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Jean-Michel Vallat

Publications and source records attributed to Jean-Michel Vallat.

15 recordsLinked to original sources

Peripheral myelin maintenance is a dynamic process requiring constant Krox20 expression.

Onset of myelination in Schwann cells is governed by several transcription factors, including Krox20/Egr2, and mutations affecting Krox20 result in various human hereditary peripheral neuropathies, including congenital hypomyelinating neuropathy (CHN) and Charcot-Marie-Tooth disease (CMT). Similar molecular information is not available on the process of myelin maintenance. We have generated conditional Krox20 mutations in the mouse that allowed us to develop models for CHN and CMT. In the latter case, specific inactivation of Krox20 in adult Schwann cells results in severe demyelination, involving rapid Schwann cell dedifferentiation and increased proliferation, followed by an attempt to remyelinate and a block at the promyelinating stage. These data establish that Krox20 is not only required for the onset of myelination but that it is also crucial for the maintenance of the myelinating state. Furthermore, myelin maintenance appears as a very dynamic process in which Krox20 may constitute a molecular switch between Schwann cell myelination and demyelination programs.

Alleles↗

Expression of the antioxidant enzyme peroxiredoxin 5 in the human peripheral nervous system.

Peroxiredoxins (PRDXs) belong to a family of peroxidases that are highly expressed in mammalian tissues. Comparatively, little is known about their expression in the nervous system. In this study, we examined in human sural nerve, the expression of PRDX5, the most recently defined peroxiredoxin family member. Immunohistochemical staining of paraffin sections showed that PRDX5 expression was mainly localised to the axon and, to a lesser extent, to the Schwann cells. Immunogold labelling electron microscopy further revealed that PRDX5 is widely distributed in multiple cellular compartments, most importantly in mitochondria but also in axoplasm, Schwann cell cytosol, nucleus, and myelin. A progressive decline in PRDX5 expression with advancing age was identified in human nerves at different ages. The wide distribution of PRDX5 in cellular and sub-cellular structures indicates that it may play important roles in a wide range of tissue components in normal peripheral nerves.

Adolescent↗

Skin biopsies in myelin-related neuropathies: bringing molecular pathology to the bedside.

Skin biopsy is a minimally invasive procedure and has been used in the evaluation of non-myelinated, but not myelinated nerve fibres, in sensory neuropathies. We therefore evaluated myelinated nerves in skin biopsies from normal controls and patients with Charcot-Marie-Tooth (CMT) disease caused by mutations in myelin proteins. Light microscopy, electron microscopy and immunohistochemistry routinely identified myelinated dermal nerves in glabrous skin that appeared similar to myelinated fibres in sural and sciatic nerve. Myelin abnormalities were observed in all patients with CMT. Moreover, skin biopsies detected potential pathogenic abnormalities in the axolemmal molecular architecture previously undetected in human neuropathies. Finally, myelin gene expression at both mRNA and protein levels was evaluated by real-time PCR and immunoelectron microscopy. Peripheral myelin protein 22 (PMP22) was increased in CMT1A (PMP22 duplication) and decreased in patients with hereditary neuropathy with liability to pressure palsies (PMP22 deletion). Taken together, our data suggest that skin biopsy may in certain circumstances replace the more invasive sural nerve biopsy in the morphological and molecular evaluation of inherited and other demyelinating neuropathies.

Adolescent↗

Autosomal-recessive Charcot-Marie-Tooth diseases.

In certain countries around the Mediterranean basin such as Algeria, which have a high prevalence of consanguineous marriages, autosomal-recessive (AR) inheritance may account for more than 50% of all forms of Charcot-Marie-Tooth (CMT) disease. Like with the dominant forms, it is usual to differentiate the demyelinating forms (CMT 4 corresponding to autosomal-recessive CMT 1 [AR-CMT 1] from the axonal forms [AR-CMT 2]). Genetic analysis of large families with recessive transmission has uncovered novel CMT genotypes (genes: GDAP 1, MTMR 2, MTMR 13, KIAA1985, NDGR1, periaxi, lamin). The clinical and especially the histologic phenotypes often indicate that a specific gene is implicated. We present and discuss microscopic lesions seen on nerve biopsies from patients in a number of consanguineous Algerian families, and we outline the characteristic lesions that would prompt a search for mutations in genes such as MTMR 2, MTMR 13, KIAA1985, periaxin for CMT 4, and lamin for AR-CMT 2. Like with the dominant forms, there are undoubtedly many more mutations of other genes to be discovered.

Charcot-Marie-Tooth Disease↗

IgG neuropathy: an immunoelectron microscopic study.

