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A Menke

Publications and source records attributed to A Menke.

5 recordsLinked to original sources

Extent of shock-induced membrane leakage in human and mouse myotubes depends on dystrophin.

A lack of the cytoskeletal protein dystrophin causes muscle fiber necrosis in Duchenne/Becker muscular dystrophies (DMD/BMD) and in murine X-linked muscular dystrophy (MDX). However, no overt disease symptoms are observed in dystrophin-less cultured myotubes, and the biological function of dystrophin in normal muscle cells is still unknown. In this work, we have extended our studies on a model system, using hypoosmotic shock to determine stress resistance of muscle cells. In frozen sections of control human and mouse myotubes, dystrophin was shown to be localized at the cell periphery as in mature muscle fibers. Dystrophin-less DMD and MDX myotubes were more susceptible to hypoosmotic shock than controls, as monitored by the uptake of external horseradish peroxidase and release of the soluble enzymes creatinine kinase or pyruvate kinase and of radiolabelled proteins. Control experiments indicated that this difference is not due to differences in metabolism or ion fluxes. Treatment with cytochalasin D drastically increased the shock sensitivity of myotubes and abolished the difference between dystrophin-less and control cells. These results lend further support to the suggested stabilizing role of dystrophin in the context of the membrane-cytoskeletal complex.

Animals

Decreased osmotic stability of dystrophin-less muscle cells from the mdx mouse.

Human X-linked Duchenne and Becker muscular dystrophies are due to defects in dystrophin, the product of an exceptionally large gene. Although dystrophin has been characterized as a spectrin-like submembranous cytoskeletal protein, there is no experimental evidence for its function in the structural maintenance of muscle. Current hypotheses attribute necrosis of dystrophin-less fibres in situ to mechanical weakening of the outer membrane, to an excessive influx of Ca2+ ions, or to a combination of these two mechanism, possibly mediated by stretch-sensitive ion channels. Using hypo-osmotic shock to determine stress resistance and a mouse model (mdx) for the human disease, we show that functional dystrophin contributes to the stability of both cultured myotubes and isolated mature muscle fibres.

Animals

[Abortion].

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Abortion, Spontaneous

[Anemia in female adolescents].

Investigations for exploring the frequency and pathogenesis of anaemia were carried out in 164 female pupils of a minicipal grammar school for girls aged from 14 to 20 years. There were lowered haematocrit values below 37% in 81 cases (49%), which were due to iron deficiency in 31 girls. Only in one case a lowered vitamin B12 level was detected and in 8 girls there was a lowered folic acid content in the serum. The frequency of anaemia in girls of school age mainly caused by iron deficiency is emphasized.

Adolescent