Key result
Muscle denervation and direct injury are linked to diffuse extrajunctional acetylcholine receptor development in regenerating fibers.
Why the study?
The distribution and characteristics of extrajunctional acetylcholine receptors in skeletal muscle fibers under conditions of denervation and myopathies were not fully characterized.
Observational
Extrajunctional acetylcholine receptors can develop not only from neuronal damage but also from direct muscle injury (myogenous origin) and in regenerating fibers of human myopathies.
May indicate myogenous AChR upregulation in myopathies; leaves open functional impact and human translation.
Diffuse extrajunctional acethycholine receptors (AChR) of skeletal muscle fibers were readily visualized by light and electron microscopy in muscle biopsy specimens of experimental denervation and human denervating diseases by use of an alpha-bungarotoxin immunoperoxidase technique. In peripheral neuropathies and various motor neuron diseases, a significant number of muscle fibers appearing denervated by histochemical criteria have diffuse extrajunctional AChR like those experimentally denervated by cutting the motor nerve supply. In portions of muscle fibers experimentally deprived of neuronal influence by direct injury, diffuse extrajunctional AChR developed, demonstrating that a denervation-like diffuse appearance of extrajunctional AChR can develop other than with neuronal damage, ie, it can be myogenous. Similar extrajunctional AChR was seen in some regenerating fibers of human myopathies, especially inflammatory myopathies.
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Steven P. Ringel (1976) conducted an observational in Denervating diseases and myopathies. Denervation and direct muscle injury was evaluated on Presence of diffuse extrajunctional acetylcholine receptors. Diffuse extrajunctional acetylcholine receptors develop in muscle fibers following denervation or direct injury, and are also seen in regenerating fibers of human inflammatory myopathies.
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