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Chloride channel inhibition improves neuromuscular function under conditions mimicking neuromuscular disorders

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The skeletal muscle Cl− channels, the ClC‐1 channels, stabilize the resting membrane potential and dampen muscle fibre excitability. This study explored whether ClC‐1 inhibition can recover nerve‐stimulated force in isolated… Click to show full abstract

The skeletal muscle Cl− channels, the ClC‐1 channels, stabilize the resting membrane potential and dampen muscle fibre excitability. This study explored whether ClC‐1 inhibition can recover nerve‐stimulated force in isolated muscle under conditions of compromised neuromuscular transmission akin to disorders of myasthenia gravis and Lambert–Eaton syndrome.

Keywords: inhibition improves; inhibition; channel inhibition; chloride channel; improves neuromuscular; neuromuscular function

Journal Title: Acta Physiologica
Year Published: 2021

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