Menu
Not yet recruiting NCT07663877

Remimazolam-Flumazenil Versus Sevoflurane for Hysteroscopic Day Surgery

Phase IV Interventional Hysteroscopy Ambulatory Surgery General Anesthesia

For patients and families

In plain language

An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.

What is being studied
The protocol lists: Remimazolam, Flumazenil, Sevoflurane, propofol.
Who it may be relevant to
Registry conditions: Hysteroscopy, Ambulatory Surgery, General Anesthesia. Basic parameters: from 20 years · Female.
What needs checking
Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
Where it takes place
South Korea
Next step
Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →
Official title

Remimazolam With Planned Flumazenil Reversal Versus Sevoflurane-based Balanced Anesthesia for Hysteroscopic Day Surgery: A Randomized Controlled Trial

Overview

This prospective, single-center, randomized controlled trial aims to compare remimazolam anesthesia with planned flumazenil reversal and sevoflurane-based balanced anesthesia in adult women undergoing ambulatory hysteroscopic surgery. Participants will be randomly assigned in a 1:1 ratio to receive either remimazolam for induction and maintenance followed by flumazenil reversal or propofol induction followed by sevoflurane-based balanced anesthesia. The primary outcome is anesthesia-controlled time, defined as the sum of induction time and emergence time. Secondary outcomes include recovery profiles, postoperative symptoms, quality of recovery, hemodynamic stability, and the incidence of re-sedation. The study will evaluate whether a remimazolam-flumazenil strategy can improve operating room efficiency while maintaining recovery quality and safety comparable to conventional sevoflurane-based anesthesia in the ambulatory surgery setting.

Detailed description

Ambulatory surgery has become an increasingly important component of modern healthcare systems because it enables rapid recovery, early discharge, efficient utilization of hospital resources, and improved patient satisfaction. The success of ambulatory surgery depends largely on the ability to provide anesthetic care that ensures rapid emergence, minimal postoperative symptoms, and timely discharge without compromising patient safety. Hysteroscopic surgery is one of the most commonly performed ambulatory gynecologic procedures and therefore represents an ideal model for evaluating anesthetic strategies designed to optimize perioperative efficiency and recovery.

Sevoflurane-based balanced anesthesia, typically consisting of intravenous induction followed by maintenance with a volatile anesthetic agent, remains one of the most widely used anesthetic techniques for ambulatory surgery. Although this approach provides reliable hypnosis and favorable surgical conditions, recovery is dependent on anesthetic elimination and individual patient characteristics. Furthermore, volatile anesthetics may contribute to postoperative nausea and vomiting, which remain among the most common causes of delayed discharge and patient dissatisfaction following ambulatory procedures.

Remimazolam is a novel ultra-short-acting benzodiazepine anesthetic that is rapidly metabolized by nonspecific tissue esterases. Compared with conventional anesthetic agents, remimazolam demonstrates predictable pharmacokinetics, limited accumulation, reduced respiratory depression, and favorable hemodynamic stability. Several clinical studies have shown that remimazolam may reduce the incidence and severity of hypotension compared with propofol while providing effective hypnosis for general anesthesia. However, concerns remain regarding delayed awakening and the possibility of residual sedation, particularly in short ambulatory procedures where rapid recovery is essential.

A unique characteristic of remimazolam is the availability of flumazenil, a specific benzodiazepine receptor antagonist capable of rapidly reversing its sedative effects. Planned administration of flumazenil at the end of surgery may allow faster and more predictable emergence than spontaneous recovery alone. Despite this theoretical advantage, evidence supporting a structured remimazolam-flumazenil anesthetic strategy in ambulatory surgery remains limited. Most previous investigations have focused on pharmacodynamic comparisons between remimazolam and propofol, whereas direct comparisons with inhalational balanced anesthesia have been relatively scarce. In addition, few studies have evaluated outcomes that are directly relevant to operating room efficiency and perioperative workflow.

The concept of anesthesia-controlled time has been proposed as a clinically meaningful measure of anesthetic efficiency because it incorporates both induction and emergence phases of anesthesia. Unlike isolated measurements of induction time or awakening time, anesthesia-controlled time reflects the overall contribution of anesthetic management to operating room utilization and turnover. Reductions in anesthesia-controlled time may improve operating room throughput, increase institutional efficiency, and facilitate patient flow in ambulatory surgery centers.

This prospective, single-center, randomized controlled trial is designed to compare remimazolam anesthesia with planned flumazenil reversal and sevoflurane-based balanced anesthesia in adult women undergoing ambulatory hysteroscopic surgery. Eligible participants will be randomly assigned in a 1:1 ratio to receive either remimazolam for induction and maintenance followed by flumazenil reversal at the end of surgery or propofol induction followed by sevoflurane-based balanced anesthesia. Standardized perioperative management protocols will be applied to both groups, including opioid administration, neuromuscular blockade, supraglottic airway management, and electroencephalographic monitoring using the Patient State Index (PSI).

The primary outcome will be anesthesia-controlled time, defined as the sum of induction time and emergence time. Induction time will be measured from initiation of the anesthetic agent to successful placement of the supraglottic airway device, while emergence time will be measured from discontinuation of the primary anesthetic agent to removal of the airway device. This endpoint was selected because it directly reflects operating room efficiency and represents a clinically relevant outcome in ambulatory surgical practice.

