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Low Pressure Pneumoperitoneum and Postoperative Ileus

Impact of Low Pressure Pneumoperitoneum on Postoperative Ileus and Gastrointestinal Dysfunction in Patients Undergoing Laparoscopic Large Bowel Surgery

Status
Recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05344417
Enrollment
125
Registered
2022-04-25
Start date
2024-03-06
Completion date
2027-07-31
Last updated
2025-11-03

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

Conditions

Gastrointestinal Dysfunction, Postoperative Ileus

Brief summary

The investigators are testing the hypothesis that lower pressure pneumoperitoneum during laparoscopic large bowel surgery protects the bowel from postoperative ileus and bowel dysfunction leading to faster recovery and discharge from the hospital. Our study will focus on the effects of high or low intraperitoneal pressure as well as pressure variations on the course of postoperative ileus, time to hospital discharge, and postoperative gastrointestinal dysfunction in adult patients undergoing laparoscopic large bowel resection (i.e., sigmoidectomy and right colectomy). A randomized parallel group study will be conducted involving 5 arms of surgical patients to test whether differences on postoperative ileus outcome parameters occur between high (15 mm Hg) and low pressure pneumoperitoneum (8-12 mm Hg), as well as whether there are differences between the 2 insufflation devices that provide constant or variable intrabdominal pressure throughout the laparoscopic surgery. For high pressure pneumoperitoneum, either neostigmine or sugammadex are used for reversal of moderate neuromuscular blockade. For low pressure pneumoperitoneum, sugammadex is used for reversal of deep neuromuscular blockade. The investigators plan to use 2 types of gas insufflation devices, one of which will provide a relatively stable pressure level throughout surgery (AirSeal® device), and the second one will provide a more variable pressure (Olympus standard insufflation device). Using both pressure modalities, the investigators will study the effects of different pressure characteristics on the course of postoperative ileus, duration of in-hospital treatment, pain level, and the stability of hemodynamic and respiratory parameters during surgery. Changes in intrabdominal pressure during the surgery will be monitored and recorded using a custom software for later analysis of fluctuations in pressure to relate them to outcomes. Other parameters will be obtained from EPIC (IHIS) medical charts. In addition, clinical data on postoperative ileus will be correlated with experimental outcomes from in vitro exploratory studies done using human samples of peritoneal lavage fluid, serum, and a small portion of the surgically removed bowel from each patient (that is otherwise discarded). A panel of inflammatory markers will be analyzed and biochemical, imaging, histological, immunochemical, molecular signaling, and glial activation studies will be done to evaluate the potential mechanisms of dysfunction associated with postoperative ileus.

Interventions

Low Pneumoperitoneum Pressure: defined as an intrabdominal pressure between 8-12 mmHg during the laparoscopic procedure. High Pneumoperitoneum pressure: defined as an intrabdominal pressure of 15 mmHg or more during the laparoscopic procedure. Note: surgeons will set the pneumoperitoneum at the lowest value they are comfortable with based on their surgical criteria

PROCEDURENeuromuscular blockade

Moderate neuromuscular blockade: defined as the presence of 1 or 2 responses after train-of-four stimulation. Deep neuromuscular blockade: defined as no response to train-of-four stimulation and 1 or less responses after post-tetanic count stimulation.

DEVICEPneumoperitoneum insufflation device

AirSeal® device or Olympus standard of care insufflation device. Both devices are approved for use in laparoscopic gastrointestinal surgeries.

DRUGNeuromuscular blockade reversal

Neostigmine: for Arm 1 only (standard use). Sugammadex: will be used for the other arms in the study. All drugs used in our randomized trial (neuromuscular blockade with rocuronium and reversal with neostigmine or sugammadex) are standard of care and approved for use by our institutional Institutional Review Board (IRB) Ethics Committee for this trial.

Sponsors

Ohio State University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
SINGLE (Subject)

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

1. Adult patients \> 18 years old of both sexes who consent to participate in the study and do not have any of the

Exclusion criteria

. 2. Patients undergoing laparoscopic right hemicolectomy to remove tumors. 3. Patients undergoing sigmoid resection to remove polyps, diverticula or tumors.

Design outcomes

Primary

MeasureTime frameDescription
Length of time (hours) of postoperative gastrointestinal tract (GIT) function recoveryUp to 30 days after surgery. From end of surgery to readiness for hospital discharge, i.e., physician discharge order (assessed up to 30 days after surgery).Time from end of surgery to readiness for discharge is used as a quantitative measure of postoperative gastrointestinal tract (GIT) function recovery and hence the length of postoperative ileus, and is an outcome used universally to estimate recovery of GIT function. The decision to discharge the patient ('time to discharge after surgery') by the physician is based on both the time of first spontaneous bowel movement after surgery (or flatus) and ability to tolerate a solid meal without vomiting/nausea. This parameter (time to discharge) can be measured reliably in every patient and in all 125 patients planned for enrollment in the study, increasing our chances of being able to detect differences between high and low pressure pneumoperitoneum.
Number of participants with postoperative ileusUp to 4 days after surgery. From the end of surgery to Postoperative Day 4.Postoperative diagnosis of ileus by Day 4 after surgery (as defined by Vather et al. 2013). Reference: Defining Postoperative ileus: results of a systemic review and global survey. Journal of GI surgery, 2013. 17(5):p962-972.

Secondary

MeasureTime frameDescription
Time the participants will need to have their first bowel movement occurrence after surgeryUp to 30 days after surgery. From the end of surgery to first spontaneous bowel movement (assessed up to 30 days after surgery).The time participants will take to experience their first bowel movement occurrence after surgery. This outcome is one of the main clinical signs of postoperative gastrointestinal function recovery.
Number of participants with delayed postoperative ileusUp to 5 days after surgery. From the end of Surgery to 5 days post-surgery as defined by Vather et al. (2013).This is calculated as the percent of subjects with postoperative gastrointestinal dysfunction (POGD) ≥5 days defined as subjects unable to tolerate solid foods, take anything by mouth, or requiring insertion or reinsertion of nasogastric tube at or after 5 days post-surgery
Number of participants with postoperative ileus as only complicationUp to 30 days after surgery. From end of surgery to readiness for hospital discharge, i.e., physician discharge order (assessed up to 30 days after surgery).Investigators will report the incidence of postoperative ileus as the only postoperative complication (i.e. isolated postoperative ileus without any other concomitant complication) which may offer significant information about the impact of postoperative ileus on delayed gastrointestinal tract recovery and length of hospital stay.
Time the participants will need to have their first flatus after surgeryUp to 30 days after surgery. From the end of surgery to first spontaneous flatus (assessed up to 30 days after surgery).The time participants will take to experience their first flatus occurrence after surgery. This outcome is one of the main clinical signs of postoperative gastrointestinal function recovery.
Time the participants will need to recover oral tolerance after surgeryUp to 30 days after surgery. From the end of surgery to first tolerated solid meal (assessed up to 30 days after surgery).Time to first tolerated solid meal: defined as the time each participant will take to eat the first solid meal without experiencing clinically significant nausea and/or vomiting for 1 calendar day after the meal.

Countries

United States

Contacts

Primary ContactFedias L Christofi, Ph.D., AGAF
fedias.christofi@osumc.edu614-688-3802
Backup ContactAlberto Uribe, MD
alberto.uribe@osumc.edu614-293-3559

Outcome results

None listed

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