Impact of a high inspired oxygen fraction on oxidative stress in pediatric patients: reassuring results based on a randomized trial.

IF 3 Q2 MEDICINE, RESEARCH & EXPERIMENTAL
Medical Gas Research Pub Date : 2025-06-01 Epub Date: 2025-01-18 DOI:10.4103/mgr.MEDGASRES-D-24-00073
Ting Li, Ying Han, Xiaodie Zhang, Jialian Zhao, Yaojun Suo, Yaoqin Hu
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Abstract

High-concentration oxygen inhalation is the primary intervention to prevent perioperative hypoxemia. However, there are concerns that this may induce an imbalance in oxidation‒reduction processes, particularly in pediatric patients with compromised antioxidant defenses. This study aimed to evaluate the impact of varying intraoperative concentrations of oxygen inhalation on oxidative stress in children by analyzing plasma biomarkers, oxygenation indices, and the duration of surgery and oxygen inhalation. Forty-five children scheduled for laparoscopic pyeloplasty under general anesthesia were randomly assigned to three groups, each receiving different fractions of inspired oxygen during surgery: 30%, 50%, or 80%. The primary outcome was the plasma concentration of oxidative stress markers, and the other measurements included the surgical duration and duration of oxygen exposure. Thirty-five children completed the study, with 11 in the low group, 12 in the medium group and 12 in the high group. The levels of superoxide dismutase at immediately post-tracheal intubation, hydrogen peroxide at 1 hour post-intubation, and 8-isoprostane at immediately post-surgical procedure were significantly higher in the high group than in the low group. The S100B levels at immediately post-surgical procedure were higher than those at immediately post-tracheal intubation and 1 hour post-intubation within the low group. Therefore, we conclude that inhaling a high concentration of oxygen during laparoscopic pyeloplasty under general anesthesia, for a duration of less than 3 hours, does not significantly increase oxidative stress in pediatric patients. This study was registered at the Chinese Clinical Trial Registry (registration No. ChiCTR2400083143).

高吸入氧分数对儿科患者氧化应激的影响:基于随机试验的令人放心的结果
高浓度吸氧是预防围手术期低氧血症的主要干预措施。然而,人们担心这可能会导致氧化还原过程的不平衡,特别是在抗氧化防御受损的儿科患者中。本研究旨在通过分析血浆生物标志物、氧合指标、手术时间和吸氧时间,评估术中不同吸氧浓度对儿童氧化应激的影响。45名在全身麻醉下计划进行腹腔镜肾盂成形术的儿童随机分为三组,每组在手术中接受不同比例的吸氧:30%,50%或80%。主要结果是血浆中氧化应激标志物的浓度,其他测量包括手术时间和氧暴露时间。35名儿童完成了这项研究,其中11名在低水平组,12名在中等水平组,12名在高水平组。气管插管后立即超氧化物歧化酶水平,插管后1小时过氧化氢水平,术后立即8-异前列腺素水平,高组明显高于低组。低剂量组术后即刻S100B水平高于气管插管后即刻和插管后1小时。因此,我们得出结论,在腹腔镜肾盂成形术中,在全身麻醉下吸入高浓度氧气,持续时间小于3小时,不会显著增加儿科患者的氧化应激。本研究已在中国临床试验注册中心注册(注册号:ChiCTR2400083143)。
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来源期刊
Medical Gas Research
Medical Gas Research MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
5.10
自引率
13.80%
发文量
35
期刊介绍: Medical Gas Research is an open access journal which publishes basic, translational, and clinical research focusing on the neurobiology as well as multidisciplinary aspects of medical gas research and their applications to related disorders. The journal covers all areas of medical gas research, but also has several special sections. Authors can submit directly to these sections, whose peer-review process is overseen by our distinguished Section Editors: Inert gases - Edited by Xuejun Sun and Mark Coburn, Gasotransmitters - Edited by Atsunori Nakao and John Calvert, Oxygen and diving medicine - Edited by Daniel Rossignol and Ke Jian Liu, Anesthetic gases - Edited by Richard Applegate and Zhongcong Xie, Medical gas in other fields of biology - Edited by John Zhang. Medical gas is a large family including oxygen, hydrogen, carbon monoxide, carbon dioxide, nitrogen, xenon, hydrogen sulfide, nitrous oxide, carbon disulfide, argon, helium and other noble gases. These medical gases are used in multiple fields of clinical practice and basic science research including anesthesiology, hyperbaric oxygen medicine, diving medicine, internal medicine, emergency medicine, surgery, and many basic sciences disciplines such as physiology, pharmacology, biochemistry, microbiology and neurosciences. Due to the unique nature of medical gas practice, Medical Gas Research will serve as an information platform for educational and technological advances in the field of medical gas.
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