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B Eymard

Publications and source records attributed to B Eymard.

At least 73 records · Page 4Linked to original sources

Impaired cerebral glucose metabolism in myotonic dystrophy: a triplet-size dependent phenomenon.

Myotonic dystrophy (DM) is caused by an expansion of a CTG triplet repeat sequence in the 3'-noncoding region of a protein kinase gene, yet the mechanism by which the triplet repeat expansion causes disease remains unknown. Impaired glucose penetration into brain tissues has been described in DM patients and is a phenomenon that remains unexplained. The present study shows that altered brain glucose metabolism is triplet repeat dependent. We studied brain glucose metabolism (CMRGlu, mumol/100 g/min) by the use of positron emission tomography and 18F-fluoro-2-deoxy-D-glucose in 11 ambulatory non-obese DM patients and in 11 age and sex matched healthy subjects. All subjects underwent a glucose tolerance test with plasma insulin determinations. The expansion of CTG triplet repeats was analyzed in patients with the probe cDNA25 after EcoRI digestion. As compared to controls, in DM patients, the CMRGlu was significantly decreased (26.26 +/- 5.05 vs. 33.43 +/- 2.18, mumol/100 g/min, P = 0.004), and after oral glucose loading, plasma insulin levels were significantly higher and plasma glucose levels remained unchanged (respectively, F = 11.21, P = 0.004 and F = 0.20, P = 0.66). Subsequently, the glucose/insulin ratio was significantly lower in DM patients (F = 6.25, P = 0.02). The length of the expansion of the CTG repeats correlated negatively with the CMRGlu (r2 = 0.63, P = 0.003) and positively with the area under the curve for insulin changes over time after oral glucose (r2 = 0.49, P = 0.016). We conclude that, in DM patients, the brain metabolism of glucose is impaired in a repeat dependent manner.

Activities of Daily Living↗

Accumulation of acetylcholine receptors is a necessary condition for normal accumulation of acetylcholinesterase during in vitro neuromuscular synaptogenesis.

To study a step of the very complex processes of the formation of the neuromuscular junction (NMJ), we have analysed the clustering of acetylcholine receptors (AChR) and acetylcholinesterase (AChE) in myotubes cultured in various conditions. On the surface of rat myotubes cultured in the presence of spinal cord cells from embryonic rat, numerous AChE clusters appeared. Such clusters are always co-localized with AChR clusters, but the reverse is not true: the number of AChR clusters largely exceeds that of AChE clusters. Very few AChE clusters formed when such co-cultures were treated with monoclonal antibodies (mAbs) against the main immunogenic region (MIR) of the AChR, which provoke internalization and degradation of the AChRs of the muscular membrane. The total levels of AChE and proportions of molecular forms were unaffected. We also used non-innervated myotubes in which addition of agrin, a protein normally synthesized by motoneurons, transported to nerve terminals and inserted into the synaptic basal lamina, induces the formation of small clusters of AChE. When added to rat myotubes devoid of membrane AChR, agrin-induced AChE clusters did not form. Finally, we analysed the capacity of the variant of the C2 mouse muscle cell line deficient in AChR (1R-) to form clusters of AChE in co-cultures with spinal cord cells from rat: no formation of AChE clusters could be observed. In all these different systems of cultures, the conditions which prevented clustering of AChR (anti-AChR antibodies, deficiency of the variant C2 cell line) also suppressed AChE clustering. We concluded that clustering of AChR is a prerequisite for clustering of AChE, so that NMJ formation implies the sequential accumulation of these two components.

Acetylcholinesterase↗

Mutation in the human acetylcholinesterase-associated collagen gene, COLQ, is responsible for congenital myasthenic syndrome with end-plate acetylcholinesterase deficiency (Type Ic).

Congenital myasthenic syndrome (CMS) with end-plate acetylcholinesterase (AChE) deficiency is a rare autosomal recessive disease, recently classified as CMS type Ic (CMS-Ic). It is characterized by onset in childhood, generalized weakness increased by exertion, refractoriness to anticholinesterase drugs, and morphological abnormalities of the neuromuscular junctions (NMJs). The collagen-tailed form of AChE, which is normally concentrated at NMJs, is composed of catalytic tetramers associated with a specific collagen, COLQ. In CMS-Ic patients, these collagen-tailed forms are often absent. We studied a large family comprising 11 siblings, 6 of whom are affected by a mild form of CMS-Ic. The muscles of the patients contained collagen-tailed AChE. We first excluded the ACHE gene (7q22) as potential culprit, by linkage analysis; then we mapped COLQ to chromosome 3p24.2. By analyzing 3p24.2 markers located close to the gene, we found that the six affected patients were homozygous for an interval of 14 cM between D3S1597 and D3S2338. We determined the COLQ coding sequence and found that the patients present a homozygous missense mutation, Y431S, in the conserved C-terminal domain of COLQ. This mutation is thought to disturb the attachment of collagen-tailed AChE to the NMJ, thus constituting the first genetic defect causing CMS-Ic.

