Comparison of Hemodynamics and Respiratory Function Between Ciprofol and Propofol in Elderly Patients Undergoing Non-intubated General Anesthesia
Conditions
Keywords
Ciprofol; Propofol; Elderly patients; Intubation-free general anesthesia; Hemodynamics; Respiratory function
Brief summary
At the initiation of induction for non-intubated general anesthesia, ciprofol or propofol will be administered intravenously at a rate of 10 mL/min. The Modified Observer's Assessment of Alertness/Sedation (MOAA/S) scale will be used to evaluate sedation depth. This study aims to assess the effects of ciprofol and propofol on hemodynamics and respiratory function in elderly patients undergoing non-intubated general anesthesia.
Detailed description
Inclusion Criteria 1. Patients scheduled for elective non-intubated general anesthesia 2. Age ranging from 65 to 80 years old 3. American Society of Anesthesiologists (ASA) physical status class I-III 4. Written informed consent signed by the patient or legal guardian Exclusion Criteria 1. Confirmed allergy to propofol, ciprofol or their excipients 2. Severe cardiovascular diseases (uncontrolled hypertension, heart failure, severe arrhythmia, etc.) 3. Severe respiratory diseases (chronic obstructive pulmonary disease, obstructive sleep apnea syndrome, etc.) 4. Severe hepatic or renal insufficiency 5. Long-term regular use of sedatives or opioids 6. Baseline bradycardia (HR \< 50 beats/min) or hypoxemia (SpO₂ \< 90%) Elimination Criteria 1\. Patients with allergic reactions to study drugs or other severe complications during the trial 2\. Severe hypoxemia requiring emergency endotracheal intubation 3\. Severe hemodynamic instability occurring during induction 4\. Incomplete monitoring data caused by equipment malfunction Randomization and Group Allocation A total of 108 eligible elderly patients undergoing elective non-intubated general anesthesia at the Cardiovascular and Cerebrovascular Disease Hospital, General Hospital of Ningxia Medical University will be recruited. A computer-generated random number sequence will allocate subjects at a 1:1 ratio into the ciprofol group (Group C) and the propofol group (Group P). Observation Indicators Baseline Demographic Data Gender, age, height, weight, BMI, ASA classification, smoking history, alcohol consumption, underlying diseases, Modified Mallampati score, thyromental distance, snoring history, etc. Primary Observation Indicators Hemodynamic parameters (HR, SBP, DBP, MAP, CO, SV, SVR) and respiratory parameters (SpO₂, respiratory rate (RR), PETCO₂) will be recorded at baseline, loss of consciousness, 30 s, 1 min, 2 min, 3 min, 4 min and 5 min after loss of consciousness. Secondary Observation Indicators 1. Baseline BIS value and minimum BIS value during induction 2. Total induction dosage, induction time (from drug administration to MOAA/S ≤ 1), recovery time (from last drug administration to MOAA/S = 5) 3. Incidence of adverse reactions: injection pain, involuntary movement, hiccup, hypotension, bradycardia, hypoventilation, apnea, hypoxemia, etc. Anesthetic Protocol All patients fast for 8 hours and abstain from clear liquids for 4 hours preoperatively. After entering the operating room, oxygen inhalation is initiated, upper limb venous access is established, and monitors including pulse oximetry, sidestream PETCO₂ monitor, continuous non-invasive arterial blood pressure monitor and bispectral index (BIS) monitor are connected. Midazolam 0.01 mg/kg is administered intravenously first; stable circulatory and respiratory readings thereafter serve as baseline values. Ciprofol or propofol is then infused intravenously at 10 mL/min. Sedation depth is assessed every 5 seconds via MOAA/S scale; drug infusion is stopped once MOAA/S ≤ 1 (loss of consciousness). The total induction dose is recorded. All hemodynamic and respiratory indicators are documented at predefined time points. Anesthesiologists may supplement 1/3 of the initial induction dose if the patient shows eye opening, verbal response or body movement, with an interval of at least 1 minute between supplemental doses. Rescue Management Protocols * Hypotension (SBP \< 90 mmHg or MAP decreased by \>20% from baseline lasting \>2 min): ephedrine 6 mg IV * Severe bradycardia (HR \< 45 beats/min lasting \>30 s): atropine 0.5 mg IV * Hypoventilation (RR \< 8 bpm, PETCO₂ less than half baseline or PETCO₂ ≥45 mmHg lasting \>30 s) * Apnea (no thoracic movement or flat PETCO₂ waveform lasting \>10 s) * Hypoxemia (SpO₂ \< 93%) / severe hypoxemia (SpO₂ \< 85%) For respiratory compromise, jaw thrust, increased oxygen flow or mask-assisted ventilation will be applied; emergency endotracheal intubation will be performed if necessary.
Interventions
Intravenous administration, injection rate of 10 ml/min, continuous and uniform infusion until the patient's MOAA/S sedation score is ≤1 point. This is used for the induction of general anesthesia in short-duration medical procedures for elderly individuals aged 65-80 without intubation and with spontaneous respiration
Intravenous administration, injection rate of 10 ml/min, continuous and uniform infusion until the patient's MOAA/S sedation score is ≤1 point. This is used for the induction of general anesthesia in short-duration medical procedures for elderly individuals aged 65-80 without intubation and with spontaneous respiration
Sponsors
Study design
Eligibility
Inclusion criteria
1. Patients scheduled for elective non-intubated general anesthesia 2. Age ranging from 65 to 80 years old 3. American Society of Anesthesiologists (ASA) physical status class I-III 4. Written informed consent signed by the patient or legal guardian
Exclusion criteria
1. Confirmed allergy to propofol, ciprofol or their excipients 2. Severe cardiovascular diseases (uncontrolled hypertension, heart failure, severe arrhythmia, etc.) 3. Severe respiratory diseases (chronic obstructive pulmonary disease, obstructive sleep apnea syndrome, etc.) 4. Severe hepatic or renal insufficiency 5. Long-term regular use of sedatives or opioids 6. Baseline bradycardia (HR \< 50 beats/min) or hypoxemia (SpO₂ \< 90%)
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Comparison of hemodynamic and respiratory function changes within 5 minutes of anesthesia induction | 5 minutes after induction of anesthesia | The primary objective of this study was to evaluate the degree of circulatory and respiratory suppression induced by two types of anesthesia drugs in elderly patients. Continuous, non-invasive monitoring was conducted on the baseline conditions before administration for patients aged 65 to 80 undergoing short procedures without intubation and with spontaneous respiration under general anesthesia. Additionally, measurements were taken at 1 minute, 2 minutes, 3 minutes, 4 minutes, and 5 minutes after induction to assess circulatory and respiratory functions. Statistical analysis was performed to compare the changes in HR, SBP, DBP, MAP, CO, SV, SVR, PETCO2, RR, and SPO2 within the 5-minute induction period. A comprehensive assessment of the dual safety of circulatory and respiratory systems was conducted |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| Brain electrical activity sedation depth (BIS) | 5 minutes after induction of anesthesia | lowest BIS value throughout the induction process, BIS value immediately upon loss of consciousness. |
| incidence of induction period circulatory/respiratory adverse events | 5 minutes after induction of anesthesia | Proportion of adverse events, including low blood pressure, bradycardia, inadequate ventilation, apnea, and hypoxemia, occurring within 5 minutes of induction |
Countries
China