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Clinical Trial Summary

The incidence of intratracheal tube-induced laryngeal irritation, including coughing, bucking, and cardiovascular stimulation, on emergence from general anesthesia has been reported to occur in 38% and 96% of cases. This may cause agitation and unstable hemodynamics during anesthesia recovery, and can lead to complications, such as laryngeal edema, sore throat, increased intra-abdominal pressure, and anastomotic bleeding. Accordingly, many anesthesiologists have been seeking methods through which such laryngeal irritation can be attenuated, thus allowing for a smoother extubation. Furthermore, it has contributed to the aggravation of cough reflexes.


Clinical Trial Description

Several strategies have been reported to facilitate smoother extubation, such as intravenous lidocaine, remifentanil, and dexmedetomidine. Dexmedetomidine is a potent, alpha-2-selective adrenoceptor agonist that causes sympatholytic, sedation and analgesia without respiratory compromise. The sedative properties of dexmedetomidine are largely due to effects on the locus ceruleus, producing a level of consciousness mimicking natural sleep Delivering dexmedetomidine intravenously to attenuate airway and circulatory reflexes during extubation has been extensively evaluated in clinical studies. Recent studies have also indicated that the intranasal application of dexmedetomidine is significantly useful and effective in the achievement of improved sedation and analgesia) and offers a safety profile similar to traditional sedatives ( ketamine and midazolam). Additionally, intratracheal local anesthetic instillation has been reported to be effective in preventing laryngeal reflexes. However, both the efficacy and safety profile of intratracheal dexmedetomidine applications are largely unknown and the technique has not been specifically investigated. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT04385602
Study type Interventional
Source Assiut University
Contact
Status Completed
Phase Phase 2/Phase 3
Start date June 1, 2020
Completion date January 1, 2023

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