Acetylcholinesterase↗

Novel muscle chloride channel (CLCN1) mutations in myotonia congenita with various modes of inheritance including incomplete dominance and penetrance.

Autosomal-dominant and -recessive myotonia congenita are caused by mutations in the skeletal muscle voltage-gated chloride channel gene (CLCN1). We searched for mutations in this gene in 20 unrelated families with myotonia congenita. We identified 11 different mutations in 10 families. Two of five new mutations (Ala313Thr and Ile556Asn) were both autosomal recessive and dominant with either reduced penetrance or incomplete dominance. Mutations in the CLCN1 gene do not therefore necessarily behave in a classic Mendelian manner.

Adult↗

Cardiac involvement in genetically confirmed facioscapulohumeral muscular dystrophy.

In a series of 100 patients exhibiting clinical and molecular features of facioscapulohumeral muscular dystrophy (FSHMD), five patients had conduction defects or arrhythmia in the absence of cardiovascular risk factors--namely, intraventricular conduction delay and supraventricular arrhythmia induced by electrophysiologic investigations (two patients), palpitations associated with supraventricular arrhythmia (one patient), severe atrioventricular block leading to pacemaker implantation (one patient), and ventricular tachycardia related to arrhythmogenic right ventricular cardiomyopathy (one patient). Patients with FSHMD may have cardiac involvement.

Adolescent↗

[Autoimmune myasthenia: recent physiopathological data].

AUTOIMMUNE DISEASE: Myasthenia gravis is a one of the rare autoimmune diseases with a well-defined antigen. Autoantibodies directed against the muscular acetylcholine receptor (AChR) play a key role, blocking the acetylchoroquine binding site and provoking accelerated receptor degradation; complement destroys the post-synaptic membrane. Disease severity is correlated with extent of AChR loss. THYMUS: Involvement of the thymus is suggested by the beneficial effect of thymectomy and by histological and functional anomalies (modified cellular composition, abnormally activated lymphocytes, sensitivization of certain lymphocytes to AChR). "ANTIBODY NEGATIVE" DISEASE: The lack of anti-AChR antibodies detectable at immunoprecipitation, evidences the complexity of myastenia gravis pathogenesis. These "antibody-negative" forms are distinct from seropositive forms which have a high frequency of pure occular involvement and from infantile forms where the thymus regresses. "Antibody-negative" myastenia gravis might be mediated by antibodies directed against other endplate tardets. CLINICAL DIVERSITY: Our understanding of mechanisms responsible for the diversity of the clinical expression highlight the role of the AChR polymophism (with and adult and fetal expression). GENETIC PREDISPOSITION: Several factors involved in disease pathogenesis have been identified, including genetic factors: the HLA system, AChR alpha chain gene polymorphism, and immunoglobulin and T-cell antigen-receptor gene polymorphism.

Humans↗

Localized proton magnetic resonance spectroscopy in patients with adult adrenoleukodystrophy. Increase of choline compounds in normal appearing white matter.

OBJECTIVES: To describe the changes in the results of magnetic resonance imaging and spectroscopy occurring in the normal-appearing white matter of patients with adult adrenoleukodystrophy and to present evidence of a particular change that may serve as a marker for the follow-up of the disease. DESIGN: Neurologic, magnetic resonance imaging, and localized proton spectroscopic examinations were performed in 11 patients with adult adrenoleukodystrophy and compared with 11 sex- and age-matched controls. PATIENTS: Eleven patients with adult adrenoleukodystrophy participated in a trial of dietary therapy with glyceryl trioleate and glyceryl trierucate (Lorenzo's oil) in the Fédération de Neurologie and the Institut National de la Santé et de la Recherche Médicale, Unité 134, at the Hôpital de la Salpêtrière in Paris, France. RESULTS: The results of magnetic resonance imaging of the white matter were normal in 2 patients and showed areas of mild symmetrical hypersignals on T2-weighted images and fluid attenuated inversion recovery sequences, localized in the posterior white matter in 9 patients. The results of spectroscopy indicated that the peak of the area of choline-containing compounds was increased at long echo times in patients with adult adrenoleukodystrophy, which may reflect very long-chain fatty acid accumulation in this disease. The peak of the area of myo-inositol-containing compounds was increased at short echo times in patients with adult adrenoleukodystrophy, which may indicate a rise in this metabolite concentration. The N-acetylaspartate-creatine amplitude ratio was significantly decreased in patients with motor deficit. The significance of this finding remains to be established. CONCLUSIONS: The results of localized proton magnetic resonance spectroscopy show abnormalities in the cerebral white matter of patients with adult adrenoleukodystrophy, which may contribute to the understanding of the pathophysiologic characteristics of the disease. Although changes in the results of spectroscopy found in this disease are not specific, the increase of choline-containing compounds may reflect the accumulation of very long-chain fatty acids in the central nervous system. Localized proton magnetic resonance spectroscopy may prove a valuable technique, in addition to magnetic resonance imaging, for noninvasive investigation of patients with adult adrenoleukodystrophy undergoing future clinical trials.

