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B Eymard

Publications and source records attributed to B Eymard.

At least 91 records · Page 5Linked to original sources

[Oculopharyngeal myopathies: value of myotomy of the superior sphincter of the esophagus. Apropos of a case].

Since 3 years, a 74 year-old man suffered of swallowing impairment, weight loss, bilateral ptosis and proximal muscular weakness. Electron microscopy disclosed intranuclear tubular filaments and confirmed the diagnosis of oculopharyngeal muscular dystrophy. Upper oesophageal sphincter myotomy was performed with complete improvement. Four months after surgery, swallowing disorders were not recurrent and weight gain was substantial.

Aged↗

MR quantification of muscle fatty replacement in McArdle's disease.

McArdle's disease is an energy-dependent disorder of skeletal muscle caused by the inability to break down glycogen. The aim of this study was to quantify fatty replacement in patients with McArdle's disease. Calf and thigh axial spin echo T1-weighted magnetic resonance (MR) images (repetition time 500 ms, echo time 25 ms) were obtained at 0.5 T in nine patients with McArdle's disease (age 51 +/- 16 years, range 26-74) and nine sex- and age-matched healthy subjects (age 52 +/- 16 years, range 29-78) to quantify intramuscular fat. Regions of interest were drawn manually, encompassing the largest cross section of muscle. A fatty replacement index (IF) was determined from histograms of signal in the regions of interest in calf and thigh muscles. In normal subjects, IF = 3.6 +/- 2.8% in calf and 4.9 +/- 2.3% in thigh. In patients, IF = 11 +/- 9.3% in calf and 13.5 +/- 10.4% in thigh, significantly different from IF values in normal subjects (p = .03). IF correlated well with age in patients (p = .03). In older patients, up to 25% of the muscle volume was replaced by fat. Patients with McArdle's disease, usually weakly disabled, exhibit significant muscle fatty replacement on MR images. These findings suggest a progressive muscle loss over time related to the disease process.

Adipose Tissue↗

Chromosome 15-linked limb-girdle muscular dystrophy: clinical phenotypes in Reunion Island and French metropolitan communities.

Erb's type limb-girdle muscular dystrophy (LGMD) was identified and clinically studied in detail in a small community living in the Reunion Island (RI). It was linked to chromosome 15q and related to mutations in the muscle specific calpain 3 gene. A series of cases were afterwards clinically and genetically identified in the French metropolitan community. The phenotype was identical to the RI type in the great majority of cases, although clinical differences were noticed in a few cases. Six different mutations were identified in the RI families, whereas a series of 39 mutations were detected in the French metropolitan families, all different from those present in the RI patients. Phenotype-genotype correlations were attempted in both communities.

Adolescent↗

X-linked vacuolated myopathy: complement membrane attack complex on surface membrane of injured muscle fibers.

We describe a probable recessive X-linked myopathy characterized by the presence of vacuolated muscle fibers. Four males and their shared maternal grandfather were affected. Clinical characteristics include juvenile onset, very slow progression, and predominant proximal muscle involvement. The clinical picture and the morphological findings are compared with those previously described in a family. By immunofluorescence, all histologically abnormal muscle fibers, in particular those vacuolated, showed a strong deposition of the complement C5b-9 membrane attack complex over the whole muscle fiber surface. Weak immunostaining for membrane attack complex was also found in endomysial capillaries and perimysial vessel walls. Muscle fibers showed sarcolemmal immunolabeling with anti-major histocompatibility complex I, which was also present on the margins of many vacuoles. All vacuoles were stained by antidystrophin antibody, which colocalized in most of them with antilaminin immunostaining. Taken together, these results suggest that the deposition of membrane attack complex on the damaged cell surface membrane could be important in the pathogenesis of this muscle disorder, and that the membrane-bounded vacuoles could be a consequence of sarcolemmal invagination.

Adult↗

Chronic progressive external ophthalmoplegia with ragged-red fibers: clinical, morphological and genetic investigations in 43 patients.