There are many potential mechanisms of peripheral nerve impairment by a monoclonal IgG dysglobulinemia. In this study, using electron microscopy, we observed widening of the myelin lamellae comparable to that commonly described in IgM neuropathies with antimyelin-associated glycoprotein activity. Such features have yet to be described in IgG neuropathies. In addition, we observed deposits of a granular material in the interstitial tissue of the nerve. By immunoelectron microscopy, we demonstrated the presence of the IgG in the lesions of myelin and the endoneurial space. A direct link between monoclonal dysglobulinemia (regardless of type) and polyneuropathy should be confirmed by nerve biopsy, because the result may influence treatment.

Antibodies, Anti-Idiotypic↗

Fatigue as the main presenting symptom of chronic inflammatory demyelinating polyradiculoneuropathy: a study of 11 cases.

Fatigue has been shown to be more frequent than previously thought in immune-mediated polyneuropathies. However, fatigue has not been reported as the main cause of referral in chronic inflammatory demyelinating polyradiculoneuropathy (CIDP) patients. Between January 2001 and December 2003, we investigated 11 patients referred for fatigue, for which we established a final diagnosis of CIDP. All patients had at least two clinical examinations including assessment of the fatigue severity scale (FSS) and one electrophysiological and laboratory work up. Additionally, 10 of the 11 patients had a nerve biopsy. There were 11 male patients. Mean age at onset was 53 +/- 11 years. Main cause of referral was fatigue in all patients. Additional symptoms included cramps (one case), distal paresthesias (six cases), limb pain (seven cases) and vasomotor disturbances (one case). Cerebrospinal fluid (CSF) analysis displayed a moderate increase in protein content in four patients. Electrophysiological analysis showed abnormalities in all patients. Among 11 patients, one fulfilled the American Academy of Neurology electrodiagnostic criteria for CIDP and three fulfilled the inflammatory neuropathy cause and treatment group or the Nicolas et al. criteria. In the eight remaining patients, a nerve biopsy confirmed the diagnosis of CIDP. Ten patients were treated, among which seven showed a significant improvement based on the FSS scale. This study shows that fatigue is a possible cause of referral for patients with CIDP and, like previous reports, emphasizes the lack of sensitivity of widely accepted electrophysiological criteria of CIDP. Long-term follow up of these patients is warranted to determine the prognosis of these minimal forms of CIDP and establish the best therapeutic strategy in such cases.

Adult↗

[Autosomal recessive forms of Charcot-Marie-Tooth disease].

In some countries with a high prevalence of consanguineous mariage, autosomal recessive inheritance probably accounts for the vast majority of all forms of CMT. Like dominant forms, autosomal recessive forms are generally subdivided into demyelinating forms (autosomal recessive CMT1: AR-CMT1 or CMT4) and axonal forms (AR-CMT2). Genetic analysis of large families with recessive transmission has identified several novel CMT-related genes (GDAP1, MTMR2, MTMR13, KIAA1985, NDGR1, periaxin and lamin). Given the clinical, electrophysiological and histological heterogeneity of this disease, numerous culprit genes probably remain to be discovered, leading to an even more complex classification. Clinical and histological features often point to the involvement of a particular gene. Nerve biopsy and molecular studies can contribute to the diagnosis, but this approach is highly time-consuming and can only be performed in specialized laboratories.

Charcot-Marie-Tooth Disease↗

Atypical electrophysiologic findings in chronic inflammatory demyelinating polyneuropathy (CIDP)--diagnosis confirmed by nerve biopsy.

OBJECTIVES: Numerous sets of electrophysiological criteria of chronic inflammatory demyelinating polyneuropathy (CIDP) have been proposed, among which the criteria established by an ad hoc subcommittee of the American Academy of Neurology (AAN) in 1991 (Neurology 41 (1991) 617) are the most widely used. As they seemed rather restrictive, the Inflammatory Neuropathy Cause and Treatment (INCAT) group (Ann. Neurol. 50 (2001) 195) proposed modifications of these electrophysiological criteria. However, even using these criteria, some cases of CIDP may not be recognized. In such cases, nerve biopsy has proven useful for confirmation of the diagnosis by demonstrating specific abnormalities. The objective of the study was to determine the profile of electrophysiological abnormalities in patients with atypical electrophysiologic criteria of CIDP and the diagnostic value of multiple A waves and a low median to sural amplitude ratio. PATIENTS AND METHODS: Over a period of 3 years, we classified 44 patients into two categories: those presenting the strict AAN and/or INCAT criteria and those who we regarded as cases of CIDP not meeting these criteria. All patients benefited from one or more clinical and electrophysiological examination. Extensive biological workup and genetic study when appropriate excluded other causes of neuropathy. Nerve biopsies were taken from all patients and samples were included in paraffin and epon for systematic light, teasing and electron microscopic examination. RESULTS AND CONCLUSION: Out of 44 patients, 36 fulfilled the INCAT or AAN criteria. In eight other patients, the diagnosis of CIDP was suspected on clinical and EMG examinations and confirmed by nerve biopsy. In these cases, the electrophysiological exploration showed some abnormalities such as multiple A waves in four out of eight patients or an abnormal pattern of the sensory responses of the median and sural nerves in four out of eight patients that were more indicative of an initial demyelinating process. Six of our patients received immunomodulatory treatment, and five responded favorably.

