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Yves Leclerc

Publications and source records attributed to Yves Leclerc.

5 recordsLinked to original sources

Tetrahydrobiopterin deficiency exaggerates intimal hyperplasia after vascular injury.

Decreased levels of tetrahydrobiopterin (BH4), an absolute cofactor for nitric oxide synthase (NOS), lead to uncoupling of NOS into a superoxide v. nitric oxide producing enzyme, and it is this uncoupling that links it to the development of vascular disease. However, the effects of in vivo deficiency of BH4 on neointimal formation after vascular injury have not been previously investigated. Hph-1 mice, which display 90% deficiency in guanine triphosphate cyclohydrolase I, the rate limiting enzyme in BH4 synthesis, were used. Hph-1 and wild-type mice, treated with either vehicle or BH4 (n = 15 per group), were subjected to wire-induced femoral artery injury, and NOS expression and activity, inflammation, cell proliferation, superoxide production, and neointimal formation were assessed. The major form of NOS expressed over vessel wall after vascular injury was endothelial NOS. Hph-1 mice exhibited lower NOS activity (2.8 +/- 0.3 vs. 4.5 +/- 0.4 pmol/min/mg protein, P < 0.01), and higher aortic superoxide content (5.2 +/- 2.0 x 10(5) cpm vs. 1.6 +/- 0.7 x 10(5) cpm, P < 0.01) compared with wild-type controls, indicating uncoupling of NOS. Treatment of hph-1 mice with BH4 significantly increased NOS activity (from 2.8 +/- 0.3 to 4.1 +/- 0.4 pmol.min(-1).mg protein(-1), P < 0.05), and attenuated superoxide production (from 5.2 +/- 2.0 x 10(5) cpm to 0.8 +/- 0.7 x 10(5) cpm, P < 0.05). Hph-1 mice also had higher inflammatory reactions and more cell proliferation after vascular injury. Furthermore, hph-1 mice responded by a marked increase in neointimal formation at 4 wk after vascular injury, compared with wild-type controls (intima:media ratio: 4.5 +/- 0.5 vs. wild-type 0.7 +/- 0.1, P < 0.001). Treatment of hph-1 mice with BH4 prevented vascular injury-induced increase in neointimal formation (intima:media ratio: 1.4 +/- 0.1 vs. hph-1, P < 0.001). Treatment had no effect on wild-type controls. In summary, we describe, for the first time, that in vivo BH4 deficiency facilitates neointimal formation after vascular injury. Modulation of BH4 bioavailability is an important therapeutic target for restenosis.

Animals↗

Acrylamide in French fries: influence of free amino acids and sugars.

The free amino acid profile and sugar (fructose, glucose, and sucrose) composition were determined in potato samples selected to give a large range of variation (a total of 66 samples). From these samples French fries were produced in a laboratory-scale simulation of an industrial process followed by a finish fry at 180 degrees C for 3.5 min using a restaurant fryer. The final product was blast frozen and analyzed for acrylamide. Acrylamide was detected in all samples, but its concentration varied significantly from 50 to 1800 ng/g. For isotope dilution (13C3) acrylamide analysis, samples were extracted with water, cleaned up on HLB Oasis polymeric and Accucat mixed mode anion and cation exchange SPE columns, and analyzed by LC-MS/MS. Statistical analysis of the data indicates that the effect of sugars and asparagine on the concentration of acrylamide in French fries is positive and significant (p < 0.001). It appears that one of the ways acrylamide formation in French fries can be effectively controlled is by the use of raw products with low sugar (and to a lesser degree, asparagine) content.

Acrylamide↗

Pharmacokinetics studies and toxicity profile of raltitrexed used by intraperitoneal route in normothermia in a pig model.

BACKGROUND: To define the pharmacokinetic and toxicity profile of raltitrexed administered by intraperitoneal route in a normothermic pig model. MATERIAL/METHODS: Twenty-one female pigs were divided in three groups. Under general anesthesia, pigs in groups 1 and 2 underwent laparotomy with resection of a small hepatic wedge, bowel anastomosis and portal and systemic vein catheterization. This was followed by an intraperitioneal delivery of raltitrexed: a dose of 1 mg was given to group 1 pigs, whereas group 2 received 2 mg. Serial sampling of portal blood, systemic blood and peritoneal fluid was then undertaken in both groups for pharmacokinetics studies. Pigs were followed daily for a period of 10 days after surgery with recordings of signs of toxicity. On day 10, an exploratory laparotomy was undertaken on each pig in order to assess peritoneal toxicity after which they were euthanized. Pigs in group 3 were used for bioavailability evaluation. RESULTS: Three deaths were recorded within 24 hours of surgery; a technical problem was identified in all cases and no deaths were the results of raltitrexed toxicity. A peritoneo-plasma gradient of 100:1 was obtained. Cmax in plasma were of 28 ng/ml and 54 ng/ml for group 1 and 2, respectively. Tmax were 180 min for both groups. AUCplasmatic was double in the 2 mg group compared to the 1 mg group. CONCLUSIONS: Raltitrexed administered by IP route in pigs is non-toxic. Pharmacologically, there are few interindividual variations and the small first-past effect did not significantly alter the high peritoneo-plasmatic gradient

Animals↗