Secondary outcomes will evaluate multiple aspects of recovery quality and patient safety. These outcomes include time to achieve an Aldrete score of at least 9, duration of stay in the post-anesthesia care unit, postoperative nausea and vomiting, sore throat, surgical pain, shivering, dizziness, vasopressor requirements, and quality of recovery assessed using the validated Quality of Recovery-15 (QoR-15) questionnaire. The incidence of re-sedation will be evaluated using the Modified Observer's Assessment of Alertness/Sedation (MOAA/S) scale together with electroencephalographic monitoring data. Additional recovery variables, including time to eye opening, time to PSI recovery, and time to airway device removal, will also be assessed.

The investigators hypothesize that remimazolam anesthesia with planned flumazenil reversal will reduce anesthesia-controlled time and improve perioperative efficiency while maintaining recovery quality and safety comparable to conventional sevoflurane-based balanced anesthesia. The findings of this study may provide clinically relevant evidence regarding the optimal anesthetic strategy for ambulatory hysteroscopic surgery and may support broader implementation of remimazolam-based anesthesia in short-duration surgical procedures.

Interventions

  • Drug Remimazolam
    Remimazolam will be administered at 12 mg/kg/h for induction of anesthesia until loss of consciousness, followed by maintenance at 1-2 mg/kg/h until the end of surgery.
  • Drug Flumazenil
    Flumazenil 0.5 mg will be administered intravenously at the end of surgery to reverse remimazolam-induced sedation. Additional doses of 0.2 mg may be administered if necessary, up to a maximum total dose of 1.0 mg.
  • Drug Sevoflurane
    Sevoflurane will be administered at 1.5-3.5 vol% for maintenance of anesthesia following propofol induction. At the end of surgery, sevoflurane administration will be discontinued and washout will be facilitated using fresh gas flow of 6 L/min.
  • Drug propofol
    Propofol 2 mg/kg will be administered intravenously for induction of anesthesia before initiation of sevoflurane maintenance.

Primary outcome measures

  • Anesthesia-Controlled Time [Time frame: From initiation of anesthesia to removal of the supraglottic airway device during emergence from anesthesia, assessed up to 120 minutes.]
Secondary outcome measures (5)
  • Time to Aldrete Score ≥9 [Time frame: Up to 30 minutes after PACU admission]
  • Length of Stay in PACU [Time frame: From admission to the post-anesthesia care unit until discharge from the post-anesthesia care unit, assessed up to 2 hours.]
  • Postoperative Symptoms During the Acute Recovery Phase [Time frame: During PACU stay, up to 30 minutes after PACU admission]
  • Quality of Recovery-15 (QoR-15) Score [Time frame: 24 hours after surgery]
  • Incidence of Re-sedation [Time frame: From PACU admission through discharge from the ambulatory surgery center, assessed up to 8 hours after surgery.]

Eligibility criteria

Inclusion criteria

  • Female patients aged 20 years or older.
  • Scheduled to undergo ambulatory hysteroscopic surgery under general anesthesia.
  • Able to provide written informed consent.
  • American Society of Anesthesiologists (ASA) physical status I-III.

Exclusion criteria

  • Known hypersensitivity to benzodiazepines, remimazolam, or flumazenil.
  • Chronic use of benzodiazepines or opioids.
  • Severe hepatic dysfunction (Child-Pugh class B or C).
  • Severe renal dysfunction (estimated glomerular filtration rate <30 mL/min/1.73 m²).
  • Epilepsy or other significant neurologic disorders.
  • Pregnancy or breastfeeding.
  • Body mass index (BMI) ≥35 kg/m².
  • Severe obstructive sleep apnea.
  • Uncontrolled serious systemic disease that may preclude ambulatory surgery.
  • Refusal or inability to provide informed consent.

Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.

Healthy volunteers: No

Study design

Allocation
Randomized
Model
Parallel assignment
Masking
Double blind
Primary purpose
Treatment

Study locations

South Korea · 1 center
  • Chung-Ang University Gwangmyeong Hospital — Gwangmyeong

Publications

  • Stark PA, Myles PS, Burke JA. Development and psychometric evaluation of a postoperative quality of recovery score: the QoR-15. Anesthesiology. 2013 Jun;118(6):1332-40. doi: 10.1097/ALN.0b013e318289b84b. PMID 23411725
  • Kilpatrick GJ, McIntyre MS, Cox RF, Stafford JA, Pacofsky GJ, Lovell GG, Wiard RP, Feldman PL, Collins H, Waszczak BL, Tilbrook GS. CNS 7056: a novel ultra-short-acting Benzodiazepine. Anesthesiology. 2007 Jul;107(1):60-6. doi: 10.1097/01.anes.0000267503.85085.c0. PMID 17585216
  • Doi M, Morita K, Takeda J, Sakamoto A, Yamakage M, Suzuki T. Efficacy and safety of remimazolam versus propofol for general anesthesia: a multicenter, single-blind, randomized, parallel-group, phase IIb/III trial. J Anesth. 2020 Aug;34(4):543-553. doi: 10.1007/s00540-020-02788-6. Epub 2020 May 16. PMID 32417976

Identifiers

NCT: NCT07663877 · 2604-323-074

Primary sources (government registries)

View this study on ClinicalTrials.gov ↗