The evaluation of the severity of progressive external ophthalmoplegia (PEO) with ragged-red fibers in muscle, at the onset of the disease, when PEO is most often the only presenting symptom, is a difficult problem in neurological practice. In order to address that issue, we have performed a comparative analysis of the clinical, morphological and molecular characteristics of 43 patients affected with that form of ocular myopathy. Quantification of mitochondrial accumulation was performed with an image analysis application on muscle sections stained with succinate dehydrogenase histochemical reaction. The proportion of muscle fibres appearing as cytochrome c oxidase deficient was used as an index of the muscle-energy defect. Muscle mitochondrial DNA deletions were detected, localized and quantitated by Southern blot analysis. Point mutations were screened in five transfer RNA genes in the mtDNA (tRNA(Leucine (UUR)), tRNA(Lysine), tRNA(Glutamine), tRNA(Isoleucine) and tRNA(Formylmethionine)) by a denaturing gradient gel electrophoresis technique. This investigation confirmed the high frequency of mtDNA deletions or point mutations in PEO. At the onset of the disease, no clinical, morphological or molecular features could predict whether PEO would remain isolated or become part of a more severe multisystem disease. However, patients with mtDNA deletions were characterized by more severe ophthalmoplegia of earlier onset. Their muscle alterations were roughly parallel in severity to the proportion of deleted mtDNA molecules in muscle. Patients with a multitissular disease and mtDNA deletions were always sporadic cases and their clinical presentation was, most often, closely related to Kearns Sayre syndrome.

Adolescent↗

Quantitative analysis by polymerase chain reaction of growth hormone receptor gene expression in human liver and muscle.

A single form of GH receptor (GHR) messenger RNA (mRNA) of 4.5 kilobases, encoding the full-length GHR, has been found in man. To measure the absolute number of mRNA molecules encoding the GHR in human tissues, we developed a quantitative polymerase chain reaction assay. An internal control RNA was constructed by inserting a 50-basepair fragment of the rat PRL receptor complementary DNA into a portion of the human GHR complementary DNA. The internal control RNA and the target mRNA were amplified together with the same set of primers. Twenty-four cycles of amplification were used to satisfy an exponential phase of amplification. It was possible to detect as few as 500 molecules of target mRNA/micrograms total RNA. In 3 liver samples obtained from normal donors at the time of transplant, the amount of GHR mRNA ranged from 0.5 +/- 0.1 to 1.4 +/- 0.4 x 10(6) molecules/micrograms total RNA. These results were confirmed by slot blot analysis of the same samples. The number of receptor transcripts did not appear to be correlated with the receptor-binding capacity found in the 3 liver samples. In 7 muscle biopsies, GH receptor mRNA varied between 4.0 +/- 0.4 and 34.6 +/- 1.4 x 10(4) molecules/micrograms total RNA. This technique allows direct measurement of GHR gene expression in human tissues and represents a valuable tool, particularly for tissues such as muscle, in which the receptor protein cannot be measured using conventional binding assays.

Base Sequence↗

A new mutation in the HEXA gene associated with a spinal muscular atrophy phenotype.

We describe two adult siblings who had had mild GM2 gangliosidosis since childhood. They presented with spinal muscular atrophy and dysarthria, and one sibling also had mental disturbances. Laboratory studies established the diagnosis of the B1 variant of GM2 gangliosidosis, because the hexosaminidase (Hex) A deficiency was not present upon testing with the unsulfated synthetic substrate 4-methylumbelliferyl N-acetylglucosaminide. HEXA gene analysis proved that the patients are compound heterozygotes for the previously identified G533-->A mutation and for a new mutation, G1171-->A, at exon 11. This new mutation affects a conserved amino acid and results in a Val-->Met substitution at position 391 of the HEXA gene. Full sequence of the alpha-subunit cDNA of Hex A revealed no other mutation. Assays for Hex A activities in patients suspected of having GM2 gangliosidosis should be performed with the sulfated substrate 4-methylumbelliferyl N-acetylglucosamine 6-sulfate.

Adult↗

[Role of the thymus in the physiopathology of myasthenia].

