Literature DB >> 27556822

Succinate Dehydrogenase B (SDHB) Immunohistochemistry for the Evaluation of Muscle Biopsies.

Michael Punsoni1, Shamlal Mangray, Kara A Lombardo, Nancy Heath, Edward G Stopa, Evgeny Yakirevich.   

Abstract

Succinate dehydrogenase (SDH) is a key mitochondrial enzyme complex composed of 4 subunits. SDH histochemistry is routinely utilized in the assessment of muscle biopsies to reveal underlying pathology such as subsarcolemmal mitochondrial aggregates. In this study, we evaluated the utility of succinate dehydrogenase B (SDHB) immunohistochemistry (IHC) in 27 muscle biopsies, including 13 mitochondrial myopathies (MMs), 9 inflammatory myopathies, and 5 controls. SDHB IHC was performed on formalin-fixed, paraffin-embedded tissue sections with a mouse monoclonal antibody (Abcam 21A11AE7) in parallel with histochemical SDH stains on a fresh-frozen tissue. In all muscle biopsies, SDHB IHC exhibited granular immunoreactivity and highlighted the dark type 1 and lighter type 2 staining pattern observed by histochemistry. In all cases of MM, SDHB IHC showed subsarcolemmal granular aggregates involving the entire periphery of the fibers that were more distinct than those seen by SDH histochemistry. In 3 extraocular muscle biopsies, SDHB immunoreactive speckles of various sizes were distributed throughout the entire sarcoplasm that were more prominent than those seen on SDH histochemistry. Subsarcolemmal and cytoplasmic granular aggregates seen on SDHB IHC correlated with mitochondrial pathology on electron microscopy. In cases of inflammatory myopathy, there was diffuse sarcoplasmic SDHB immunoreactivity in degenerating fibers, but no evidence of subsarcolemmal aggregates. This study demonstrates that SDHB IHC is highly sensitive and specific in the identification of MM. The automation, reproducibility, and cost efficiency of SDHB IHC offer advantages over the labor-intensive histochemical method requiring frozen sections. As this technique is performed on formalin-fixed, paraffin-embedded tissues, it can be easily applied for retrospective studies.

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Year:  2017        PMID: 27556822      PMCID: PMC5323393          DOI: 10.1097/PAI.0000000000000432

Source DB:  PubMed          Journal:  Appl Immunohistochem Mol Morphol        ISSN: 1533-4058


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1.  Mitochondrial DNA deletions and cytochrome c oxidase deficiency in muscle fibres.

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Authors:  Lili Miles; Michael V Miles; Paul S Horn; Ton J Degrauw; Brenda L Wong; Kevin E Bove
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3.  Colorimetric Estimation of Succinic Dehydrogenase by Triphenyltetrazolium Chloride.

Authors:  E Kun; L G Abood
Journal:  Science       Date:  1949-02-11       Impact factor: 47.728

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Authors:  A M RUTENBURG; R GOFSTEIN; A M SELIGMAN
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5.  Neuropathologic applications of immunohistochemical fiber typing in the non-neoplastic muscle biopsy.

Authors:  A M Rojiani; E S Cho
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6.  Frequencies of myohistological mitochondrial changes in patients with mitochondrial DNA deletions and the common m.3243A>G point mutation.

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9.  Ragged red fibers in normal aging and inflammatory myopathy.

Authors:  Z Rifai; S Welle; C Kamp; C A Thornton
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