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Biomedical subjects

P Bouche

Publications and source records attributed to P Bouche.

At least 55 records · Page 3Linked to original sources

Patients homozygous for the 17p11.2 duplication in Charcot-Marie-Tooth type 1A disease.

Charcot-Marie-Tooth type 1A disease is an inherited sensorimotor neuropathy that is most often associated with a duplication of chromosome 17p11.2. This region contains the gene of the peripheral myelin protein 22 (PMP22), which is responsible by a gene dosage effect for the Charcot-Marie-Tooth type 1A phenotype with 17p11.2 duplication. We performed a clinical, electrophysiological, and genetic study of a consanguinous Charcot-Marie-Tooth type 1A family with 4 affected siblings, 3 of whom were homozygous for the 17p11.2 duplication, the other a heterozygote. Comparison of phenotypes showed that the severity of the disease was variable among the homozygotes, one of whom was no more severely affected than the heterozygous sibling who was paucisymptomatic. These results suggest that the severity of the disease is not determined solely by the number of copies of the PMP22 gene.

Adult↗

[Multifocal motor neuropathy: an individualized disease of the peripheral nervous system].

Multifocal motor neuropathy is a peripheral nervous system disease described among chronic inflammatory demyelinating polyneuropathies. It is characterized according to both clinical criteria, including chronic asymmetric and multifocal deficit which starts and remains prominent in the upper limbs, and electrophysiological criteria, including persistent multifocal motor conduction blocks in motor nerves. High titers of serum antiganglioside GM1 antibodies are discovered in nearly 40% of cases. Steroids and plasma exchange are not efficient. High doses of intravenous immunoglobulins (i.v.Ig) improved symptoms in the majority of open and controlled published studies. The quality of the response to i.v.Ig may worsen in some patients after a variable number of infusions, leading to immunosuppressive treatments mainly with oral or intravenous cyclophosphamide. Its etiology is unknown but the frequent presence of anti-GM1 antibody high serum titers, the pathological findings in some rare morphological studies, and the response to i.v.Ig favor the hypothesis of an autoimmune disorder.

Demyelinating Diseases↗

Charcot-Marie-Tooth disease type 1A with 17p11.2 duplication. Clinical and electrophysiological phenotype study and factors influencing disease severity in 119 cases.

A clinical and electrophysiological study was performed in 119 Type 1A Charcot-Marie-Tooth disease (CMT1A) patients with proven 17p11.2 duplication. Onset of the first functional manifestations was in the first decade in 50% of cases and before the age of 20 years in 70% of cases. The predominant clinical signs were muscle weakness and wasting in the lower limbs. None of the patients was normal on clinical examination and all presented at least pes cavus or ankle jerk areflexia. Motor nerve conduction velocity (MNCV) was uniformly reduced in all nerves, and was < or = 33 m/s in the median nerve for all patients. Sensory potentials were abnormal in all cases, even where there was no clinical sensory loss. Needle electromyography recruitment was reduced in distal muscles for all patients. MNCV slowing was fully consistent with the presence of duplication even in clinically asymptomatic individuals or in children, confirming the complete electrophysiological penetrance of 17p11.2 duplication and making median nerve MNCV a reliable tool for screening affected at-risk individuals. Functional disability was mild. Ninety-six percent of patients were autonomous; 25% were asymptomatic and diagnosed by systematic family investigation especially on the basis of median nerve MNCV reduction. Early age at onset and greatly reduced median nerve MNCV were predictive of a more severe disease course; the earlier the onset the more reduced the median nerve MNCV and the higher the functional disability tended to be after an equivalent disease duration. Cross-sectional analysis of neurological deficit, functional deficit and MNCV according to disease duration showed that, regardless of age at onset, CMT1A disease with 17p11.2 duplication is a clinically progressive disorder. Neurological deficit and functional disability increased, whereas median nerve MNCV and compound muscle action potential (CMAP) amplitude did not change with disease course. Intrafamilial phenotype variation between parents and children and between siblings was studied in large families. Functional disability and neurological deficit differed widely and the highest range of median nerve MNCV within a family reached 23 m/s. Clinical and electrophysiological data were compared with those of CMT1B patients with peripheral myelin P0 protein point mutation. CMT1A patients were found to be more severely affected with more prolonged distal motor latency and more reduced CMAP amplitude, whereas MNCV did not significantly differ, indicating that peripheral myelin P0 protein point mutation is not always associated with a severe phenotype. The same genetic defect (17p11.2 duplication) results in variable expression within the phenotype, even in siblings with variations in age at onset, clinical severity and MNCV slowing. This phenotypic variation could be due to additional genetic factors related to peripheral myelin protein 22 expression as well as to other endogenous or environmental factors.

