Effect of Sevoflurane and Desflurane on Heme Oxygenase-1 Expression in Elective Cholecystectomy
NCT ID: NCT06457958
Last Updated: 2025-02-05
Study Results
The study team has not published outcome measurements, participant flow, or safety data for this trial yet. Check back later for updates.
Basic Information
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WITHDRAWN
PHASE4
INTERVENTIONAL
2025-06-01
2025-12-31
Brief Summary
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Detailed Description
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Study Design and Power Analysis:
The study follows a comparative prospective parallel-group design and is classified as low-risk scientific research. Sample size determination was based on a power analysis using G\*Power 3.1 software. A t-test will be employed for comparison between two independent groups, with an alpha error probability set at 0.05 and a power (1-beta error probability) of 0.90. A total of 48 patients, with 24 in each group, will be included.
Inclusion Criteria:
Willing participants ASA class 1-2-3 Ages 18-65 Patients undergoing elective cholecystectomy surgery
Exclusion Criteria:
Patients undergoing emergency cholecystectomy surgery Pregnant and postpartum patients Patients with a history of oncological diseases Patients with known genetic diseases Patients receiving total intravenous anesthesia Patients developing complications during surgery
Study Procedures:
Preoperative blood samples will be obtained from enrolled patients 1 hour before surgery. Patients undergoing general anesthesia will be randomly assigned to receive either sevoflurane or desflurane inhalation agent. Standard anesthesia procedures will be followed. Total amounts of sevoflurane/desflurane consumed, oxygen consumption, and vital parameters will be recorded throughout the procedure. Postoperative blood samples will be collected 1 hour after extubation. Patient follow-up will then conclude. Blood samples will be stored in the hospital's biochemistry laboratory. HO-1 blood protein levels will be measured using the ELISA method, and HO-1 mRNA expression will be assessed using PCR. This study aims to determine which inhalation agent offers superior cellular protection at the molecular level by assessing their effects on HO-1 enzyme levels and gene expression.
Conditions
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Study Design
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RANDOMIZED
PARALLEL
BASIC_SCIENCE
DOUBLE
Study Groups
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Sevoflurane Group
Patients in this group will receive sevoflurane as the anesthetic agent during elective cholecystectomy surgery.
Sevoflurane is a commonly used inhalational anesthetic known for its rapid onset and recovery times.
Sevoflurane Group
Preoperative: One hour before surgery, a blood sample will be taken. Intraoperative: Sevoflurane will be used as the inhalational anesthetic. Routine general anesthesia procedures will be followed. Sevoflurane consumption, oxygen levels, and vital parameters will be recorded.
Postoperative: One hour after extubation, another blood sample will be taken, marking the end of patient monitoring.
Laboratory Analysis: Blood samples will be stored in the biochemistry laboratory. Hemoxygenase-1 protein levels will be measured by ELISA, and mRNA expression will be analyzed using PCR.
Desflurane Group
Patients in this group will receive desflurane as the anesthetic agent during elective cholecystectomy surgery.
Desflurane is another widely used inhalational anesthetic, notable for its low blood-gas solubility coefficient, leading to very rapid onset and recovery times.
Desflurane Group
Preoperative: One hour before surgery, a blood sample will be taken. Intraoperative: Desflurane will be used as the inhalational anesthetic. Routine general anesthesia procedures will be followed. Desflurane consumption, oxygen levels, and vital parameters will be recorded.
Postoperative: One hour after extubation, another blood sample will be taken, marking the end of patient monitoring.
Laboratory Analysis: Blood samples will be stored in the biochemistry laboratory. Hemoxygenase-1 protein levels will be measured by ELISA, and mRNA expression will be analyzed using PCR.
Interventions
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Sevoflurane Group
Preoperative: One hour before surgery, a blood sample will be taken. Intraoperative: Sevoflurane will be used as the inhalational anesthetic. Routine general anesthesia procedures will be followed. Sevoflurane consumption, oxygen levels, and vital parameters will be recorded.
Postoperative: One hour after extubation, another blood sample will be taken, marking the end of patient monitoring.
Laboratory Analysis: Blood samples will be stored in the biochemistry laboratory. Hemoxygenase-1 protein levels will be measured by ELISA, and mRNA expression will be analyzed using PCR.
Desflurane Group
Preoperative: One hour before surgery, a blood sample will be taken. Intraoperative: Desflurane will be used as the inhalational anesthetic. Routine general anesthesia procedures will be followed. Desflurane consumption, oxygen levels, and vital parameters will be recorded.
Postoperative: One hour after extubation, another blood sample will be taken, marking the end of patient monitoring.
Laboratory Analysis: Blood samples will be stored in the biochemistry laboratory. Hemoxygenase-1 protein levels will be measured by ELISA, and mRNA expression will be analyzed using PCR.
Other Intervention Names
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Eligibility Criteria
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Inclusion Criteria
* ASA class 1-2-3
* Ages 18-65 years
* Patients undergoing elective cholecystectomy surgery
Exclusion Criteria
* Pregnant and postpartum patients
* Patients with a history of oncological diseases
* Patients with known genetic diseases
* Patients receiving total intravenous anesthesia
* Patients developing complications during surgery will be excluded
18 Years
65 Years
ALL
No
Sponsors
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The Scientific and Technological Research Council of Turkey
OTHER
Kocaeli City Hospital
OTHER_GOV
Responsible Party
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Principal Investigators
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BEDİRHAN GÜNEL, MD
Role: PRINCIPAL_INVESTIGATOR
Kocaeli City Hospital
Locations
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Kocaeli City Hospital
Kocaeli, IZMIT, Turkey (Türkiye)
Countries
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References
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Bauer I, Raupach A. The Role of Heme Oxygenase-1 in Remote Ischemic and Anesthetic Organ Conditioning. Antioxidants (Basel). 2019 Sep 16;8(9):403. doi: 10.3390/antiox8090403.
Wu ZF, Lin WL, Lee MS, Hung NK, Huang YS, Chen TW, Lu CH. Propofol vs desflurane on the cytokine, matrix metalloproteinase-9, and heme oxygenase-1 response during living donor liver transplantation: A pilot study. Medicine (Baltimore). 2019 Nov;98(48):e18244. doi: 10.1097/MD.0000000000018244.
Hoetzel A, Schmidt R. Regulatory role of anesthetics on heme oxygenase-1. Curr Drug Targets. 2010 Dec;11(12):1495-503. doi: 10.2174/1389450111009011495.
Other Identifiers
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KSH-ANREA-BG-01
Identifier Type: -
Identifier Source: org_study_id
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