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Susanne Renaud

Publications and source records attributed to Susanne Renaud.

9 recordsLinked to original sources

Contribution of nerve biopsy to unclassified neuropathy.

OBJECTIVES: To evaluate the diagnostic yield of nerve biopsy in patients with peripheral neuropathy of undetermined cause despite extensive diagnostic workup. METHODS: From November 2001 through January 2004, 38 patients underwent nerve biopsy because of unclassified neuropathy. RESULTS: The etiology of the neuropathies could be defined in 14 patients (37%), i.e. in 15% of chronic symmetric, 30% of chronic asymmetric, 50% of subacute symmetric and 62.5% of subacute asymmetric neuropathies. The biopsy was diagnostic in 6 patients (16%), where it showed a vasculitis, and supportive in 8 patients (21%). CONCLUSIONS: The contribution of nerve biopsy to the diagnosis of peripheral neuropathy was highest in acute and subacute asymmetric forms of neuropathy and lowest in chronic symmetric forms. The main indication for nerve biopsy remains the diagnosis of vasculitic neuropathy, a potentially treatable disorder.

Aged↗

Anti-myelin-associated glycoprotein neuropathy.

PURPOSE OF REVIEW: The anti-myelin-associated glycoprotein (MAG) neuropathy is an antibody-mediated demyelinating neuropathy. The clinical picture is characterized by a distal and symmetric, mostly sensory neuropathy. Monoclonal immunoglobulin M anti-MAG antibodies are uniquely found in this condition and are believed to be pathogenic. This review focuses on recent progress in understanding the mechanisms of this neuropathy and discusses new therapeutic advances. RECENT FINDINGS: Different electrophysiological parameters have been demonstrated to distinguish the anti-MAG-associated polyneuropathy from chronic inflammatory demyelinating polyneuropathy. The electrophysiological findings generally indicate a predominantly demyelinating neuropathy with a distal accentuation of conduction slowing. Analyses of pathology in nerve tissue from anti-MAG patients using classical nerve biopsy or skin biopsy tissue demonstrated immunoglobulin M deposits at the site of MAG localization, demyelination and axonal degeneration. MAG is a Schwann cell-based glycoprotein and has been implicated as a mediator of an outside-in signaling cascade influencing the cytoskeletal integrity of axons. SUMMARY: Therapy in patients with anti-MAG neuropathy is directed at reducing the antibody concentration, blocking the effector mechanisms and depleting the monoclonal B cells. The recent availability of rituximab, a monoclonal antibody suppressing B-cell clones, which is not myelosuppressive and does not cause secondary malignancies, allows for early targeted intervention.

Animals↗

Gene expression profiling in chronic inflammatory demyelinating polyneuropathy.

Gene expression in archived frozen sural nerve biopsies of patients with chronic inflammatory demyelinating polyneuropathy (CIDP) was compared to that in vasculitic nerve biopsies (VAS) and to normal nerve (NN) by DNA microarray technology. Hierarchical clustering analysis demonstrated distinct gene expression patterns distinguishing these disease groups. Of particular interest were: (1) Tachykinin precursor 1, which may be involved in pain mediation; (2) Stearoyl-CoA-desaturase, which may be a marker for remyelination and (3) the Allograft Inflammatory Factor 1 (AIF-1), a modulator of immune response during macrophage activation. Differential gene expression may help distinguish between CIDP, VAS and NN in sural nerve biopsies and identify genes that may be involved in disease pathogenesis.

Adult↗

Rituximab in the treatment of polyneuropathy associated with anti-MAG antibodies.

No causative or curative therapy exists for the polyneuropathy associated with antibodies to myelin-associated glycoprotein (anti-MAG). Rituximab is a mouse-human chimeric antibody that specifically eliminates B-cells and B-cell precursors. Preliminary results suggest a beneficial effect on antibody-dependent autoimmune diseases. Nine patients with an anti-MAG-associated IgM polyneuropathy received rituximab once weekly for 4 weeks. In all patients, the number of B-cells in the peripheral blood declined below levels of detection, and the IgM levels decreased between 35% and 82% (median, 58%). In eight patients, lowering of the anti-MAG antibody titers of more than 52% was observed. Clinical status improved in six patients, remained stable in two, and worsened in one. The motor nerve conduction velocity improved by at least 10% in one ulnar nerve in seven patients and worsened in two. Rituximab was well tolerated and is a promising new drug in the treatment of patients with anti-MAG-associated polyneuropathy.

