Peer-reviewed veterinary case report
Functional Characterization of the Intact Diaphragm in a Nebulin-Based Nemaline Myopathy (NM) Model-Effects of the Fast Skeletal Muscle Troponin Activator.
- Journal:
- International journal of molecular sciences
- Year:
- 2019
- Authors:
- Lee, Eun-Jeong et al.
- Affiliation:
- Department of Cellular and Molecular Medicine · United States
Abstract
Respiratory failure due to diaphragm dysfunction is considered a main cause of death in nemaline myopathy (NM) and we studied both isometric force and isotonic shortening of diaphragm muscle in a mouse model of nebulin-based NM (Neb cKO). A large contractile deficit was found in nebulin-deficient intact muscle that is frequency dependent, with the largest deficits at low-intermediate stimulation frequencies (e.g., a deficit of 72% at a stimulation frequency of 20 Hz). The effect of the fast skeletal muscle troponin activator (FSTA)on force was examined.had a negligible effect at maximal stimulation frequencies, but greatly reduced the force deficit of the diaphragm at sub-maximal stimulation levels with an effect that was largest in Neb cKO diaphragm. As a result, the force deficit of Neb cKO diaphragm fell (from 72% to 29% at 20 Hz). Similar effects were found in in vivo experiments on the nerve-stimulated gastrocnemius muscle complex. Load-clamp experiments on diaphragm muscle showed thatincreased the shortening velocity, and reduced the deficit in mechanical power by 33%. Thus,significantly improves muscle function in a mouse model of nebulin-based nemaline myopathy.
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Search related cases →Original publication: https://pubmed.ncbi.nlm.nih.gov/31658633/