In myasthenia gravis (MG), the frequency of histologic abnormalities (hyperplasia in young patients, thymoma in older cases) and clinical improvement after thymectomy indicate involvement of the thymus in the pathophysiology of the disease. MG patient thymuses are characterized by the following features: increased amount of B cells (in hyperplasia) and functional abnormalities, mainly activation of B, T and epithelial cells. Moreover, thymic lymphocytes are sensitized to acetylcholine receptor (AChR): first, AChR specific T and B lines can be grown from MG thymus cultures, second, cultured thymic lymphocytes proliferate in the presence of AChR and produce anti-AChR antibodies. AChR molecules are expressed in thymic myoid cells and AChR-like molecules could be displayed at the surface of other cell types. Thus, autosensitization conditions are combined in MG thymus, and potential mechanisms are discussed. It could be a primary event, autosensitization of lymphocytes to AChR taking place initially in the thymus. Or it could be a secondary process, lymphocytes sensitized to AChR in the periphery could be trapped by myoid cells and restimulated in the thymus. In thymoma, autoimmunization occurs differently: the autoimmune process could be initiated by the tumor epithelial cells which express an AChR-like protein. The possible role of severe architectural disturbance in MG thymus (particularly in thymoma), altering thymic lymphocyte selection and maturation is also discussed.

Female↗

[Severe cardiomyopathy revealing amylopectinosis. Two cases in adolescents from the same family].

Type IV glycogen storage disease, also termed Andersen's disease or amylopectinosis, is a rare autosomic recessive hereditary disease usually caused by a deficit in glycogen branching enzyme. We report our observation of two siblings with type IV glycogen storage disease who had normal branching enzyme activity. The initial symptom was severe heart failure. A 14-year-old boy, born to consanguinous parents, was seen for severe global heart failure. Growth retardation had been diagnosed since the age of 6 and abnormal fatigability since the age of 12. Muscle and endomyocardium biopsies revealed abnormal glycogen storage with normal branching enzyme activity. The patient's condition improved after symptomatic treatment, but death occurred due to infectious complications after orthoptic heart transplantation. One year later, the proband's 12-year-old sister, with an uneventful personal medical history, was hospitalized for severe left ventricular failure. Muscle and liver biopsies demonstrated the same anomalies, again without branching enzyme deficiency in the liver. Heart failure was controlled with symptomatic care and the patient's current condition remains satisfactory. This observation demonstrates the clinical expression of familial type IV glycogen storage disease in patients with normal branching enzyme activity. Age at onset is quite variable, reported from 5 to 70 years, as is the clinical course before diagnosis.

Adolescent↗

Mutations in the muscle sodium channel gene (SCN4A) in 13 French families with hyperkalemic periodic paralysis and paramyotonia congenita: phenotype to genotype correlations and demonstration of the predominance of two mutations.

Hyperkalemic periodic paralysis (hyperPP), paramyotonia congenita (PC) and PC with myotonia permanens are closely related muscle disorders of genetic origin due to allelic mutations in the muscle sodium channel gene, SCN4A. Seven families of French origin with hyperPP were studied. Five of these had the Thr704Met mutation, but 2 families, genetically linked to SCN4A, failed to show any of the known mutations of SCN4A. Correlations between the phenotype and the genotype were made for patients with the Thr704Met mutation. All 12 patients over 30 years old with the Thr704Met mutation presented muscle weakness due to degeneration of muscle fibers in addition to periodic paralysis. Only approximately 12.5% of patients with the Thr704Met mutation presented with clinical myotonia and about 50% with hyperkalemia. One family with PC displayed the Gly1306Val mutation with a phenotype similar to the one already reported for this mutation. Five families with either PC or PC with myotonia permanens had the Thr1313Met mutation indicating that the severity of myotonia and its permanence were variable. Two mutations of SCN4A were found to be predominant in these 13 families: the Thr704Met and the Thr1313Met mutations. Only 2 families with the Thr704Met mutation and 3 families with the Thr1313Met shared the same SCN4A haplotype determined with intragenic dinucleotide repeats. Recurrent mutations of SCN4A may contribute to the predominance of these two mutations in the French population.

