Skip to Content
MilliporeSigma
  • Circulating tetrahydrobiopterin concentrations in patients with septic shock.

Circulating tetrahydrobiopterin concentrations in patients with septic shock.

British journal of anaesthesia (2001-09-28)
H F Galley, A E Le Cras, K Yassen, I S Grant, N R Webster
ABSTRACT

Nitric oxide synthase requires tetrahydrobiopterin for its activity. In animal models of sepsis, changes in circulating tetrahydrobiopterin concentrations precede increases in nitrate. We measured plasma tetrahydrobiopterin and nitrate concentrations on three consecutive days in 10 patients with septic shock and 10 critically ill control patients. Total nitrate concentration was measured after reduction of nitrite to nitrate. Tetrahydrobiopterin concentrations were measured using HPLC. The median (range) APACHE II score was 22 (13-27) in the patients with septic shock and 25 (7-28) in the control group. The nitrate concentration was significantly higher in patients with septic shock than in controls (P = 0.01) on all days but did not change with time. Tetrahydrobiopterin concentrations were highest in the patients with septic shock on day 1 only (P = 0.037). In the seven patients with renal failure, both nitrate and tetrahydrobiopterin concentrations tended to be higher than in the 13 patients without renal failure. The nitrate concentration correlated with tetrahydrobiopterin concentration on day 1 only (P = 0.05). In patients with septic shock, both tetrahydrobiopterin and total nitrate concentrations were higher than those in critically ill controls but were increased mainly in patients with renal failure. In summary, tetrahydrobiopterin concentration increases during septic shock, in line with increases in nitrate concentration. However, as for nitrate, concentrations

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Dimethylamine solution, CP, 50% in H2O
Sigma-Aldrich
Zinc, SAJ first grade
Sigma-Aldrich
Ethyl alcohol, denatured, denatured, reagent grade
Sigma-Aldrich
Trimethylamine, anhydrous, ≥99%
Sigma-Aldrich
3-Hydroxymandelic acid, ≥97.0% (T)
Sigma-Aldrich
Dimethylamine solution, 40 wt. % in H2O
Sigma-Aldrich
Isomaltose, ~98% (TLC)
Sigma-Aldrich
Dimethylamine solution, 2.0 M in methanol
Sigma-Aldrich
1-Methyl-L-histidine, ≥98.0% (TLC)
Sigma-Aldrich
L-2-Aminobutyric acid, ≥99% (titration)
Sigma-Aldrich
L-2-Aminobutyric acid, BioReagent, suitable for cell culture
Sigma-Aldrich
Inosine, ≥99% (HPLC)
Sigma-Aldrich
Ethyl alcohol, Pure, 200 proof, anhydrous, ≥99.5%
Sigma-Aldrich
Zinc, foil, thickness 0.25 mm, 99.9% trace metals basis
Sigma-Aldrich
Zinc, powder, <150 μm, 99.995% trace metals basis
Sigma-Aldrich
Zinc, purum, powder
Sigma-Aldrich
Zinc, mossy, ≥99%
Sigma-Aldrich
Trimethylamine N-oxide, 95%
Sigma-Aldrich
Dimethylamine solution, 2.0 M in THF
Sigma-Aldrich
4-Heptanone, 98%
Sigma-Aldrich
4-Heptanone, ≥97%, FG
Sigma-Aldrich
3-Methyl-L-histidine
Sigma-Aldrich
N,N-Dimethylglycine, ≥99%
Sigma-Aldrich
Zinc, granular, 30-100 mesh, 99%
Sigma-Aldrich
Adenosine, ≥99%
Sigma-Aldrich
Adenosine, BioReagent, suitable for cell culture
Sigma-Aldrich
Ethyl alcohol, Pure, 190 proof, ACS spectrophotometric grade, 95.0%
Sigma-Aldrich
Ethyl alcohol, Pure, 190 proof, meets USP testing specifications
Sigma-Aldrich
Phenylacetic acid, ≥99%, FCC, FG
Sigma-Aldrich
Ethanol, ≥99.5%, SAJ super special grade