous tetrahydrobiopterin.

synapsesocial.com/papers/6a0d9a72d8df3832a209b34ahttps://doi.org/10.1172/jci650
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