Aged↗

Distal motor latency and residual latency as sensitive markers of anti-MAG polyneuropathy.

There is debate whether the terminal latency index (TLI) is a sensitive marker for polyneuropathy with anti-myelin-associated-glycoprotein antibodies (anti-MAGP). We examined 6 patients with an anti-MAGP and 6 patients with a chronic inflammatory demyelinating polyneuropathy (CIDP). The electroneurographic features studied were: distal compound motor action potential (CMAP), distal motor latency (DML), motor conduction velocity (MCV) elbow to wrist (distal MCV), MCV axilla to elbow (proximal MCV), MCV distal/proximal, terminal latency index (TLI), residual latency (RL), F-wave, and modified F ratio. We found significant differences between anti-MAGP and CIDP for DML and for RL. No significant differences were found for TLI and the other measures. The TLI values were not significant probably because our patients had a longer duration of disease,which supports the hypothesis of a distal to proximal progression of conduction slowing over time. We propose that a residual latency >4.0 and a distal motor latency >7.0 are strongly suggestive for an anti- MAGP.

Action Potentials↗

McLeod syndrome resulting from a novel XK mutation.

McLeod Syndrome (MLS) is a rare X-linked disorder characterized by haemopoietic abnormalities and late-onset neurological and muscular defects. The McLeod blood group phenotype is typically associated with erythrocyte acanthocytosis, absence of the Kx antigen and reduced expression of Kell system antigens. MLS is caused by hemizygosity for mutations in the XK gene. We describe a patient with MLS who first showed symptoms in 1989 (aged 51 years). As the disease progressed, the patient developed a slight dementia, aggressive behaviour and choreatic movements. A cardiomyopathy was also diagnosed. An electroneuromyography showed neuropathic and myopathic changes. Liver enzymes were elevated and a blood smear showed acanthocytes. MLS was confirmed by serological analysis of the Kell antigens. Analysis of red blood cells by flow cytometry revealed the patient and his grandson to have reduced Kell antigen expression. The patient's daughters had two populations of red cells, consistent with them being heterozygous for an XK0 allele. The molecular basis of MLS in this family is a novel mutation consisting of a 7453-bp deletion that includes exon 2 of the XK gene. This confirms that the patient's 7-year-old grandson, who is currently asymptomatic, also has the XK0 allele and is therefore likely to develop MLS.

Amino Acid Transport Systems, Neutral↗

Matrix metalloproteinases-9 and -2 in secondary vasculitic neuropathies.

Matrix metalloproteinases (MMPs) are a family of zinc-dependent endoproteinases that play an important role in inflammation and tissue degradation. MMP-9 and MMP-2 are gelatinases that have been implicated in the degradation of the blood-brain or blood-nerve barrier. We present an immunohistochemical study on 11 nerve biopsy samples of inflammatory and non-inflammatory polyneuropathies. Perineurium and endothelium were positive for MMP-2 in all tissue sections. In addition, there was a specific up-regulation of MMP-2 in stromal cells of chronic inflammatory demyelinating polyneuropathy (CIDP) and even more in vasculitic neuropathies. MMP-9-positive cells were detected in vessel walls, infiltrates, epineurium and endoneurium of vasculitic neuropathies. In CIDP, MMP-9-positive cells were prominent in vessel walls. Only a few MMP-9-positive cells were detected in noninflammatory controls in blood vessels and adhering to vessel walls. Double staining indicated that the infiltrating cells were T cells and macrophages. Our findings suggest that MMP-9 plays an important role in inflammatory peripheral neuropathy probably as means for inflammatory cell invasion.

Adult↗