Zhifeng Gao
Beijing, Beijing Municipality, 102218, China
Location status: Recruiting
NCT Number: NCT06331923
The goal of this multi-center, pragmatic, randomized controlled trial is to assess the effectiveness of continuous glucose monitoring (CGM) compared with conventional monitoring in enhancing surgical outcomes for diabetic patients. The main questions it aims to answer are:
* To assess the effectiveness of CGM compared with conventional monitoring in reducing the comprehensive complication index (CCI) for patients with diabetes or impaired glucose tolerance (IGT) within 30 days after surgery. * To analyze the impact of different age groups, types of surgery, preoperative levels of HbA1c, and preoperative 24h glycemic variations on the improvement of surgical outcomes under the CGM model.
Participants will receive CGM prescribed by the attending physician for at least 6 hours before surgery. Glucose monitoring should be continued until the 7th day after surgery or discharge.
The investigators will compare conventional monitoring group to see if CGM could reduce the CCIs for patients with diabetes or impaired glucose tolerance within 30 days after surgery.
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All sexes
Interventional
Not applicable
Beijing, Beijing Municipality, 102218, China
Location status: Recruiting
Abstract: Postoperative complications are important factors in reducing surgical quality and increasing healthcare costs. The CCI is an internationally recognized index to quantify postoperative complications. Patients with diabetes mellitus (DM) or IGT are more prone to developing dysglycemia during the perioperative period, which in turn leads to various types of complications and increased mortality, as evidenced by a significant increase in CCI. Our previous study confirmed that strict glucose management in the perioperative period can help reduce the incidence of postoperative complications such as surgical site infections (SSIs), but this strategy has not been replicated in the perioperative period due to the disadvantages of heavy and complex operations and the possible increased risk of concomitant hypoglycemia. CGM, with its advantages of portability, accuracy, real-time, and information-richness, has been used for precise glucose management in chronic diseases. A small number of prospective randomized controlled studies have previously demonstrated the existence of an improved effect of CGM on intraoperative glycemic management in major surgery. However, there are no real-world studies with large sample sizes to clarify the efficacy and safety of CGM in reducing CCI in patients with DM or IGT. This is where our research comes in. In this real-world study, we aim to clarify the role of perioperative CGM in improving both prognosis and efficacy of surgery.
This is an investigator-initiated, multi-center, pragmatic,1:1ratio randomized, parallel-group, controlled trial which consisted of a 1 to 3-day screening period, and a 7-day(at least 3-day) intervention period, with a final evaluation at day 30. A total of approximately 10168 patients (≥ 18 years of age) with DM or IGT undergoing elective surgeries (including major thoracoabdominal surgery [excluding cardiac surgery], open orthopedic surgery, or neurosurgery) will be enrolled. Patients fulfilling all of the inclusion criteria and none of the exclusion criteria will be randomized into two groups (CGM group versus C group) according to the 1:1 ratio after offering informed content.
Glucose monitoring models:
Perioperative glucose management:
The primary objective is to observe the improvement of CGM on the surgical outcomes of participants with DM or IGT, including a reduction in the CCI, overall postoperative infection rate, major adverse cardiovascular events (MACE) rate, and shortened postoperative hospital stay within 30 days after surgery.
The study consists of 9 visits including the day of screening and randomization,1,2,3,4,5,6,7 and 30-day follow-up postoperatively.
Demographic information, symptoms and signs, laboratory test, auxiliary examinations, CCIs will be recorded during the program. The trial is anticipated to last from April 2024 to December 2025 with 10168 subjects recruited from 50 centers in China. All the related investigative organization and individuals will obey the Declaration of Helsinki and Chinese Good Clinical Practice standard. A Data and Safety Monitoring Board (DSMB) will regularly monitor safety during the study. The trial has been approved by the ethics committee of Beijing Tsinghua Chang Gung Hospital and corresponding branch centers.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Continuous glucose monitoring (CGM) will be prescribed by the attending physician for at least 6 hours before surgery. The supervising nurse will educate the patient and their family on the correct wearing and connection of the CGM device. The calibration frequency and interval of glucose monitoring devices before and after surgery should be determined according to institutional treatment guidelines and the requirements of the monitoring device used. Intraoperative glucose calibration should be done immediately upon entering the operating room, immediately after skin incision, every 2 hours after skin incision, and at the end of wound closure. Glucose monitoring should be continued until the 7th day after surgery or discharge.
Time frame: At 30-day follow-up
The investigators will use the online tool(www.assesssurgery.com)to calculate every participant's cumulative comprehensive complication index (CCI) at 30-day follow-up. CCI is a validated prognostic assessment tool that calculates the total score of all complications weighted by severity, ranging from 0 (no complications) to 100 (death) for each patient. Higher values represent a worse outcome.
Time frame: At 1-7 day postoperatively and 30-day follow-up
Postoperative complications will be diagnosed abased on signs, symptoms, laboratory and auxiliary examinations.
Time frame: At 30-day follow-up
Mortality will be expressed by the number and percentage of occurrences.
Time frame: Perioperative glucose level will be monitored from the day of the enrollment to 7 days (at least 3 days) postoperatively.
CGM group: using CGM device; Control group: using conventional glucose monitoring, such as arterial blood gas, biochemistry examinations.
Time frame: At 30-day follow-up
The investigators will search the medical archives of participants.
Time frame: At 30-day follow-up
The investigators will search the medical archives of participants.
Time frame: Within 30 days after surgery
Postoperative infection will be expressed by the number and percentage of occurrences.
Time frame: Within 30 days after surgery
MACE includes cardiovascular death, myocardial infarction, stroke, urgent revascularization, hospitalization for heart failure, recurrent angina, and severe arrhythmias. MACE rate will be expressed by the number and percentage of occurrences.
Time frame: Within 30 days after surgery
Stroke will be assessed through clinical manifestations, auxiliary examinations, and relevant scale (National Institute of Health Stroke Scale [NIHSS]). NIHSS scale rangs from 0 to 42 for each patient. Higher values represent a worse outcome. Stroke rate will be expressed by the number and percentage of occurrences.
Time frame: At 30-day follow-up
The investigators will search the medical archives of participants.
Time frame: Within 30 days after surgery
Delirium will be assessed through clinical manifestations, auxiliary examinations, and Confusion Assessment Method (CAM). Delirium will be expressed by the number and percentage of occurrences.
Contact information is provided by the study sponsor or research team.
Beijing Tsinghua Chang Gung Hospital
Other
Assessing the Effectiveness of Continuous Glucose Monitoring Compared with Conventional Monitoring in Enhancing Surgical Outcomes for Patients with Diabetes: a Multi-center, Parallel-arm, Randomized, Pragmatic Trial in China
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