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Effects of Ciprofol on Myocardial Injury After Non-cardiac Surgery in Video-Assisted Thoracoscopic Surgery

Effects of Ciprofol on Myocardial Injury After Non-cardiac Surgery (CP-MINS) in Patients Undergoing Video-Assisted Thoracoscopic Surgery: A Randomized, Double-Blind, Propofol-Controlled, Multicenter Trial

Status
Recruiting
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07028593
Acronym
CP-MINS
Enrollment
1058
Registered
2025-06-19
Start date
2025-07-31
Completion date
2027-12-01
Last updated
2026-01-28

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Myocardial Injury, Thoracic Diseases, Thoracoscopic Surgery

Keywords

Myocardial Injury after non-cardiac surgery, Ciprofol, propofol, Video-Assisted Thoracoscopic Surgery, lung tumor

Brief summary

Myocardial injury after noncardiac surgery (MINS) refers to postoperative elevation of cardiac troponin (cTn) levels caused by underlying ischemic mechanisms (i.e., coronary artery supply-demand imbalance or atherosclerotic thrombosis) without obvious non-ischemic causes (such as pulmonary embolism), with at least one cTn concentration exceeding the 99th percentile of the test reference upper limit, regardless of whether clinical symptoms and ECG changes are present. MINS, including myocardial infarction and ischemic myocardial injury, typically occurs within 30 days after surgery, most commonly within the first 2 postoperative days. It is an independent risk factor for 30-day postoperative mortality and is also closely associated with increased risk of mortality and vascular complications within 2 years . MINS is a common cardiovascular complication after thoracic surgery. Therefore, reducing the incidence of MINS in non-cardiac thoracic surgery to improve patient outcomes is a critical issue in anesthetic management for thoracic surgery. Ciprofol is a Class 1 innovative drug independently developed in China with global intellectual property rights. Currently, Ciprofol has completed Phase III clinical trials in China and the United States; its approved indications in China include sedation or anesthesia for various diagnostic procedures, general anesthesia for surgical operations, and sedation during intensive care unit (ICU) stays. Completed drug clinical trials and published clinical trial data of Ciprofol indicate that it can better maintain circulatory stability and ideal anesthetic depth during anesthesia induction and maintenance, making it a promising intravenous general anesthetic alternative to propofol. Maintaining hemodynamic stability is an important measure to reduce cardiovascular complications during the perioperative period. Given the good circulatory stability and sedative efficacy of Ciprofol, this study aims to investigate the impact of Ciprofol on MINS in non-cardiac thoracic surgery.

Detailed description

Lung cancer ranks first in both incidence and mortality among malignant tumors in China. In 2022, there were 1,060,600 new lung cancer cases, accounting for 22.0% of all malignant tumors, and 733,300 deaths, accounting for 28.5% of all malignant tumor deaths. Radical surgical resection is the recommended preferred treatment for stage I and II non-small cell lung cancer. Video-assisted thoracoscopic surgery (VATS) for anatomic lung resection has better safety and long-term efficacy than traditional surgical methods, with more than 73.7% of lung cancer surgeries in China using thoracoscopic approaches. Thoracic surgery easily induces significant perioperative hemodynamic fluctuations, increasing the risk of perioperative cardiovascular and cerebrovascular complications, thus posing great challenges to perioperative anesthetic safety and long-term patient outcomes. Myocardial injury after noncardiac surgery (MINS) refers to postoperative elevation of cardiac troponin (cTn) levels caused by underlying ischemic mechanisms (i.e., coronary artery supply-demand imbalance or atherosclerotic thrombosis) without obvious non-ischemic causes (such as pulmonary embolism), with at least one cTn concentration exceeding the 99th percentile of the test reference upper limit, regardless of whether clinical symptoms and ECG changes are present. MINS, including myocardial infarction and ischemic myocardial injury, typically occurs within 30 days after surgery, most commonly within the first 2 postoperative days. It is an independent risk factor for 30-day postoperative mortality and is also closely associated with increased risk of mortality and vascular complications within 2 years. MINS is a common cardiovascular complication after thoracic surgery; the COP-AF study found that the incidence of MINS in non-cardiac thoracic surgery is 20.3% . Therefore, reducing the incidence of MINS in non-cardiac thoracic surgery to improve patient outcomes is a critical issue in anesthetic management for thoracic surgery. Severe hemodynamic fluctuations are one of the important causes of perioperative induction of MINS, thus maintaining hemodynamic stability is a critical step to reduce MINS. Propofol is the most commonly used drug for anesthesia induction and maintenance in clinical practice, with advantages such as rapid onset, strong sedative efficacy, and quick recovery. However, due to its significant circulatory inhibitory effects, the incidence of intraoperative hypotension induced and maintained by propofol in patients without cardiovascular diseases is 25%-40%, increasing the risk of perioperative hypotension and adverse cardiovascular events, which poses great challenges to anesthetic management. Additionally, 80% of patients receiving propofol experience injection pain of varying degrees, which also reduces patient comfort during treatment. Therefore, developing a sedative with both good sedative efficacy and no or low circulatory inhibition has long been a desirable goal for anesthesiologists. Ciprofol is a Class 1 innovative drug independently developed in China with global intellectual property rights. Its molecular structure is an analog of propofol (2,6-diisopropylphenol). Both Ciprofol and propofol act on γ-aminobutyric acid type A (GABA-A) receptors, causing hyperpolarization of GABAergic neurons, reducing the success rate of action potential generation, and achieving inhibition of the central nervous system to produce short and rapid sedative or anesthetic effects. Pharmacologically, Ciprofol not only retains the characteristics of propofol such as rapid onset, rapid elimination, and high sedative efficacy but also has a higher drug cost-effectiveness ratio and therapeutic index (in mouse experiments, the median effective dose for sedation of Ciprofol is 1.5 mg/kg, the median lethal dose is 9.9 mg/kg, and the therapeutic index is 6.6, while that of propofol is only 2.8). Furthermore, due to the lower drug concentration in the aqueous phase of the Ciprofol emulsion, the risk of injection pain is much lower than that of propofol, improving treatment comfort. Currently, Ciprofol has completed Phase III clinical trials in China and the United States; its approved indications in China include sedation or anesthesia for various diagnostic procedures, general anesthesia for surgical operations, and sedation during intensive care unit (ICU) stays. Completed drug clinical trials and published post-marketing clinical trial data of Ciprofol indicate that it can better maintain circulatory stability and ideal anesthetic depth during anesthesia induction and maintenance, making it a promising intravenous general anesthetic alternative to propofol. Maintaining hemodynamic stability is an important measure to reduce cardiovascular complications during the perioperative period. Given the good circulatory stability and sedative efficacy of Ciprofol, this study aims to investigate the impact of Ciprofol on MINS in non-cardiac thoracic surgery. After data collection, full Analysis Set (FAS): A population derived by minimally and reasonably excluding certain cases under the principle of Intention-to-Treat (ITT), where cases included in the FAS should not seriously violate the inclusion criteria. FAS will be used for the analysis of baseline data and primary efficacy endpoints. Per-Protocol Set (PPS): All cases that comply with the trial protocol, are well-tolerated (patients who completed PED procedures), and have completed the content specified in the case report form. PPS is used for the analysis of primary efficacy endpoints. Safety Set (SS): Refers to the actual data of subjects who received at least one dose of treatment after randomization and have recorded safety indicators.