Adolescent↗

SMN gene analysis of the spinal form of Charcot-Marie-Tooth disease.

The spinal form of Charcot-Marie-Tooth disease (spinal CMT) is a rare genetic disorder of the peripheral nervous system, the genetic basis of which remains unknown. To test the hypothesis that a defect of survival motor neuron (SMN), the determining gene for spinal muscular atrophy (SMA), would result in spinal CMT, 18 unrelated spinal CMT patients were studied. Nine of them were sporadic cases and the other nine belonged to unrelated autosomal dominant pedigrees. None of the 18 patients showed deletions involving SMN exons 7 or 8, the most frequent gene alteration found in SMA. In addition, haplotype analysis in two large autosomal dominant pedigrees showed that the 5q13 locus was not segregating with the spinal CMT locus. Therefore, neither the sporadic nor the familial cases of spinal CMT are associated with a SMN gene deletion, nor are the familial cases linked to the 5q13 region, indicating that this neuropathy is genetically different from SMA.

Charcot-Marie-Tooth Disease↗

Hereditary thermosensitive neuropathy: an autosomal dominant disorder of the peripheral nervous system.

We report the clinical and electrophysiologic characteristics of eight patients (four men and four women) with a hereditary neuropathy with probable thermosensitivity (HTN) of autosomal dominant inheritance. Patients presented reversible episodes of ascending muscle weakness, paresthesiae, and areflexia apparently triggered by an elevation of body temperature over 38.5 degrees C. Mean age at onset was 13 +/- 12 (SD; range 6 to 43). Four patients had suffered up to five attacks. EMG and pathologic findings were compatible with a reversible demyelinating neuropathy such as Guillain-Barré syndrome. We excluded loci causing other hereditary demyelinating neuropathies, such as Charcot-Marie-Tooth disease type I (CMT type I) and hereditary neuropathy with liability to pressure palsies (HNPP), by linkage analysis; thus, HTN is not allelic to either CMT type I or to HNPP.

Adult↗

[Postoperative amyotrophic cubital neuralgia: 4 cases].

Four cases of post-operative ulnar nerve mononeuropathy are reported. In all the cases a severe sensory and motor loss was strictly limited to ulnar nerve territory. The electrophysiological examination: needle examination, motor and sensory nerve conduction studies and even more somatosensory potential evoked from ulnar nerve after stimulation above elbow allowed to eliminate a lesion at the elbow and to asses the lesion at wrist, arm, axilla or plexus. Full recovery occurred once and partial recovery twice. We considered that these ulnar lesions are neuralgic amyotrophies of Parsonage and Turner according to the epidemiological, clinical, evolutive and electrophysiological data.

Adult↗

[Multifocal motor neuropathies with conduction blocks. 39 cases].

