2019Unpublished venueRequires access

Neuromuscular Blockers and Reversal Agents

Kristen Flight, Jennifer Yang, Lindsay Urben, Michael J. Schontz

Open publisher page 1 citations

Abstract

Neuromuscular blocking drugs, which include depolarizing and nondepolarizing drugs, are used to facilitate intubation and provide skeletal muscle relaxation during surgery and in the intensive care unit. The agents differ in their mechanism, duration of action, side-effect profile, and metabolism. Succinylcholine is the only depolarizing agent in clinic use and is typically used for emergent control of the airway, rapid sequence intubations, and short surgical procedures. The risk of hyperkalemia in certain clinical conditions and risk of malignant hyperthermia in susceptible individuals limit the use of succinylcholine in specific patient populations. Nondepolarizing agents vary in their duration of action, but all provide muscle relaxation for a longer duration than succinylcholine. Clinical effects of neuromuscular blocking drugs can be assessed with neuromuscular monitoring, although there is significant variability among providers in the regular use of neuromuscular monitoring. Reversal agents are used to restore neuromuscular transmission, as residual neuromuscular blockade after extubation has been associated with multiple adverse events, including hypoxemia, atelectasis, and aspiration. Sugammadex is an encapsulating agent capable of immediately reversing the effects of rocuronium-induced neuromuscular blockade that will likely impact the way many providers administer rocuronium and may decrease the future use of succinylcholine. This review contains 4 figures, 6 tables, and 41 references. Keywords: hyperkalemia, neuromuscular monitoring, neuromuscular transmission, nondepolarizing neuromuscular blocking agents, residual neuromuscular blockade, reversal agents, succinylcholine sugammadex, sugammadex

About this research paper

What this paper is about

Neuromuscular blocking drugs, which include depolarizing and nondepolarizing drugs, are used to facilitate intubation and provide skeletal muscle relaxation during surgery and in the intensive care unit. The agents differ in their mechanism, duration of action, side-effect profile, and metabolism. Succinylcholine is the only depolarizing agent in clinic use and is typically used for emergent control of the airway, rapid sequence intubations, and short surgical procedures. The risk of hyperkalemia in certain clinical conditions and risk of malignant hyperthermia in susceptible individuals limit the use of succinylcholine in specific patient populations. Nondepolarizing agents vary in their duration of action, but all provide muscle relaxation for a longer duration than succinylcholine. Clinical effects of neuromuscular blocking drugs can be assessed with neuromuscular monitoring, although there is significant variability among providers in the regular use of neuromuscular monitoring. Reversal agents are used to restore neuromuscular transmission, as residual neuromuscular blockade after extubation has been associated with multiple adverse events, including hypoxemia, atelectasis, and aspiration. Sugammadex is an encapsulating agent capable of immediately reversing the effects of rocuronium-induced neuromuscular blockade that will likely impact the way many providers administer rocuronium and may decrease the future use of succinylcholine. This review contains 4 figures, 6 tables, and 41 references. Keywords: hyperkalemia, neuromuscular monitoring, neuromuscular transmission, nondepolarizing neuromuscular blocking agents, residual neuromuscular blockade, reversal agents, succinylcholine sugammadex, sugammadex

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Neuromuscular blocking drugs, which include depolarizing and nondepolarizing drugs, are used to facilitate intubation and provide skeletal muscle relaxation during surgery and in the intensive care unit. The agents differ in their mechanism, duration of action, side-effect profile, and metabolism. Succinylcholine is the only depolarizing agent in clinic use and is typically used for emergent control of the airway, rapid sequence intubations, and short surgical procedures. The risk of hyperkalemia in certain clinical conditions and risk of malignant hyperthermia in susceptible individuals limit the use of succinylcholine in specific patient populations. Nondepolarizing agents vary in their duration of action, but all provide muscle relaxation for a longer duration than succinylcholine. Clinical effects of neuromuscular blocking drugs can be assessed with neuromuscular monitoring, although there is significant variability among providers in the regular use of neuromuscular monitoring. Reversal agents are used to restore neuromuscular transmission, as residual neuromuscular blockade after extubation has been associated with multiple adverse events, including hypoxemia, atelectasis, and aspiration. Sugammadex is an encapsulating agent capable of immediately reversing the effects of rocuronium-induced neuromuscular blockade that will likely impact the way many providers administer rocuronium and may decrease the future use of succinylcholine. This review contains 4 figures, 6 tables, and 41 references. Keywords: hyperkalemia, neuromuscular monitoring, neuromuscular transmission, nondepolarizing neuromuscular blocking agents, residual neuromuscular blockade, reversal agents, succinylcholine sugammadex, sugammadex

Key concepts: Medicine, Sugammadex, Neuromuscular Blocking Agents, Rocuronium, Neuromuscular Blockade, Neuromuscular transmission, Anesthesia, Neuromuscular monitoring

Related papers

Back to paper searchBrowse research topicsOriginal source
Neuromuscular Blockers and Reversal Agents — Research Paper | ScholarLens