Key result
Lidocaine reduces sodium channel open events and duration via voltage-dependent block that may precede opening.
Why the study?
The mechanism by which lidocaine blocks sodium channels, specifically whether channel openings are required for block, was unclear.
No change to lidocaine use; leaves open pre-opening block relevance in human myocytes.
Single sodium channel openings have been recorded from cell-attached patches of isolated guinea pig ventricular myocytes. A paired pulse protocol was used to test the hypothesis that channel openings are required for lidocaine block. While the averaged ensemble current during the test pulse was much reduced, there was no correlation between the appearance of channel openings during the conditioning pulse and the subsequent test pulse. Analysis of single channel records demonstrated that the unit conductance of open channels was not changed by lidocaine. The block of ensemble INa was explained by roughly equal reductions in number of open channel events, and in the average duration of opening for each event. These results suggest that lidocaine binding to Na+ channels is dependent upon voltage, but may occur before channel opening. A lidocaine-modified channel can still open, but will be less likely to remain open than a drug-free channel. These results are consistent with block of a pre-open state of the channel.
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McDonald et al. (1989) studied this question. Lidocaine vs. Drug-free channel was evaluated on Single sodium channel openings and unit conductance. Lidocaine block of sodium channels in guinea pig ventricular myocytes is voltage-dependent and may occur before channel opening, reducing the number and duration of open channel events.
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