Clinical, biological and electrophysiological features from a cohort of 39 multifocal motor neuropathies with conduction blocks (NMM with CB) have been studied. There were 29 males and 10 females with an average of 47.3. At the first evaluation, the mean duration of the symptoms was of 8 years with extremes between 1 and 28. Pain and paresthesias were present in respectively 10 and 18 p. 100 of the patients. Fasciculations and cramps were observed in more than 2/3 of the cases. Three patients had tremor at rest. Upper limb muscular weakness was the predominant initial symptom (84.6 p. 100). The weakness always affected distal and unilateral muscles. Radial and cubital nerve distribution are mainly affected and in half of the cases an unilateral motor deficit in the lower limb was associated. Muscle atrophy was frequent (74 p. 100) and rapidly developed in the first 2 years. Reflexes were decreased or absent in 64 p. 100. In 78 p. 100 of cases, biological study showed normal serum immunoelectrophoresis and CSF. IgM anti-GM1 antibodies were found in 24/36 patients. Very high titres were found in 5 cases. All patients had CB in upper limbs. The preferential localizations of the CB were equally at the median and ulnar nerves. Only 7 patients had CB localized to the lower limbs. In many cases, marked reduction of the motor amplitude prevented the detection of CB, marked reduction of the motor amplitude prevented the detection of CB. Moderate fibrillation potentials were found in 28 p. 100 of patients. Giant muscular unit potentials were frequent (21/39). F-waves in nerve with CB were always abnormal with marked increased latencies. Late responses sometimes seemed to be repeater F-waves. Axon reflexes were detected in 5 cases. The late responses abnormalities could precede the block. Clinical, biological and electrophysiological described arguments could may distinguish NMM with CB from motor neuron disease and relate them to the group of chronic demyelinating neuropathies.

Adult↗

[Charcot-Marie-Tooth disease: electromyography is still useful in diagnosis and classification].

Genetic heterogeneity was known for a long time in Charcot-Marie-Tooth disease (CMT). The recent findings in molecular biology emphasized the distinction in different types of the disease. Nevertheless, electrophysiological examinations are of a great interest to detect asymptomatic patients, to classify the different forms and to make correlations with the clinical and histological features. Current classification is based on genetic and electrophysiologic data. CMT1, or hypertrophic form in which mutations or a duplication were found on chromosome 17 is the most frequent (CMT1A), CMT2 is the neuronal form, CMT3 is termed the Dejerine-Sottas disease, CMT4 recessive forms, CMT5 a form with associated pyramidal features, and CMTX. The electrophysiologic aspects of these different types are reported.

Charcot-Marie-Tooth Disease↗

[Electrophysiologic study, diagnosis and cases of acquired sensory polyneuropathy].

Sensory neuropathies encompass a group of neuropathies affecting solely or predominantly peripheral sensory nerves. They are rarely encountered in clinical practice. The authors review sensory nerve conduction studies and compare the various recording technics. Values of compound sensory action potential amplitude and sensory nerve conduction velocity are analyzed. On the basis of clinical and electrophysiological sensory impairment, three types of neuropathies can be proposed: neuropathies with either large, small or total myelinated fibers involvement. Lastly definable causes of sensory neuropathies are reviewed.

Action Potentials↗

A de novo case of hereditary neuropathy with liability to pressure palsies (HNPP) of maternal origin: a new mechanism for deletion in 17p11.2?

Hereditary neuropathy with liability to pressure palsies (HNPP) is an autosomal dominant neuropathy, most often associated with a deletion of the 17p11.2 region, which is duplicated in 70% of patients with Charcot-Marie-Tooth type 1 (CMT1A). Most de novo CMT1A and HNPP cases have been of paternal origin. A rare case of de novo HNPP of maternal origin was analysed to determine the underlying mechanism. Affected individuals in the family carried a deletion corresponding to the CMT1A/HNPP monomer unit associated with a rearrangement of the CMT1A-REP sequences. Segregation analysis of 17p11-p12 markers in the family indicated that the deletion was not generated by unequal crossing over between homologous 17 chromosomes, as in de novo cases from paternal origin, but rather by an intrachromosomal rearrangement. Two distinct mechanisms can therefore lead to the same 17p11.2 deletion. This result suggests that intrachromosomal rearrangement may be specific to maternal transmissions.

Adult↗

Peripheral neuropathy associated with essential mixed cryoglobulinaemia: a role for hepatitis C virus infection?

