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Biomedical subjects

J-P Kantelip

Publications and source records attributed to J-P Kantelip.

6 recordsLinked to original sources

[Myocardial microdialysis. Importance and potential in cardiovascular research].

The microdialysis expanded mainly in the field of the neuro- and the dermopharmacology with the study of the transmitters released in the central nervous system and derm. Since ten years, this tool gained other disciplines such as cardiology and cardiovascular surgery. Indeed, the collection and the study of the molecules released in the myocardic interstitial fluid without deteriorating it functioning made microdialysis a powerful tool in the study of the extracellular environment of the cardiomyocyte. The purpose of this study is to point out the principle of the microdialysis and to show its various uses in the field of cardiovascular pharmacology.

Animals↗

N-acetyltransferase 2 acetylation polymorphism: prevalence of slow acetylators does not differ between atopic dermatitis patients and healthy subjects.

The genetic polymorphism of human N-acetyltransferase 2 (NAT2) divides the human population into groups with rapid, intermediate and slow acetylator status. Slow acetylator status has been considered a predisposing factor for allergic diseases, lupus erythematosus, toxic epidermal necrolysis or Stevens-Johnson syndrome. The aim of this study was to investigate whether Caucasian patients suffering from atopic dermatitis differed from healthy individuals with regard to the genotype and phenotype of NAT2. Twenty unrelated healthy Caucasian volunteers (9 females and 11 males, aged from 22 to 59 years) and twenty unrelated Caucasian patients suffering from atopic dermatitis (9 females and 11 males, aged between 20 and 54 years) participated in this study. For each one, the NAT2 genotype was determined by polymerase chain reaction with DNA extracted from peripheral blood, using specific primers for the wild-type allele (wt) and the 3 most frequent mutated alleles of NAT2 (C481-->T, G590-->A and G857-->A). The NAT2 phenotype was evaluated with dapsone as a test substrate using high-pressure liquid chromatography. Statistical analysis was performed using the chi(2) test. Phenotype and genotype were distributed as follows: (1) of the healthy subjects, 60% were rapid acetylators (RA) and 40% were slow acetylators (SA); 10% of the RA and 15% of the SA were homozygous, 50% of the RA and 25% of the SA were heterozygous; (2) of the patients, 55% were RA, 40% were SA and 5% were intermediate acetylators (IA); 10% of the RA and 10% of the SA were homozygous, 45% of the RA and 35% of the SA were heterozygous. No significant statistical difference was found between the two groups for genotypes (p = 0.75) or phenotypes (p = 0.60). The phenotyping and genotyping results of healthy subjects were comparable to those found in previous studies. The absence of a significant statistical difference between healthy subjects and atopic dermatitis patients is in contrast to the results of previous studies. Some authors considered that allergic patients are mostly SAs. This could be explained by the fact that we only considered patients suffering from atopic dermatitis whereas, in other studies, patients suffered from different (one or several associated) allergic diseases. NAT2 polymorphism does not differ between patients suffering from atopic dermatitis and healthy subjects. The importance attributed to the SA status, which was previously considered a predisposing factor for allergic diseases such as atopic dermatitis, should be reviewed.

Acetylation↗

[Interest in therapeutic drug monitoring of the main antibiotics].

The therapeutic drug monitoring aims at optimising the prescribed dosages to improve efficacy and prevent toxicity. The aim of this study were to review the main pharmacodynamic and pharmacokinetic properties of aminoglycosides, glycopeptides and ceftazidime. Then, the therapeutic drug monitoring of these antibiotics and their methods of analysis is reviewed.

Aminoglycosides↗

[Therapeutic drug monitoring of mycophenolate mofetil, sirolimus and cyclosporine at C2].

The evolutions in treatments and clinical practices in organ transplantations led to modifications in the therapeutic drug monitoring (TDM) of immunosuppressive drugs. A focus is made regarding the C2 sampling of cyclosporin, as well as the TDM of mycophenolate mofetil and sirolimus. A review of literature about the evolution of drug monitoring, technical methods and sampling strategies is described. Arguments in favour of TDM are thus a decrease in the frequency of both graft rejection and adverse drug reactions, however, new strategies or new targets are needed in new associations or indications.

Biological Availability↗