Laparoscopic Hysterectomy
Conditions
Brief summary
Surgicel Snow is an FDA approved topical hemostatic agent for use during surgical procedures. Like the other mechanical agents, Surgicel Snow forms a physical barrier that blocks blood flow while providing a large surface area for the rapid formation of a fibrin clot. As a mechanical agent derived from oxidized regenerated cellulose, Surgicel Snow shares with other mechanical hemostatic agents, the benefits of a favorable risk profile. This study would examine the efficacy of Surgicel Snow vs. direct compression in the control of capillary, venous, and small arterial hemorrhage when ligation or other conventional methods of control are impractical or ineffective in patients undergoing laparoscopic or robotic assisted laparoscopic hysterectomy. The intraoperative inclusion bleeding characteristics are minimal and mild retroperitoneal bleeding and moderate retroperitoneal bleeding that has been adequately reduced by standard surgical methods. 60 patients will be recruited for this study, all of which will be scheduled for hysterectomy at Western Connecticut Health Network (Norwalk Hospital and Danbury Hospital) under the direction of Dr. Thomas Rutherford, Dr. John Garofalo, and Dr. Robert Samuelson. The investigators will randomize 30 patients to the treatment group and 30 patients to the control group. Participants may continue all regular medications before and during the study. The consent process will be incorporated into the last pre-operative office visit. The health risks associated with use of Surgicel Snow may be less, the same or more than direct pressure alone. Surgicel Snow is generally used for minimal to mild bleeding from specific or widespread area; however, its effectiveness compared to direct pressure is unknown for a hysterectomy surgery.
Detailed description
Topical hemostatic agents have been introduced as adjunct therapies to standard surgical techniques in the management of intraoperative bleeding. They are particularly useful in widespread non-anatomic bleeding or bleeding involving sensitive tissues. Topical hemostatic agents can be classified into four broad categories based on function: mechanical agents, biologic agents, flowable sealants, and fibrin sealants. Mechanical agents derived from oxidized regenerated cellulose forms a physical barrier to block blood flow, while providing a large surface area for rapid fibrin clot formation. The benefit of this mechanical agent includes a favorable risk profile. They are inexpensive, rapidly absorbed, rarely induces a local inflammatory response or fibrosis, and no reported potential for inducing immunological response or anaphylaxis. In current literature, oxidized regenerated cellulose has been shown to reduce the length of stay and resource utilization in cardiovascular and neurologic procedures. Although these agents are being used with increasing frequency, there is a paucity of evidence to support a similar benefit in gynecologic surgery with the exception of a small number of studies on myomectomy and ovarian surgery. Although it is known that all of the agents presently approved by the FDA are capable of shortening the bleeding time associated with surgical incisions, there are limited studies to show comparative efficacy or clinical impact with respect to estimated blood loss in the retroperitoneal space. The results of extensive bleeding in the retroperitoneal spaces include significant blood loss with dissection along the extraperitoneal fascial planes, as well as intraperitoneal collection, hematoma, and abscess. Patients with postoperative pelvic collections may present with symptoms of fever, rectal pain, or lower abdominal pain. Treatment often requires IR (interventional radiology) drainage and readmission for inpatient parenteral antibiotic therapy. The initial approach to hemostasis in the pelvis depends on the nature of bleeding encountered. When bleeding is encountered during pelvic dissection, evaluation of the extent and sources of bleeding, as well as its anatomic location and proximity to vital structures are the first requirements. The process of evaluating bleeding requires inspection of the bleeding sites augmented by irrigation, suctioning, and blotting with gauze. Through this process, the rate (minimal, mild, moderate, and severe) , distribution (local vs. diffuse), anatomic site (i.e., if in close proximity to vital structures), and source of blood loss (small arterial, venous or capillary) is ascertained. In this study, investigators would examine the efficacy of Surgicel Snow, a topical mechanical hemostatic agent, versus direct compression in the control of capillary, venous, and small arterial hemorrhage when ligation or other conventional methods of control are impractical or ineffective in patients undergoing laparoscopic or robotic assisted laparoscopic hysterectomy. Primary Outcomes: * Time to hemostasis * Failure to achieve hemostasis Secondary Outcomes: * Total intraoperative time * Intraoperative blood loss
Interventions
Sponsors
Study design
Eligibility
Inclusion criteria
1. Women ≥18 years of age 2. Women scheduled for standard multiport laparoscopic, single site laparoscopic, and robotic assisted laparoscopic hysterectomy. 3. Sites of surgery include Norwalk Hospital and Danbury Hospital. 4. Indication for surgery includes benign, complex benign, and malignant conditions. 5. Signed informed consent
Exclusion criteria
1. Vaginal hysterectomy or open abdominal hysterectomy; 2. Congenital or acquired coagulation disorder including recent (within 7 days of surgery) therapeutic anticoagulation or use agents affecting platelet function, other than low dose aspirin. (Preoperative prophylactic heparin is not an exclusion criterion.) 3. Hysterectomy at the time of sacrocolpopexy. 4. Ovarian cancer
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Change in Bleeding at Specified Time Intervals | 4 minutes, 7 minutes and 10 minutes | Because multiple factors other than retroperitoneal bleeding contribute to the total intraoperative bleed loss, the investigators believe that the intraoperative estimated blood loss is not a pure indicator of the efficacy of a topical hemostatic agent for control of retroperitoneal bleeding. Data from the specified time points (4 minutes, 7 minutes and 10 minutes) was combined to calculate an average bleeding event time for each subject. |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| Total Intraoperative Time | up to 4 hours | Total intraoperative was collected from medical record. |
| Rate of Intraoperative Blood Loss | up to 4 hours | Intraoperative blood loss data was collected from medical record. |
| Blood Transfusion | up to 4 hours | Blood transfusion details was collected from medical record. |
| Total Postoperative Symptomatic Fluid Collection | through study completion, an average of 6 weeks | Postoperative symptomatic fluid collection data collected at 2 week and 6 week time period was obtained from medical record. Data from 2 week and 6 week time points was combined to calculate the total postoperative symptomatic fluid collection for each subject. |
| Number of Participants With Postoperative Pelvic Abscess | through study completion, an average of 6 weeks | Postoperative pelvic abscess data was collected from medical record. |
Countries
United States
Participant flow
Recruitment details
43 patients were enrolled in the study, 21 patients were excluded due to lack of intraoperative bleeding.