BACKGROUND: The prevalence of hepatitis C virus (HCV) infection has been estimated at 43 to 84% in patients with essential mixed cryoglobulinaemia in recent large series. Some of these cases have been successfully treated with interferon-alpha. The objective was to evaluate the prevalence and the possible role of HCV infection in essential mixed cryoglobulinaemia. METHODS: Fifteen patients (eight men and seven women; mean age: 61.2 (SD 16.5) years) with peripheral neuropathy (10 polyneuropathies and five multifocal mononeuropathies) and essential mixed cryoglobulinaemia were tested for serum anti-HCV antibodies. RESULTS: Antibodies were found in 10 of 15 patients involving either polyneuropathies (seven patients) or multifocal mononeuropathies (three patients). Electrophysiological studies and teased nerve fibre studies (in seven patients) allowed neuropathies to be classified as predominantly sensory axonopathies. Compared with HCV-negative (HCV -) patients, HCV-positive (HCV +) patients had a more pronounced and more widespread motor deficit; motor nerve conduction velocities in peroneal and median nerves were more impaired in HCV + patients, although significance was not reached except for the mean value of the amplitude of the compound muscle action potentials of the median nerves (P < 0.05); necrotising vasculitis was found in two of nine nerve biopsies from the HCV + patients studied and in none of the three HCV - patients. In addition, HCV + patients had more frequent cryoglobulin related cutaneous signs, higher aminotransferase and serum cryoglobulin concentrations, lower total haemolytic complement concentrations, and more frequent presence of rheumatoid factor. A liver biopsy performed in eight HCV + patients disclosed a range of lesions, from chronic active hepatitis (six patients) to persistent hepatitis (two patients). Lastly, treatment with interferon-alpha conducted over six months in two patients seemed to improve the peripheral neuropathy. CONCLUSIONS: Patients with peripheral neuropathy and essential mixed cryoglobulinaemia should be tested for anti-HCV antibodies to determine the appropriate treatment.

Adult↗

Chronic dysimmune demyelinating polyneuropathy: a clinical and electrophysiological study of 93 patients.

OBJECTIVES: To identify clinical, electrophysiological, and immunological characteristics of chronic immune demyelinating polyneuropathy to define for each group the appropriate therapeutic strategies. METHODS: The clinical and electrophysiological data and the response to treatment of 93 patients with an acquired chronic dysimmune demyelinating polyneuropathy (CDDP) studied over a period of 10 years were reviewed. Two groups were identified: group 1, comprising 64 patients with an idiopathic CDDP, of whom 13 had serum monoclonal or polyclonal gammopathy without detectable antibodies directed against the "myelin associated glycoprotein" (MAG), and group 2, comprising 29 patients with an IgM monoclonal gammopathy of undetermined significance (MGUS) with antibodies binding to the MAG. RESULTS: Group 1 patients had either a progressive or relapsing course. The relapsing course had more pronounced distal slowing of motor conduction velocity. In group 1, there were no significant clinical or electrophysiological differences between patients with or without gammopathy. Patients with anti-MAG antibody (group 2) differed significantly from group 1 patients, especially on the basis of electrophysiological results. They had a more pronounced slowing of peroneal motor nerve conduction velocity, a lower frequency of conduction block, and a distal accentuation of conduction slowing, distinguishing them from those with idiopathic CDDP, Charcot-Marie-Tooth polyneuropathy type 1A, and control subjects. CONCLUSION: The idiopathic CDDP group is heterogeneous with probably different subgroups. Patients with IgM MGUS polyneuropathy and anti-MAG antibodies have characteristics which distinguish them significantly from other CDDP and suggest different immune mechanisms and responses to treatment.

Adolescent↗

Microsatellite mapping of the deletion in patients with hereditary neuropathy with liability to pressure palsies (HNPP): new molecular tools for the study of the region 17p12 --> p11 and for diagnosis.

