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Biomedical subjects

P Bougneres

Publications and source records attributed to P Bougneres.

4 recordsLinked to original sources

Comparison of immunocytochemical and molecular features with the phenotype in a case of incomplete male pseudohermaphroditism associated with a mutation of the luteinizing hormone receptor.

We report the case of an infant who presented at birth with a hypoplastic phallus associated with hypospadias. Low testosterone production, normal serum levels of steroid precursors, and increased LH in response to LH-releasing hormone supported a defect in Leydig cell differentiation or function. Conventional microscopic study of the testes showed fibroblastic cells in the interstitium. However immunocytochemical analysis using anti-LH receptor and anti-P450c17 antibodies demonstrated that about one third of these cells were Leydig cells or precursors of Leydig cells. No histological feature could distinguish the latter cells from fibroblasts. A homozygous substitution of cysteine 133 for arginine was found in the extracellular domain of the receptor. This is the first naturally occurring missense mutation found in the extracellular domain of the LH receptor. COS-7 cells transfected with the mutant receptor exhibited a marked impairment of hCG binding, whereas some cAMP production could be observed at high hCG concentrations. We propose that the partial impairment of LH receptor function, as reflected by the presence of Leydig cells, was responsible for the incomplete male pseudohermaphroditism observed in our patient.

Animals↗

Pharmacokinetics of oral cyclosporin A in diabetic children and adolescents.

Cyclosporin A (CsA) pharmacokinetics was studied in 19 diabetic children (mean age: 10.6 y). They were divided into prepubertal (I) and pubertal (II) groups according to plasma oestradiol or testosterone concentrations. The kinetic study was performed after a 72 h wash out period and a single oral dose of 7.5 mg/kg CsA. CsA in blood was measured by HPLC. The kinetic parameters: Cmax, tmax, t 1/2, AUC, CL/f, Vz/f and tss were calculated. No significant difference was found between the two groups. A significant negative correlation was found between Vz and both total cholesterol (r = -0.46), VLDL + LDL - cholesterol (r = -0.49) and VLDL + LDL - phospholipids (r = -0.58). CsA kinetics at steady-state were simulated by superimposition of single dose kinetics derived from each single dose. Measured steady-state blood concentrations were correlated (r = 0.80) with the values predicted by the simulation. The results suggest that CsA adjustment dosage of the CsA may be performed after a single oral dose using blood levels measured by HPLC. This procedure requires validation in further studies.

Administration, Oral↗

Angiotensin and adrenal steroidogenesis: study of 21-hydroxylase-deficient congenital adrenal hyperplasia.

The effects of angiotensin have been studied in four adult patients with the simple virilizing form of congenital adrenal hyperplasia due to 21-hydroxylase deficiency. They were treated with hydrocortisone (25 mg/day) throughout this investigation. Plasma ACTH was normal in three cases, and androstenedione was normal in all cases. However, urinary pregnanetriol, plasma 17-hydroxyprogesterone (17 OHP), aldosterone, and renin activity was increased. The patients were then submitted to three protocols: sodium depletion (10 meq Na/day) for 5 days, sodium repletion (200 meq Na/day) for 5 days, and angiotensin infusion (sufficient to maintain a pressor response) for 60 min. Urinary pregnanetriol, plasma 17 OHP, and androstenedione levels increased in all patients after sodium depletion and decreased after sodium repletion. Plasma ACTH levels were not modified by changes in the sodium balance. Furthermore, angiotensin infusion increased aldosterone and 17 OHP plasma concentrations without any change in the plasma ACTH level. This study shows the direct action of angiotensin on adrenal steroidogenesis, at least in 21-hydroxylase deficiency. It confirms that even in the simple virilizing form, combined treatment with glucocorticoids and mineralocorticoids helps to normalize plasma 17 OHP levels.

Adrenal Glands↗