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Diethylmaleate produces diaphragmatic impairment after resistive breathing
C F Morales1, A Anzueto, F Andrade
1Department of Medicine, University of Texas Health Science Center at San Antonio.
Abstract:
Formation of oxygen-derived free radicals and activation of the glutathione (GSH) redox cycle has been associated with impaired rat diaphragm performance. Diethylmaleate (DEM) given intraperitoneally irreversibly conjugates with GSH, resulting in marked decreases in tissue concentrations of GSH. We have investigated the effects of acute GSH depletion by DEM on diaphragmatic function during resistive breathing (RB) in the rat. The experimental groups were 1) control, 2) DEM alone, 3) RB, and 4) DEM with RB (DEM + RB). RB was obtained by inspiratory RB until the rats were unable to sustain 70% of maximum airway opening pressure. A portion of the diaphragm was frozen for biochemical assays, and the rest of the diaphragm was prepared for measurement of in vitro contractile properties, including maximum tetanic tension, twitch tension, force-frequency curves, and contraction times. DEM treatment produced a profound depletion of GSH in the DEM and DEM + RB groups. Neither DEM nor RB alone significantly altered diaphragm contractile properties. In DEM + RB rats, however, there was a significant decrease in maximum tetanic tension, twitch tension, and tetanic tension. These data reveal that DEM produced an acute depletion of GSH in the diaphragm without impairment of the muscle in nonstressed rats. In the presence of DEM-induced GSH depletion, RB did result in marked diaphragm impairment. The depletion of GSH and the subsequent impairment in diaphragm contractility after RB suggest that GSH may play an important role in protecting the diaphragm against oxidative stress associated with RB.
Insights
Glutathione (GSH) depletion impairs rat diaphragm function during resistive breathing. Restoring GSH levels may protect against oxidative stress and maintain muscle performance.
Area of Science:
- Physiology
- Biochemistry
- Respiratory Medicine
Background:
- Oxygen-derived free radicals and glutathione (GSH) redox cycle activation are linked to reduced rat diaphragm performance.
- Diethylmaleate (DEM) administration depletes tissue GSH concentrations by irreversible conjugation.
Purpose of the Study:
- To investigate the impact of acute GSH depletion on rat diaphragm function during resistive breathing (RB).
Main Methods:
- Rats were divided into control, DEM alone, RB, and DEM + RB groups.
- Diaphragm contractile properties (maximum tetanic tension, twitch tension, force-frequency, contraction times) were measured in vitro.
- GSH levels were assessed biochemically.
Main Results:
- DEM treatment significantly depleted GSH in the diaphragm.
- Neither DEM nor RB alone affected diaphragm contractile properties.
- In the DEM + RB group, significant reductions in maximum tetanic tension, twitch tension, and tetanic tension were observed.
Conclusions:
- Acute GSH depletion in the diaphragm does not impair muscle function in non-stressed rats.
- DEM-induced GSH depletion exacerbates diaphragm impairment during resistive breathing.
- GSH appears crucial for protecting the diaphragm against oxidative stress during resistive breathing.