Interventions

DRUGPropofol

Using as sedative agents in the total intravenous anesthesia in video-assisted thoracoscopic aurgery in propofol group.

DRUGciprofol

Using as sedative agents in the total intravenous anesthesia in video-assisted thoracoscopic aurgery in ciprofol group.

Sponsors

Tongji Hospital
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
DOUBLE (Subject, Outcomes Assessor)

Masking description

This study blinded the efficacy assessors (rather than the anesthesiologists administering the anesthesia) and the participants, with the double-blind status maintained throughout the study period. 1. Blinding of efficacy assessors: In this study, a designated study coordinator was responsible for maintaining and distributing randomization numbers, preparing study drugs, and coordinating information among anesthesiologists. Anesthesiologists completed preoperative visits and collected preoperative patient data; efficacy evaluators were only responsible for patient follow-up and data entry of postoperative test results, without participating in the process of anesthesia administration or management. Anesthesiologists administered drugs based on patients' body weights. 2. Blinding of participants: participants were unaware of their group assignments and medication administration during the study period.

Eligibility

Sex/Gender
ALL
Age
40 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

1. Scheduled for elective video-assisted thoracoscopic (VATS)-assisted thoracic surgery (lobectomy, segmentectomy, wedge resection of two or more lung tissues, mediastinal tumor resection) under general anesthesia; 2. Aged 45 to 80 years (inclusive) at the time of randomization; 3. Expected postoperative hospital stay of ≥3 days; 4. Signed a written informed consent to participate in the study.

Exclusion criteria

1. Patients allergic to propofol, Ciprofol, or analogs of drug excipient components (soybeans, eggs, milk); 2. Patients with unstable angina; 3. Patients with congestive heart failure or hemodynamic instability requiring vasopressor agents; 4. Patients with severe COPD (FEV1 \< 1 L); 5. Glomerular filtration rate \[eGFR\] \< 30 mL/min/1.73m²; 6. Patients with severe hepatic dysfunction (ALT or AST elevation exceeding 1.5 times the upper limit of normal); 7. Male or female patients planning to conceive within the next 3 months; 8. Pregnant or lactating female patients;

Design outcomes

Primary

MeasureTime frameDescription
the incidence of myocardial Injury after non-cardiac surgeryWithin the first 30 days after surgeryMyocardial injury after noncardiac surgery is defined by elevated postoperative cardiac troponin concentrations that exceed the 99th percentile of the upper reference limit of the assay and are attributable to a presumed ischemic mechanism, with or without concomitant symptoms or signs

Secondary

MeasureTime frameDescription
The proportion of new-onset atrial fibrillationwithin hospitalized stay after anesthesia inductiondiagnosed by 12 lead ECG.
The proportion of new-onset non-atrial fibrillation arrhythmiaperioperativelydiagnosed by 12 lead ECG.
The incidence and duration of perioperative hypotensionbetween anesthesia induction and postoperative first 24 hourassessing the effect of interventions on cardiovascular stability
30-day postoperative mortality rateWithin the first 30 days after surgeryassessing the survival outcome
New-onset myocardial infarctionWithin the first 30 days after surgeryassessing the cardiovascular complications

Countries

China

Contacts

CONTACTAilin Luo, MD&PhD
alluo@tjh.tjmu.edu.cn13507122565
CONTACTShiyong Li, MD&PhD
shiyongli@hust.edu.cn15002780081

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026