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A Comparative Study Between AirSeal, an Integrated Insufflation System, and Conventional Insufflation

A Comparative Study of the Physiological Response, Between AirSeal, an Integrated Insufflation and Access System, and Conventional Insufflation and Trocars

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02075658
Enrollment
60
Registered
2014-03-03
Start date
2003-01-31
Completion date
2014-09-30
Last updated
2018-02-14

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

Conditions

Renal Cell Carcinoma

Keywords

renal cell carcinoma, minimally invasive procedures, robotic nephrectomy, laparoscopic nephrectomy, pneumoperitoneum, trocars, AirSeal® IFS

Brief summary

Renal cancer has traditionally been treated by surgical removal of the tumor, as the tumors are resistant to chemotherapy and radiation. The traditional treatment, where the entire kidney and tumor were removed through an abdominal incision, may now have more long term problems than the actual cancer. As a result, less invasive techniques have been developed such as laparoscopic surgery where the abdomen is inflated with carbon dioxide (i.e. via an insufflation system) and the surgery performed with special instruments through small ports, known as trocars. Rapid advances in minimally invasive surgical techniques demand ongoing technological improvement. Conventional insufflators and trocars allow for laparoscopic surgery to occur, however the system does not account for pressure changes within the abdomen when instruments are inserted or removed. The AirSeal® System consisting of an insufflation, filtration, and recirculation system (AirSeal® IFS), a triple lumen filtered tube set, and a valve free trocar (AirSeal® Access Port) has been designed to create and maintain the pressure barrier throughout the procedure. The objective of this study is to collect comparative physiological, pulmonary compliance and surgical utility data for both the AirSeal® System and conventional insufflators and trocars in a controlled population undergoing laparoscopic/robotic renal or peri-renal procedures. Subjects enrolled in this study will have their procedure performed using either the AirSeal® System or a conventional insufflator and trocars. Both systems have been cleared for use by the FDA's 510(k) process and are currently employed in clinical practice, including at University of California, Irvine Medical Center. We hypothesize that with the use of the AirSeal® System, laparoscopic efficiencies and outcomes will be significantly greater than with the conventional insufflator and trocars system.

Detailed description

Rapid advances in minimally invasive surgical techniques demand ongoing technological improvement. The benefits of laparoscopic surgery to patient comfort and recovery have been made with procedures such as the cholecystectomy and gastric bypass. The AirSeal® System consists of an insufflation, filtration, and recirculation system (AirSeal® IFS), a triple lumen filtered tube set, and a valve free trocar (AirSeal® Access Port). The device enables peritoneal access with a novel mechanism to maintain pneumoperitoneum without a mechanical seal. Specifically, the AirSeal® System creates a pressure barrier within the proximal housing of the cannula which acts as an invisible seal to maintain pneumoperitoneum during the course of surgery. It utilizes a re-circulation and filtration control unit (AirSeal® IFS) designed specifically for the AirSeal® Access Port to create and maintain the pressure barrier. The AirSeal® System has applications in abdominal minimally invasive surgical procedures to establish a path of entry for laparoscopic instruments. The insufflation and recirculation system (AirSeal® IFS) is reusable and the AirSeal® Access Port and triple lumen filtered tube set are designed as single patient use devices. The 1st generation AirSeal® System received FDA 510(k) clearance in 2007 and the current system received FDA 510(k) Clearance in May 2011. Since that time, the AirSeal™ system has been used routinely in centers throughout the United States and has been observed by surgeons and anesthesia teams to provide a more gentle, stable, and consistent pneumoperitoneum. Initial evidence of this has reported in the literature1. Kavoussi and colleagues state; We have found that patients had blunted end-tidal carbon dioxide (CO2) levels and CO2 elimination rates compared with the CO2 elimination rates observed in studies evaluating transperitoneal laparoscopy using the conventional trocar. To determine if a difference truly exists, CO2 elimination rates must be prospectively analyzed in a head to head comparison between valve-less and conventional trocars. This study is designed to compare the physiological impact and pulmonary compliance of patients undergoing laparoscopic/robotic renal or peri-renal surgery with and without the AirSeal® System. 1 A new Valve-Less Trocar for Urology Laparoscopy: Initial Evaluation. Journal of Endourology 2009;23: 1535-39

Interventions

DEVICEAirSeal® System-Interventional

The AirSeal® System consists of an insufflation, filtration, and recirculation system (AirSeal® IFS), a triple lumen filtered tube set, and a valve free trocar (AirSeal® Access Port). The device enables peritoneal access with a novel mechanism to maintain pneumoperitoneum without a mechanical seal.

DEVICEConventional Insufflator and Trocar

Conventional insufflator and trocars are used in standard procedures and will serve as the base for comparison of the study device (AirSeal® System).

Sponsors

University of California, Irvine
Lead SponsorOTHER

Study design

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

Eligibility

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

Inclusion criteria

1. Competent adult (18 years of age and older) males and females. 2. Persons undergoing laparoscopic/robotic renal or peri-renal procedures.

Exclusion criteria

1. Under age 18 2. Unable to provide informed consent 3. Have a history of ascites 4. History of transplant kidney 5. Solitary kidney (one kidney) 6. Uncontrolled Diabetes (HbA1c \> 8) 7. Pregnancy (as noted by standard of care history and physical) 8. Women who are breast-feeding 9. History of narcotic abuse or chronic pain 10. Emergency Surgery 11. Person's participating in any other research

Design outcomes

Primary

MeasureTime frameDescription
AirSeal Reduction in the Variance of Intra-abdominal PressureDay 1 (Day of Procedure)Our primary aim is to show reduction in the variance of intra-abdominal pressure throughout the operative procedure when using the AirSeal device compared to a conventional insufflator. Based on preliminary data, we assume pressures maintained at a mean of 15 through out surgery for both devices and a variance of 3.6 with the conventional insufflator.