Adult↗

Diagnostic value of nerve biopsy for atypical chronic inflammatory demyelinating polyneuropathy: evaluation of eight cases.

The diagnosis of chronic inflammatory demyelinating polyneuropathy (CIDP) relies primarily on clinical and electrophysiologic examination, but the nerve biopsy findings may be supportive, especially in atypical cases. In order to define the usefulness of nerve biopsy in this disease, we retrospectively studied 44 consecutive patients whom we classified as having CIDP on pathological grounds. We found that 8 of these 44 patients had pathological findings indicative of CIDP but did not meet any of the usually accepted electrophysiological criteria for its diagnosis. Among these eight patients, five responded favorably to conventional therapy. All of these eight patients had an electrophysiological pattern of generalized axonopathy with additional subtle findings suggestive of demyelination that prompted us to perform a nerve biopsy. Our data suggest that a significant number of patients with unrecognized CIDP are erroneously classified as having chronic idiopathic axonal polyneuropathy. CIDP should be suspected if the electrophysiological examination displays subtle abnormalities suggestive of demyelination, even in the presence of a prominent axonal pattern. Nerve biopsy in these patients may reveal abnormalities suggestive of CIDP and guide therapeutic options.

Action Potentials↗

Dominantly inherited peripheral neuropathies.

Since 1886, the year that Charcot and Marie and Tooth described a genetic "peroneal muscular atrophy syndrome," electrophysiological and histological studies of the peripheral nervous system have greatly aided the characterization of this syndrome, which falls among the hereditary sensory-motor neuropathies. Two principal forms of Charcot-Marie-Tooth (CMT) disease have been distinguished: CMT 1, corresponding to a demyelinating type, and CMT 2, corresponding to an axonal type. The modes of transmission of these types are variable, recessive or dominant, autosomal, or X-linked. Our discussion here is confined to the dominant forms. In recent years, advances in molecular biology have greatly modified the approach to CMT disease and related neuropathies (such as hereditary neuropathy with liability to pressure palsies). With increased knowledge of responsible gene mutations and several other loci identified by linkage studies, our understanding of the pathophysiology of these neuropathies is increasing; however, with greater understanding, the classification of these disorders is becoming more complex. In this review we present and discuss the currently characterized subtypes, with emphasis on their known histological aspects. While nerve biopsy has lost its diagnostic importance in certain forms of the disease, such as CMT 1A, CMT 1B, and X-linked CMT (CMT X), it remains important for better characterizing the lesions of CMT 2 and forms of genetic peroneal atrophy in which DNA study is unrevealing.

Axons↗

[Importance of the nerve biopsy for the diagnosis of atypical forms of chronic inflammatory demyelinating polyradiculoneuritis: 8 cases].

The objective of the study was to define how could be helpful a nerve biopsy for identification of atypical cases of chronic inflammatory demyelinating polyneuropathy (CIDP). An ad hoc committee in 1991 defined the clinical, electrophysiological and pathological criteria for diagnosis of CIDP. In common with other authors, we regard the rather specific electrophysiological criteria as being too restrictive, and we think that a significant number of patients may therefore not benefit from effective treatment or be excluded from therapeutic trials. The Inflammatory Neuropathy Cause and Treatment (INCAT) group (2001) has proposed new electrophysiological criteria of CIDP, which are more sensitive and do not loose any specificity. Over a period of three years (January 1999 to December 2001), we classified 44 patients into two categories: those presenting the strict criteria of the ad hoc committee and those who we regarded as cases of CIDP who did not meet these strict criteria. All these patients benefited from one or more clinical and electrophysiological examinations; extensive biological workup and genetic study when appropriate excluded other causes of neuropathy. Nerve biopsies were taken from all patients and samples were included in paraffin and epon for systematic light and electron microscopic examination. Out of 44 patients, 24 fulfilled the INCAT electrophysiological criteria with only 12 of these cases fulfilling the criteria of the ad hoc committee. Eight patients did not fulfill any of the widely accepted electrophysiological criteria of CIDP. However, study of nerve biopsies of these eight patients revealed histological features characteristic of CIDP according to histological criteria (AAN-1991). Among these patients, six have been treated and five responded favorably to conventional treatments for CIDP. Without information from the nerve biopsy, these patients would not have been treated effectively because their electrophysiological profile was indicative of axonal impairment interpreted erroneously as primary.

