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E Marechal

Publications and source records attributed to E Marechal.

4 recordsLinked to original sources

[Intravenous pulse methylprednisolone therapy for severe alopecia areata: an open study of 66 patients].

INTRODUCTION: Treatment of alopecia areata is a difficult challenge. Some European publications have shown encouraging results with high dose pulse corticosteroid therapy in extensive plurifocal alopecia areata. We undertook a prospective open study between January 2000 and December 2001 using repeated pulse each month, with the aim of identifying the effects of this repetition and underlining the best indications. PATIENTS AND METHODS: Sixty-six patients aged 9 to 60 years old presenting an extensive alopecia areata exceeding 30% of the scalp surface (n=47), alopecia totalis (n=8), alopecia universalis (n=8), ophiasic alopecia (n=3), for less than 12 months entered this study. The administered treatment was methylprednisolone 500 mg/d during 3 days or 5 mg/kg twice per day during 3 days in children. These pulses were repeated after 4 and 8 weeks, then a second series was carried out or not according to cases. The main evaluation criterion was the percentage of new terminal hair appearing on the bald areas, appreciated by clinical and photographic evaluation at 3 and 6 months. RESULTS: Ophiasic alopecia areata did not respond to treatment. A quarter of patients presenting universal alopecia had a good response (higher than 80 p. 100) followed by a relapse in half the cases. Half of the patients presenting alopecia totalis had a good response, which was maintained three times out of four. Multifocal alopecia areata seems the best indication since the patients under study presented a good response in 63.8 p. 100 of cases (78 p. 100 when it was a first episode and 90.5 p. 100 if the treatment had been started in less than 3 months before). The repetition of the pulses did not appear to increase the number of responders. CONCLUSION: This study provides the best indication of pulse methylprednisolone therapy: first recent episode of extensive plurifocal alopecia areata. These results are less convincing in long term history or other forms of alopecia areata.

Adolescent↗

Truncating mutations in CCM1, encoding KRIT1, cause hereditary cavernous angiomas.

Cavernous angiomas are vascular malformations mostly located in the central nervous system and characterized by enlarged capillary cavities without intervening brain parenchyma. Clinical symptoms include seizures, haemorrhage and focal neurological deficits. Cavernous angiomas prevalence is close to 0.5% in the general population. They may be inherited as an autosomal dominant condition in as much as 50% of cases. Cerebral cavernous malformations (CCM) loci were previously identified on 7q, 7p and 3q (refs 4,5). A strong founder effect was observed in the Hispano-American population, all families being linked to CCM1 on 7q (refs 4,7). CCM1 locus assignment was refined to a 4-cM interval bracketed by D7S2410 and D7S689 (ref. 8). Here we report a physical and transcriptional map of this interval and that CCM1, a gene whose protein product, KRIT1, interacts with RAP1A (also known as KREV1; ref. 9), a member of the RAS family of GTPases, is mutated in CCM1 families. Our data suggest the involvement of the RAP1A signal transduction pathway in vasculogenesis or angiogenesis.

Amino Acid Sequence↗

Notch3 mutations in CADASIL, a hereditary adult-onset condition causing stroke and dementia.

Stroke is the third leading cause of death, and vascular dementia the second cause of dementia after Alzheimer's disease. CADASIL (for cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy) causes a type of stroke and dementia whose key features include recurrent subcortical ischaemic events and vascular dementia and which is associated with diffuse white-matter abnormalities on neuroimaging. Pathological examination reveals multiple small, deep cerebral infarcts, a leukoencephalopathy, and a non-atherosclerotic, non-amyloid angiopathy involving mainly the small cerebral arteries. Severe alterations of vascular smooth-muscle cells are evident on ultrastructural analysis. We have previously mapped the mutant gene to chromosome 19. Here we report the characterization of the human Notch3 gene which we mapped to the CADASIL critical region. We have identified mutations in CADASIL patients that cause serious disruption of this gene, indicating that Notch3 could be the defective protein in CADASIL patients.

Adult↗