Secondary

MeasureTime frameDescription
Improvement in Cardiac Output With the AirSeal Device.Day 1 (Day of Procedure)Assuming cardiac output of approximately 5.0 L/min with the conventional device, we will have 96% power to detect as significant an improvement in cardiac output to 5.5 L/min using a two-group Satterwaite t-test and assuming variance of 0.25. Cardiac out put is defined by the volume of blood pumped by the heart in a given amount of time.

Countries

United States

Participant flow

Pre-assignment details

Competent adults (\>18 years old)(male or female) undergoing laparoscopic/robotic renal or peri-renal procedures will be included in this study.

Participants by arm

ArmCount
Conventional Insufflation and Trocars
Subjects enrolled in this study arm will have their procedure performed using either the conventional insufflator and trocars. This system have been cleared for use by the FDA's 510 (k)process and are currently employed in clinical practice, including at UC Irvine Medical Center. Conventional Insufflator and Trocar: Conventional insufflator and trocars are used in standard procedures and will serve as the base for comparison of the study device (AirSeal® System).
28
AirSeal® System-Interventional
The AirSeal® System consists of an insufflation, filtration, and recirculation system (AirSeal® IFS), a triple lumen filtered tube set, and a valve free trocar (AirSeal® Access Port). AirSeal® System-Interventional: The AirSeal® System consists of an insufflation, filtration, and recirculation system (AirSeal® IFS), a triple lumen filtered tube set, and a valve free trocar (AirSeal® Access Port). The device enables peritoneal access with a novel mechanism to maintain pneumoperitoneum without a mechanical seal.
28
Total56

Withdrawals & dropouts

PeriodReasonFG000FG001
Overall StudyPhysician Decision22

Baseline characteristics

CharacteristicConventional Insufflation and TrocarsTotalAirSeal® System-Interventional
Age, Continuous64.8 years
STANDARD_DEVIATION 13.1
63.7 years
STANDARD_DEVIATION 28.3
62.5 years
STANDARD_DEVIATION 15.3
Charlson Comorbidity Index3.2 units on a scale (0-43)
STANDARD_DEVIATION 1.7
3.4 units on a scale (0-43)
STANDARD_DEVIATION 2.1
3.6 units on a scale (0-43)
STANDARD_DEVIATION 2.4
Ethnicity (NIH/OMB)
Hispanic or Latino
2 Participants3 Participants1 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
26 Participants53 Participants27 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants0 Participants0 Participants
Race/Ethnicity, Customized
Asian
1 Participants3 Participants2 Participants
Race/Ethnicity, Customized
Black
1 Participants2 Participants1 Participants
Race/Ethnicity, Customized
Caucasian
24 Participants46 Participants22 Participants
Race/Ethnicity, Customized
Hawaiian/PI
0 Participants1 Participants1 Participants
Race/Ethnicity, Customized
Other
2 Participants4 Participants2 Participants
Sex: Female, Male
Female
10 Participants15 Participants5 Participants
Sex: Female, Male
Male
18 Participants41 Participants23 Participants
Treatment
Cryoablation
5 Participants9 Participants4 Participants
Treatment
Nephroureterectomy
1 Participants4 Participants3 Participants
Treatment
Partial Nephrectomy
11 Participants20 Participants9 Participants
Treatment
Pyeloplasty
1 Participants3 Participants2 Participants
Treatment
Radical Nephrectomy
8 Participants17 Participants9 Participants
Treatment
Retroperitoneal mass excision
1 Participants1 Participants0 Participants
Treatment
Simple Nephrectomy
1 Participants1 Participants0 Participants
Treatment
Ureteral implantation
0 Participants1 Participants1 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
— / —— / —
other
Total, other adverse events
0 / 280 / 28
serious
Total, serious adverse events
0 / 280 / 28

Outcome results

Primary

AirSeal Reduction in the Variance of Intra-abdominal Pressure

Our primary aim is to show reduction in the variance of intra-abdominal pressure throughout the operative procedure when using the AirSeal device compared to a conventional insufflator. Based on preliminary data, we assume pressures maintained at a mean of 15 through out surgery for both devices and a variance of 3.6 with the conventional insufflator.

Time frame: Day 1 (Day of Procedure)

ArmMeasureValue (MEAN)Dispersion
Conventional Insufflation and TrocarsAirSeal Reduction in the Variance of Intra-abdominal Pressure5.5 mmHgStandard Deviation 3.3
AirSeal® System-InterventionalAirSeal Reduction in the Variance of Intra-abdominal Pressure1.3 mmHgStandard Deviation 1.1
Secondary

Improvement in Cardiac Output With the AirSeal Device.

Assuming cardiac output of approximately 5.0 L/min with the conventional device, we will have 96% power to detect as significant an improvement in cardiac output to 5.5 L/min using a two-group Satterwaite t-test and assuming variance of 0.25. Cardiac out put is defined by the volume of blood pumped by the heart in a given amount of time.

Time frame: Day 1 (Day of Procedure)

ArmMeasureValue (MEAN)
Conventional Insufflation and TrocarsImprovement in Cardiac Output With the AirSeal Device.NA volume per minute
AirSeal® System-InterventionalImprovement in Cardiac Output With the AirSeal Device.NA volume per minute

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