Adolescent↗

Correlation between decreased myocardial glucose phosphorylation and the DNA mutation size in myotonic dystrophy.

BACKGROUND: Myotonic dystrophy, the most common form of adult dystrophy, has been shown to be caused by amplification of CTG triplet repeat in the 3' untranslated region of a protein kinase gene located on chromosome 19. Impaired glucose metabolism has been suggested as a possible explanation of brain and skeletal muscle involvement in this multisystem disease. We investigated whether myocardial glucose metabolism is impaired in myotonic dystrophy and whether this impairment is related to the size of the mutation. METHODS AND RESULTS: The myocardial metabolic rate for glucose (MMRGlu, mumol.min-1.g-1), K1 (blood-to-tissue transfer constant), k2 (tissue-to-blood transfer constant), and k3 (phosphorylation rate constant) were determined in 7 control subjects and 12 patients with myotonic dystrophy by using parametric images generated from dynamic cardiac positron emission tomography (PET) and 18F-fluoro-2-deoxy-glucose studies. The expansion of the CTG triplet repeats was analyzed in patients with the probe cDNA25 after EcoRI digestion. Nonparametric tests were used to compare quantitative variables between control subjects and patients. The correlations between the size of the mutation and PET parameters were studied by linear regression. MMRGlu and k3 were significantly decreased in patients compared with control subjects (0.39 +/- 0.20 versus 0.64 +/- 0.25, P = .03, and 0.09 +/- 0.07 versus 0.24 +/- 0.21, P = .03, respectively), whereas K1 and k2 were not statistically different between control subjects and patients. MMRGlu and k3 correlate inversely with the length of the CTG triplet repeat (r = -.65 and P = .03 for MMRGlu, and r = -.85 and P = .001 for k3, respectively). CONCLUSIONS: In myotonic dystrophy, the observed reductions in MMRGlu and phosphorylation are inversely linked to the length of the mutation. This observation suggests that impaired modulation of a protein kinase involved in myocardial hexokinase activation may give a pathophysiological schema to relate the molecular defect and the abnormal myocardial metabolism in myotonic dystrophy.

Adult↗

Association of neonatal myasthenia gravis with antibodies against the fetal acetylcholine receptor.

The specificities of autoantibodies directed against the acetylcholine receptor (AChR) for embryonic and adult muscle AChR were studied in 22 mothers with myasthenia gravis (MG) and in their newborns using human fetus and normal adult muscle AChR preparations. 12 mothers had transmitted MG to their neonates with, in three cases, antenatal injury. A clear correlation was found between occurrence of neonatal MG (NMG) and the high overall level of anti-AChR antibodies (embryonic or adult muscle AChR). However, a strong correlation was also found between occurrence of NMG and the ratio of anti-embryonic AChR to anti-adult muscle (Te/Ta) AChR antibodies (P < 0.0002). Taken together, these data suggest that autoantibodies directed against the embryonic form of the AChR could play a predominant role in the pathogenesis of NMG. Paradoxically, the three cases with antenatal injury presumably the most severe form of NMG, were not associated with high Te/Ta. At the clinical level, these observations could prove helpful in the prediction of transmission of NMG.

Adolescent↗

Swallowing disorders in muscular diseases: functional assessment and indications of cricopharyngeal myotomy.