Adrenoleukodystrophy↗

Cranial MRI findings in myotonic dystrophy.

MRI was performed in 13 patients with the adult form of myotonic dystrophy (MD) and compared with that of sex- and age-matched normal controls. There was some cerebral atrophy in the patients and marked thickening of the skull in three of them, associated with ossification of the falx cerebri in two. We found high-signal areas on T2-weighted images in the white matter in 9 (70%) of the patients; five showed high-signal areas in the subcortical white matter of the temporal lobes. These findings were associated with intellectual impairment in only one patient, who had a history of a difficult birth and temporal lobe epilepsy.

Adult↗

No evidence for an association of AChR beta-subunit gene (CHRNB1) with myasthenia gravis.

Using a polymorphic dinucleotide repeat, we have investigated the contribution of the gene encoding the beta-subunit of the muscle acetylcholine receptor (CHRNB1), the target autoantigen, to the susceptibility to myasthenia gravis (MG). We have combined a case-control study (comparing 143 patients and 162 controls) and a transmission-disequilibrium test bearing on 35 simplex families with heterozygous parents. There was no evidence for an association of CHRNB1 with MG, even after subgrouping patients according to thymus histology, or other clinical criteria. Interestingly however, the shortest four variants of the CHRNB1 microsatellite were seen only in patients with thymus hyperplasia and in none of the control subjects (P < 0.0025).

Adult↗

Genealogical study of oculopharyngeal muscular dystrophy in France.

This work is based on 54 probands affected by oculopharyngeal muscular dystrophy (OPMD). The muscle biopsy of all these patients showed the presence of the intranuclear inclusions, specific of this disease. The residence of the probands is concentrated in three clusters: the Paris, Marseilles and Bordeaux regions. The genealogical study was carried out on 43 probands, 10 of which did not have any ascendance in France for more than two generations. The geographic origin of the 33 patients of French descent was distributed over numerous regions, not including the Paris and Marseilles regions where many patients lived. This geographic dispersion and the rarity of common genealogies of the probands, did not suggest the existence of a recent founder effect, in contrast to what is observed in the French-Canadian community. The existence of a link between French and French-Canadian families is currently being investigated.

Family Health↗

Dysphagia in oculopharyngeal muscular dystrophy: a series of 22 French cases.

Twenty-two patients (mean age = 67.9 years) with oculopharyngeal muscular dystrophy (OPMD) were referred for dysphagia from 1987 to January 1995. Six patients had suffered aspiration pneumonia, and three had significantly lost weight, while 19 complained of discomfort during swallowing but without weight loss. Swallowing was assessed by fiberscopy during swallowing (last eight patients), videofluoroscopy (12 cases) and manometry (19 cases). Twelve patients underwent a cricopharyngeal (CP) myotomy: 10 showed improvement, one had a partial improvement, and the procedure failed in one (mean follow-up = 29.6 months). In the other cases, CP myotomy was postponed, refused or contraindicated. Of the 22 patients, three died from OPMD consequences. Factors associated with favorable outcome were adequate residual pharyngeal propulsion and no weight loss. In a majority of cases, CP myotomy constitutes an effective treatment of dysphagia with adequate residual propulsion but does not modify the final prognosis and is contraindicated in cases with pharyngeal aperistalsis.

Adult↗

The fetal/adult acetylcholine receptor antibody ratio in mothers with myasthenia gravis as a marker for transfer of the disease to the newborn.