Participants by arm
| Arm | Count |
|---|---|
| Control Standard of Care | 6 |
| Treatment Surgicel Snow | 12 |
| Total | 18 |
Withdrawals & dropouts
| Period | Reason | FG000 | FG001 |
|---|---|---|---|
| Overall Study | Physician Decision | 4 | 0 |
Baseline characteristics
| Characteristic | Control | Treatment | Total |
|---|---|---|---|
| Age, Continuous | 51.5 years STANDARD_DEVIATION 8.6 | 45.4 years STANDARD_DEVIATION 8.8 | 50.3 years STANDARD_DEVIATION 10.9 |
| BMI | 33.9 kilograms/metres2 STANDARD_DEVIATION 10.3 | 28.8 kilograms/metres2 STANDARD_DEVIATION 4.1 | 30.5 kilograms/metres2 STANDARD_DEVIATION 7 |
| Race (NIH/OMB) American Indian or Alaska Native | 0 Participants | 0 Participants | 0 Participants |
| Race (NIH/OMB) Asian | 0 Participants | 0 Participants | 0 Participants |
| Race (NIH/OMB) Black or African American | 0 Participants | 2 Participants | 2 Participants |
| Race (NIH/OMB) More than one race | 0 Participants | 0 Participants | 0 Participants |
| Race (NIH/OMB) Native Hawaiian or Other Pacific Islander | 0 Participants | 0 Participants | 0 Participants |
| Race (NIH/OMB) Unknown or Not Reported | 2 Participants | 4 Participants | 6 Participants |
| Race (NIH/OMB) White | 4 Participants | 6 Participants | 10 Participants |
| Sex/Gender, Customized Female | 6 Participants | 12 Participants | 18 Participants |
Adverse events
| Event type | EG000 affected / at risk | EG001 affected / at risk |
|---|---|---|
| deaths Total, all-cause mortality | 0 / 10 | 0 / 12 |
| other Total, other adverse events | 0 / 10 | 0 / 12 |
| serious Total, serious adverse events | 1 / 10 | 0 / 12 |
Outcome results
Change in Bleeding at Specified Time Intervals
Because multiple factors other than retroperitoneal bleeding contribute to the total intraoperative bleed loss, the investigators believe that the intraoperative estimated blood loss is not a pure indicator of the efficacy of a topical hemostatic agent for control of retroperitoneal bleeding. Data from the specified time points (4 minutes, 7 minutes and 10 minutes) was combined to calculate an average bleeding event time for each subject.
Time frame: 4 minutes, 7 minutes and 10 minutes
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Control | Change in Bleeding at Specified Time Intervals | 485.7 seconds | Standard Deviation 432.3 |
| Treatment | Change in Bleeding at Specified Time Intervals | 199.1 seconds | Standard Deviation 72.8 |
Blood Transfusion
Blood transfusion details was collected from medical record.
Time frame: up to 4 hours
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Control | Blood Transfusion | NA cubic centimetre | — |
| Treatment | Blood Transfusion | 172.2 cubic centimetre | Standard Deviation 402.4 |
Number of Participants With Postoperative Pelvic Abscess
Postoperative pelvic abscess data was collected from medical record.
Time frame: through study completion, an average of 6 weeks
| Arm | Measure | Value (COUNT_OF_PARTICIPANTS) |
|---|---|---|
| Control | Number of Participants With Postoperative Pelvic Abscess | 0 Participants |
| Treatment | Number of Participants With Postoperative Pelvic Abscess | 0 Participants |
Rate of Intraoperative Blood Loss
Intraoperative blood loss data was collected from medical record.
Time frame: up to 4 hours
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Control | Rate of Intraoperative Blood Loss | 82.5 cubic centimeter/minute | Standard Deviation 50.4 |
| Treatment | Rate of Intraoperative Blood Loss | 214.1 cubic centimeter/minute | Standard Deviation 126.4 |
Total Intraoperative Time
Total intraoperative was collected from medical record.
Time frame: up to 4 hours
| Arm | Measure | Value (MEAN) | Dispersion |
|---|---|---|---|
| Control | Total Intraoperative Time | 166.2 minutes | Standard Deviation 37.4 |
| Treatment | Total Intraoperative Time | 236.2 minutes | Standard Deviation 54 |
Total Postoperative Symptomatic Fluid Collection
Postoperative symptomatic fluid collection data collected at 2 week and 6 week time period was obtained from medical record. Data from 2 week and 6 week time points was combined to calculate the total postoperative symptomatic fluid collection for each subject.
Time frame: through study completion, an average of 6 weeks
| Arm | Measure | Value (MEAN) |
|---|---|---|
| Control | Total Postoperative Symptomatic Fluid Collection | NA cc/weeks |
| Treatment | Total Postoperative Symptomatic Fluid Collection | NA cc/weeks |