Key result
Dysferlin protein expression in peripheral blood monocytes showed a strong linear correlation (R2 = 0.9766, p<0.001) with expression in skeletal muscle by Western blot, providing a reliable alternative for diagnosing dysferlinopathy.
Why the study?
Does dysferlin expression in peripheral blood monocytes correlate with skeletal muscle expression for the diagnosis of dysferlin myopathy?
Case-Control (n=38)
Yes
Does dysferlin expression in peripheral blood monocytes correlate with skeletal muscle expression for the diagnosis of dysferlin myopathy?
Effect estimate: R2 = 0.9766
p-value: p=<0.001
Western blot analysis of dysferlin in peripheral blood monocytes is a reliable diagnostic alternative to muscle biopsy for dysferlin myopathy, especially when immunohistochemistry is misleading or muscle tissue is unavailable.
Monocyte dysferlin assay may offer a non-invasive diagnostic option; case-control data leave open prospective validation before clinical adoption.
BACKGROUND: Dysferlinopathies are caused by mutations in the dysferlin gene (DYSF). Diagnosis is complex due to the high clinical variability of the disease and because dysferlin expression in the muscle biopsy may be secondarily reduced due to a primary defect in some other gene. Dysferlin is also expressed in peripheral blood monocytes (PBM). Studying dysferlin in monocytes is used for the diagnosis of dysferlin myopathies. The aim of the study was to determine whether dysferlin expression in PBM correlates with that in skeletal muscle. METHODOLOGY/PRINCIPAL FINDINGS: Using western-blot (WB) we quantified dysferlin expression in PBM from 21 pathological controls with other myopathies in whom mutations in DYSF were excluded and from 17 patients who had dysferlinopathy and two mutations in DYSF. Results were compared with protein expression in muscle by WB and immunohistochemistry (IH). We found a good correlation between skeletal muscle and monocytes using WB. However, IH results were misleading because abnormal expression of dysferlin was also observed in 13/21 pathological controls. CONCLUSIONS/SIGNIFICANCE: The analysis of dysferlin protein expression in PBM is helpful when: 1) the skeletal muscle IH pattern is abnormal or 2) when muscle WB can not be performed either because muscle sample is lacking or insufficient or because the muscle biopsy is taken from a muscle at an end-stage and it mainly consists of fat and fibrotic tissue.
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Gallardo et al. (2011) conducted a case-control in Dysferlin myopathy (n=38). Dysferlin expression analysis in peripheral blood monocytes vs. Skeletal muscle analysis was evaluated on Correlation of dysferlin expression in peripheral blood monocytes and skeletal muscle (R2 = 0.9766, p=<0.001). Dysferlin protein expression in peripheral blood monocytes showed a strong linear correlation (R2 = 0.9766, p<0.001) with expression in skeletal muscle by Western blot, providing a reliable alternative for diagnosing dysferlinopathy.
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