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Biomedical subjects

Jean-Michel Lecerf

Publications and source records attributed to Jean-Michel Lecerf.

5 recordsLinked to original sources

Phase 1 clinical results with tandutinib (MLN518), a novel FLT3 antagonist, in patients with acute myelogenous leukemia or high-risk myelodysplastic syndrome: safety, pharmacokinetics, and pharmacodynamics.

Tandutinib (MLN518/CT53518) is a novel quinazoline-based inhibitor of the type III receptor tyrosine kinases: FMS-like tyrosine kinase 3 (FLT3), platelet-derived growth factor receptor (PDGFR), and KIT. Because of the correlation between FLT3 internal tandem duplication (ITD) mutations and poor prognosis in acute myelogenous leukemia (AML), we conducted a phase 1 trial of tandutinib in 40 patients with either AML or high-risk myelodysplastic syndrome (MDS). Tandutinib was given orally in doses ranging from 50 mg to 700 mg twice daily The principal dose-limiting toxicity (DLT) of tandutinib was reversible generalized muscular weakness, fatigue, or both, occurring at doses of 525 mg and 700 mg twice daily. Tandutinib's pharmacokinetics were characterized by slow elimination, with achievement of steady-state plasma concentrations requiring greater than 1 week of dosing. Western blotting showed that tandutinib inhibited phosphorylation of FLT3 in circulating leukemic blasts. Eight patients had FLT3-ITD mutations; 5 of these were evaluable for assessment of tandutinib's antileukemic effect. Two of the 5 patients, treated at 525 mg and 700 mg twice daily, showed evidence of antileukemic activity, with decreases in both peripheral and bone marrow blasts. Tandutinib at the MTD (525 mg twice daily) should be evaluated more extensively in patients with AML with FLT3-ITD mutations to better define its antileukemic activity.

Administration, Oral↗

[Patients with hyperlipidemia: inappropriate nutritional intake].

OBJECTIVE: Gather knowledge on nutritional supplementation in patients with hyperlipidemia. METHODS: In an observational study on patients with hyperlipidemia, nutritional intake was assessed using a 7-day dietary questionnaire, provided on the first visit to a lipid clinic. RESULTS: 291 patients (201 men and 90 women) were studied. Calorie intake and proportion of energetic nutrients revealed low carbohydrate intake, low intake of dietary fibres, and excessive lipid and saturated fatty acid intakes. Patients with isolated hypercholesterolemia had nutritional intake very similar to the daily allowances recommended in France. Men with type III hyperlipidemia had the highest calorie intake and those with type IV dyslipidemia had the highest alcohol intake. Triglycerides increased with total energy intake and with fat intake (%). Body mass index was inversely correlated to carbohydrate intake. The duration of dyslipidemia was related to low vitamin C and B9 intake. The existence of risk factors (type 2 diabetes, hypertension, smoking or inactivity) was associated with less well-balanced diet and low protective micronutrient status. In the case of atherosclerosis, vitamin B9, C, E and beta-carotene intake was insufficient. Interactions existed between nutrient intake with correlations between fibres, vitamin B9, C and beta-carotene, suggesting that nutritional education should favour foodstuffs that provide them simultaneously. CONCLUSION: Nutritional intake in patients with hyperlipidemia is often far from that recommended and does not greatly differ from that in large non-selected populations. It can be considered as inappropriate because of the metabolic and cardiovascular risks in these patients. Adapted nutritional management is crucial.

Adolescent↗

Mutations in PCSK9 cause autosomal dominant hypercholesterolemia.

Autosomal dominant hypercholesterolemia (ADH; OMIM144400), a risk factor for coronary heart disease, is characterized by an increase in low-density lipoprotein cholesterol levels that is associated with mutations in the genes LDLR (encoding low-density lipoprotein receptor) or APOB (encoding apolipoprotein B). We mapped a third locus associated with ADH, HCHOLA3 at 1p32, and now report two mutations in the gene PCSK9 (encoding proprotein convertase subtilisin/kexin type 9) that cause ADH. PCSK9 encodes NARC-1 (neural apoptosis regulated convertase), a newly identified human subtilase that is highly expressed in the liver and contributes to cholesterol homeostasis.

Amino Acid Substitution↗