Adult↗

Homozygous defects in LMNA, encoding lamin A/C nuclear-envelope proteins, cause autosomal recessive axonal neuropathy in human (Charcot-Marie-Tooth disorder type 2) and mouse.

The Charcot-Marie-Tooth (CMT) disorders comprise a group of clinically and genetically heterogeneous hereditary motor and sensory neuropathies, which are mainly characterized by muscle weakness and wasting, foot deformities, and electrophysiological, as well as histological, changes. A subtype, CMT2, is defined by a slight or absent reduction of nerve-conduction velocities together with the loss of large myelinated fibers and axonal degeneration. CMT2 phenotypes are also characterized by a large genetic heterogeneity, although only two genes---NF-L and KIF1Bbeta---have been identified to date. Homozygosity mapping in inbred Algerian families with autosomal recessive CMT2 (AR-CMT2) provided evidence of linkage to chromosome 1q21.2-q21.3 in two families (Zmax=4.14). All patients shared a common homozygous ancestral haplotype that was suggestive of a founder mutation as the cause of the phenotype. A unique homozygous mutation in LMNA (which encodes lamin A/C, a component of the nuclear envelope) was identified in all affected members and in additional patients with CMT2 from a third, unrelated family. Ultrastructural exploration of sciatic nerves of LMNA null (i.e., -/-) mice was performed and revealed a strong reduction of axon density, axonal enlargement, and the presence of nonmyelinated axons, all of which were highly similar to the phenotypes of human peripheral axonopathies. The finding of site-specific amino acid substitutions in limb-girdle muscular dystrophy type 1B, autosomal dominant Emery-Dreifuss muscular dystrophy, dilated cardiomyopathy type 1A, autosomal dominant partial lipodystrophy, and, now, AR-CMT2 suggests the existence of distinct functional domains in lamin A/C that are essential for the maintenance and integrity of different cell lineages. To our knowledge, this report constitutes the first evidence of the recessive inheritance of a mutation that causes CMT2; additionally, we suggest that mutations in LMNA may also be the cause of the genetically overlapping disorder CMT2B1.

Algeria↗

LR white post-embedding colloidal gold method to immunostain MBP, P0, NF and S100 in glutaraldehyde fixed peripheral nerve tissue.

A variety of immunocytochemical techniques are now widely used for the electron and light microscopic examination of biological samples. They are employed routinely for investigating the role of certain proteins in nervous tissue. Immunoelectron microscopic studies require the tissue to be fixed and embedded in a solid support, which may disrupt cellular structures and destroy crucial antigens. A technique of post-embedding with LR white resin has been developed, and it has been shown that certain antigens tolerate fixation with glutaraldehyde. In this study, we optimized a previous post-embedding method using low-water-miscible low-temperature embedding resin (LR white) to immunostain MBP, P0, NF and S100 proteins in peripheral nerves fixed with a relatively high concentration of glutaraldehyde found to be compatible with the morphology of normally compacted nerve fibers from humans and adult animals. The main difference in the procedures described here from previous ones is the elimination of vibratome sectioning, rendering this immunostaining technique more accessible to neuropathological laboratories using standard equipment for the ultrastructural study of peripheral nerves. It may prove of value for localization and quantification of these proteins in normal and pathological conditions.

Animals↗

Immunocytological studies of L-MAG expression regulation during myelination of embryonic brain cell cocultures.

The myelin-associated glycoprotein (MAG) possesses two isoforms, known as S-MAG and L-MAG. We followed the expression and localization of L-MAG in comparison to myelin basic protein (MBP) during myelination in dissociated embryonic rat brain cell cocultures. Using immunofluorescence microscopy, we observed L-MAG and MBP in oligodendrocyte (OL) cell bodies and processes before and at the onset of myelination. At advanced stages of myelination, L-MAG immunostaining decreased, and subsequently disappeared from OL soma and myelinated internodes, whereas MBP immunoreactivity decreased only in the OL soma. These results are consistent with biochemical studies and provide the first clear demonstration of a transient expression of L-MAG during the early stages of myelination in vitro, providing further evidence that L-MAG plays a role during this period.

Animals↗