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polymyositis/obesità

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This study explored the possible association between dermatomyositis or polymyositis (DM or PM) and the subsequent risk of herpes zoster (HZ). We used data from the Taiwan National Health Insurance (NHI) system to address the research topic. The exposure cohort comprised 2023 patients with new
OBJECTIVE To determine the occurrence of traditional cardiovascular (CV) risk factors and coronary artery calcification (CAC) in adults with polymyositis (PM) or dermatomyositis (DM) compared to healthy controls and to assess the association between CV risk factors, PM/DM, and CAC

Induction of GLUT-1 protein in adult human skeletal muscle fibers.

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Prompted by our recent observations that GLUT-1 is expressed in fetal muscles, but not in adult muscle fibers, we decided to investigate whether GLUT-1 expression could be reactivated. We studied different stimuli concerning their ability to induce GLUT-1 expression in mature human skeletal muscle
Polymyositis (PM) and dermatomyositis (DM) are very rare connective tissue disorders which only in exceptional circumstances affect white men. The present paper describes the case of an obese 55-years-old man in whom no muscular-skeletal system symptoms were found during the period of 2 years before

GLUT11, but not GLUT8 or GLUT12, is expressed in human skeletal muscle in a fibre type-specific pattern.

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Nine novel sugar transporter-like proteins have been discovered in the past 5 years. The mRNA for three of these, the glucose transporters (GLUT) GLUT8, GLUT11 and GLUT12, have been detected in human skeletal muscle. In the present study, we examined the pattern of expression and localization of the

Glycogenosis type V (McArdle's disease) mimicking atypical myositis.

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A 13-year-old girl was referred to our clinic because of a positive rheumatoid factor test, muscle pain and weakness. Laboratory evaluation revealed an increased ESR, hypergammaglobulinaemia, antinuclear antibodies, circulating immune complexes, complement consumption and elevated serum creatine

Regenerating human muscle fibres express GLUT3 protein.

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The presence of the GLUT3 glucose transporter protein in human muscle cells is a matter of debate. The present study was designed to establish whether GLUT3 is expressed in mature human skeletal muscle fibres and, if so, whether its expression changes under different conditions, such as metabolic
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