Thirty-four patients with an identified muscular disease were referred to our department for assessment and treatment of swallowing difficulties. Their ages ranged from 16 to 91 years (mean 59). The diagnoses were oculopharyngeal dystrophy in 17 patients, Steinert myotonic dystrophy in 6, mitochondrial myopathies in 4, polymyositis in 3, and other types in 4 patients. The main consequences of the dysphagia were weight loss (12 patients), pulmonary infections (15 patients), modified food consistency (18 patients) and non-oral feeding (3 patients). Several techniques were used to assess the different stages of deglutition: physical examination during swallowing, videofluoroscopy, pharyngoesophageal manometry, videofibroscopy of the pharynx during swallowing. Major pathological features found in the pharynx were decreased pharynx peristaltis and impaired UES relaxation. Cricopharyngeal myotomy was performed in 11 myopathic patients (median follow-up 24.9 months), while it was unnecessary, refused or contraindicated in the other patients. The procedure was successful in 8 patients whose dysphagia was dramatically improved, and failed in 3 patients. Pharyngeal perstaltis was severely impaired only in the 3 failures and was partly preserved in the improved cases. We conclude that pharyngeal function is the major prognostic factor. Cricopharyngeal myotomy is an effective treatment in those cases where cricopharyngeal dysfunction is a predominant problem or where pharyngeal peristaltis is partly impaired, since the procedure removes one obstacle. It is contraindicated when pharynx propulsion is severely impaired.

Adolescent↗

Retraction.

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Retraction Notice↗

Effect of sera from myasthenia gravis patients and of alpha-bungarotoxin on acetylcholinesterase during in vitro neuromuscular synaptogenesis.

Myasthenia gravis (MG) is mediated by circulating antibodies directed against acetylcholine receptor (AChR) but the antibody titre is poorly correlated with the clinical severity of the disease. We analysed acetylcholinesterase (AChE) activity, molecular forms and distribution during in vitro synaptogenesis, in the presence of sera from MG patient. We observed that the formation of AChE patches is inhibited in proportion to the anti-AChR antibody titre, whatever the clinical severity of the disease. The total activity and the proportion of the different molecular forms were unchanged suggesting that AChE level and distribution are controlled by independent mechanisms. To clarify the relationship between the mechanisms of AChE concentration during synaptogenesis and AChR concentration, we compared the effect of MG sera (receptors are internalised and degraded) and of the acetylcholine antagonist alpha-bungarotoxin (non-functional receptors are still present in the muscular membrane). In the presence of alpha-bungarotoxin, the number of AChR clusters, and AChE activity and concentration were equivalent to control values. The comparison of the results obtained with antibodies and alpha-bungarotoxin suggests that the presence and/or concentration of AChR is a necessary condition for normal concentration of AChE during synaptogenesis.

Acetylcholinesterase↗

[Paraneoplastic myasthenic syndrome].

We report a case of neuromuscular disease overlap between myasthenia gravis and Lambert-Eaton syndrome (LES). Clinical features were those of LES and occurred insidiously in this 68-year old man: proximal weakness predominant in the lower limbs, generalized areflexia, dryness of the mouth and partial right eye palsy. Investigations disclosed a small cell lung cancer. On the other hand, an electrophysiological study showed low amplitude of all motor evoked potentials, and significant decrement in the median nerve at repeated 3 Hz stimulation, but failed to disclose any increment of the motor evoked potential in abductor digiti minimi pedis muscle after both maximal voluntary contraction and repeated 20 Hz stimulation. In addition, the patient improved under anticholinesterase drugs, but failed to respond to guanidine. Titres for both anti-acetylcholine-receptor antibodies and calcium channel antibodies were negative. The relationship between our case and recently reported cases of co-existence of the Lambert-Eaton myasthenic syndrome and myasthenia gravis is discussed.

Aged↗

[Cardiac involvement in certain muscular diseases. Apropos of 216 cases].

Myopathy may be associated with very variable cardiac involvement, the expression of which is related to the type of neuromuscular disease and also to the individual. This retrospective study, performed between 1986 and 1991, was undertaken to determine the prevalence of cardiac involvement in myopathy. A total of 216 subjects with an average age of 34 years were reviewed by clinical examination, ECG, echocardiography and Holter ECG monitoring. Some patients also underwent complementary radionuclide (scintigraphy, angiography) and electrophysiological investigations. The results confirmed cardiac disease in over a half of patients. Although 3/4 of the patients were asymptomatic from the cardiac point of view at the time of evaluation, the severity of certain lesions led to a number of specific therapeutic interventions. This suggests that simple, non-invasive cardiac diagnostic procedures should be undertaken systematically in the early stages of myopathic disease.

Adolescent↗