Hereditary neuropathy with liability to pressure palsies (HNPP) is an autosomal dominant peripheral neuropathy characterized by recurrent episodes of nerve palsies. We have analyzed 11 microsatellite markers from chromosome 17p12 --> p11 in nine French families with HNPP. The three microsatellites D17S839 (afm200yb12), D17S955 (afm317ygl), and D17S921 (afm191xh12) were localized in the deleted region. In allele segregation analyses, the microsatellite D17S793 (afm165zd4) detected two chromosome 17-linked loci, one of which was deleted in HNPP patients. Using these STR markers, we found that the deletion coincided with the CMT1A/HNPP monomer unit in eight of the nine families. In the remaining pedigree, the deletion lay between the centromeric microsatellite D17S805 (afm234tal) and the telomeric marker D17S922 (afm197xh6), which flank the CMT1A monomer unit. Comparison of these data with the available genetic and physical maps of 17p12 --> p11 shows that this region, which is frequently subject to rearrangement-inducing diseases, such as Smith-Magenis syndrome, Charcot-Marie-Tooth type 1A, and HNPP, presents recombination hot spots. Finally, this study demonstrates the usefulness of the D17S122 (RM11GT) and D17S921 (afm191xh12) microsatellites as tools for the molecular diagnosis of HNPP.

Chromosome Aberrations↗

Recombination hot spot in a 3.2-kb region of the Charcot-Marie-Tooth type 1A repeat sequences: new tools for molecular diagnosis of hereditary neuropathy with liability to pressure palsies and of Charcot-Marie-Tooth type 1A. French CMT Collaborative Research Group.

Charcot-Marie-Tooth type 1A (CMT1A) disease and hereditary neuropathy with liability to pressure palsies (HNPP) are autosomal dominant neuropathies, associated, respectively, with duplications and deletions of the same 1.5-Mb region on 17p11.2-p12. These two rearrangements are the reciprocal products of an unequal meiotic crossover between the two chromosome 17 homologues, caused by the misalignment of the CMT1A repeat sequences (CMT1A-REPs), the homologous sequences flanking the 1.5-Mb CMT1A/HNPP monomer unit. In order to map recombination breakpoints within the CMT1A-REPs, a 12.9-kb restriction map was constructed from cloned EcoRI fragments of the proximal and distal CMT1A-REPs. Only 3 of the 17 tested restriction sites were present in the proximal CMT1A-REP but absent in the distal CMT1A-REP, indicating a high degree of homology between these sequences. The rearrangements were mapped in four regions of the CMT1A-REPs by analysis of 76 CMT1A index cases and 38 HNPP patients, who where unrelated. A hot spot of crossover breakpoints, located in a 3.2-kb region, accounted for three-quarters of the rearrangements, detected after EcoRI/SacI digestion, by the presence of 3.2-kb and 7.8-kb junction fragments in CMT1A and HNPP patients, respectively. These junction fragments, which can be detected on classical Southern blots, permit molecular diagnosis. Other rearrangements can also be detected by gene dosage on the same Southern blots.

Charcot-Marie-Tooth Disease↗

[Chronic idiopathic polyradiculoneuritis. Clinical, electrophysiological and histopathological aspects].

Idiopathic chronic inflammatory polyradiculoneuropathies are probably due to dysimmune mechanisms. They form a distinct entity defined by clinical, electrophysiological, histopathological criteria and by their evolution and response to treatment. The homogeneity of that syndrome, the exact nature of the underlying pathological processus, the natural history and the responses to treatment are still debated. Need to more studies, especially of immunologic nature, to precise limits and criteria of such a syndrome. Chronic polyradiculoneuropathy is different from acute form mainly by evolution. Within the chronic form, the progressive and relapsing forms can be distinguished with different electrophysiologic characteristics. These 2 forms share the same electrophysiologic aspect of chronic demyelination which is characterized by slowing of nerve conduction, conduction block and temporal dispersion. They had some specific different features such as the heterogeneity of the conduction failure and the multifocal distribution of demyelinating lesions. The histopathologic lesions are those of demyelination-remyelination with some degree of axonal damage, although inflammatory infiltrates are not frequent. In the majority of cases, the motor deficit is dominant although pure sensory forms have been reported. In few cases, central nervous system involvement is described. Idiopathic polyradiculoneuropathies had different electrophysiologic features than polyneuropathies associated with IgM monoclonal gammopathy and anti-MAG activity, these later presenting more distal and homogeneous abnormalities.

Acute Disease↗