High anti-fetal/anti-adult muscle anti-acetylcholine receptor (AChR) antibody (Ab) titer ratio is predictive of the occurrence of neonatal myasthenia gravis in a first child. The aim of the present study was to determine whether the ratio between the levels of antibodies is an intrinsic property of the mother's sera or varies with physiologic status such as pregnancy. We performed a longitudinal study of the levels of Ab directed against both fetal and adult AChRs and the ratio between them in 11 mothers with myasthenia gravis (MG). Sera were taken during, before, and after pregnancy. Absolute levels of Ab varied considerably during the time of observation as indicated by analyzing the maximum change between any two sample times during the study (adult mean percentage change 45.9 +/- 26.4; fetal 42.51 +/- 22.05). In contrast to this, the anti-fetal/anti-adult muscle AChR Ab titer ratio was much less variable (mean percentage change 16.66 +/- 10.11; p < 0.0033). The levels of the two Ab types yielded a correlation of 0.918, consistent with the stability of the ratio between them. This stability of ratio has practical value in the management of pregnancy and infant care in mothers with MG because the ratio at any time, before or during pregnancy, will predict whether the child will contract neonatal MG. We determined this for the first child, but further studies are necessary to establish if this remains true for subsequent pregnancies.

Antibodies↗

Primary adhalinopathy (alpha-sarcoglycanopathy): clinical, pathologic, and genetic correlation in 20 patients with autosomal recessive muscular dystrophy.

Primary adhalin (or alpha-sarcoglycan) deficiency due to a defect of the adhalin gene localized on chromosome 17q21 causes an autosomal recessive myopathy. We evaluated 20 patients from 15 families (12 from Europe and three from North Africa) with a primary adhalin deficiency with two objectives: characterization of the clinical phenotype and analysis of the correlation with the level of adhalin expression and the type of gene mutation. Age at onset and severity of the myopathy were heterogeneous: six patients were wheel-chair bound before 15 years of age, whereas five other patients had mild disease with preserved ambulation in adulthood. The clinical pattern was similar in all the patients with symmetric characteristic involvement of trunk and limb muscles, calf hypertrophy, and absence of cardiac dysfunction. Immunofluorescence and immunoblot studies of muscle biopsy specimens showed a large variation in the expression of adhalin. The degree of adhalin deficiency was fairly correlated with the clinical severity. There were 15 different mutations (10 missense, five null). Double null mutations (three patients) were associated with severe myopathy, but in the other cases (null/missense and double missense) there was a large variation in the severity of the disease.

Adolescent↗

[Juvenile GM2 gangliosidosis with progressive spinal muscular atrophy onset].

GM2 gangliosidosis are caused by a beta-hexosaminidase A enzyme deficiency. Mutations in the gene leaving residual enzyme activity give rise to juvenile and adult forms of the disease which have a great clinical heterogeneity. We report three cases which have been considered for some time as Kugelberg-Welander disease. beta-hexosaminidase A was determined with the sulfated synthetic substrate, 4-méthylumbelliferyl-N-acetylglucosamine 6-sulfate (4-MUGS), which allowed the diagnosis. Two of these cases from one family had normal values of hexosaminidase A in serum as found in the B1 variant. Compound mutations were detected. The B1 variants had a classical B1 mutation (G533-->A) and a new mutation located on exon 11. The patient of the second family had the classical mutation of adult GM2 gangliosidosis (Gly269-->Ser) and a new mutation on exon 1, at the initiation codon.

Adult↗

[Progressive external ophthalmoplegia of mitochondrial origin: contribution of morphological and molecular studies].

We performed a comparative analysis of the clinical, morphological and molecular characteristics of 62 patients affected with progressive external ophthalmoplegia with ragged-red fibres in muscle. Twenty-seven patients had only muscular disease, and 35 had a multisystemic disease with neurological, cardiac, sensory, or endocrine symptoms. Quantitation of mitochondrial accumulation and numbering of cytochrome c oxidase deficient muscle fibres were done in 43 patients. Muscle mitochondrial DNA deletions were detected, quantitated and localised by Southern Blot analysis. Point mutations were screened in five mitochondrial DNA transfer RNA genes by denaturing gradient gel electrophoresis technique. This study further emphasized the relationships between progressive external ophthalmoplegia and mitochondrial DNA mutations that were present in 46/62 patients (40 deletions, 4 h point mutations in the tRNA leucine gene and 2 further families with maternal inheritance but no mutation identified to-date). Family history was positive in 12 patients: 4 with a maternally inherited disease (2 of whom had an identified mitochondrial DNA mutation), and 4 with an autosomal dominant inherited disease, none of which was associated with multiple mitochondrial DNA deletions. Interestingly, 2 of our patients with an identified mitochondrial DNA mutation appeared as sporadic cases. No morphological or molecular parameters was correlated with the tissular extension of the disease. However, mitochondrial DNA deletions were significantly associated with ocular symptoms which had an earlier onset and were more severe. Clinical features of the patients with a multisystemic disease and a mitochondrial DNA deletion were essentially related to Kearns-Sayre syndrome. In particular, a cardiac conduction defect was present in 12 patients out of 18 with a multisystemic disease associated with a mitochondrial DNA deletion; it was never encountered in 17 patients with a multisystemic disease but no mitochondrial DNA deletion.

Adolescent↗

Association of arthrogryposis multiplex congenita with maternal antibodies inhibiting fetal acetylcholine receptor function.

Arthrogryposis multiplex congenita (AMC), characterized by multiple joint contractures developing in utero, results from lack of fetal movement. Some cases are genetically determined, but AMC occasionally complicates pregnancy in patients with myasthenia gravis (MG) suggesting involvement of circulating maternal antibodies. We previously demonstrated antibodies that inhibited the function of fetal acetylcholine receptor (AChR) in one healthy woman with an obstetric history of recurrent AMC. Here we study sera from this woman, from one other with a similar history, and from three (one asymptomatic) whose babies had neonatal MG and AMC. All five maternal sera had high titers of antibodies that inhibited alpha-Bungarotoxin (alpha-BuTx) binding to fetal AChR, and their sera markedly inhibited fetal AChR function with little effect on adult AChR function. Moreover, in a further survey, 3 of 20 sera from anti-AChR negative AMC mothers inhibited fetal AChR function significantly at 1:100 dilution. These results demonstrate the role of antibodies to fetal AChR and perhaps other muscle antigens in some cases of AMC. More generally, they suggest that placental transfer of antibodies directed at fetal antigens should be considered as a cause of other recurrent fetal or perinatal disorders.

Adult↗

Blunted coronary reserve in myotonic dystrophy. An early and gene-related phenomenon.

BACKGROUND: In myotonic dystrophy (DM), striated muscle is involved in relation to the size of the DNA mutation. Smooth muscle may be similarly impaired at the level of the urinary and digestive apparatus and possibly at the level of small vessels, since microangiopathy has been described in the iris and digital capillaries. Our purpose was to study the function of the myocardial microvasculature in relation to the size of the mutation in DM patients without clinical cardiac involvement and with normal left ventricular dimensions and function and normal large coronary arteries. METHODS AND RESULTS: In 6 control subjects and 10 DM patients, we investigated the coronary blood flow reserve using positron emission tomography with 15O-labeled water. Global and regional flow reserves were obtained from myocardial regions of interest manually drawn on a static FDG image encompassing, respectively, the whole left ventricle and the anterior, septal, and lateral walls. The DNA mutation size was determined on circulating lymphocytes in each DM patient. Compared with control subjects, DM patients had decreased global (2.39 +/- 0.39 versus 4.00 +/- 0.67, P = .00003) and regional (anterior, 2.39 +/- 0.64 versus 3.87 +/- 0.92, P = .002; septal, 2.60 +/- 0.48 versus 4.00 +/- 0.70, P = .0003; lateral, 2.26 +/- 0.58 versus 4.16 +/- 1.11, P = .0005) coronary reserves. In DM patients, the coronary reserve correlated strongly and inversely with the DNA mutation size (r = -.77, P = .009). CONCLUSIONS: The study demonstrated that global and regional coronary reserves are impaired, in relation to the DNA mutation size, in symptom-free DM patients with normal ventricular dimensions and function and normal large coronary vessels. We suggest that a gene-related blunted coronary reserve resulting from an impairment of vascular smooth muscle is an early component of DM cardiomyopathy.

Adult↗

Paramyotonia congenita: genotype to phenotype correlations in two families and report of a new mutation in the sodium channel gene.

Sodium channel disorders include hyperkalemic periodic paralysis (hyperPP), paramyotonia congenita (PC) and potassium-aggravated myotonia (PAM). PC is a myotonic syndrome characterized by cold-induced muscle stiffness and weakness. In this paper, we report two families. The first is affected by PC with cold-induced stiffness and no weakness, in addition to hyperPP. This family displays the Arg1448Cys mutation in the sodium channel gene originally described in pure PC families. The fact that families with the same mutation present distinct phenotypes indicates that other factors, genetic or environmental, may modulate the expression of the disease in sodium channel disorders. The second family was unusual because patients presented cold-induced weakness without stiffness. A mutation was found in the sodium channel gene that changed an isoleucine into a threonine at position 693. These two families demonstrate that sodium channel mutations may cause either cold-induced stiffness or weakness.

Adult↗