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Effect of continuous infusion of midazolam on immune function in pediatric patients after surgery
1Department of Anesthesiology, Children's Hospital of Zhengzhou, Zhengzhou, Henan, China.
Insights
Midazolam reduced cytokine levels in pediatric patients post-surgery. It also inhibited interleukin-6 (IL-6) release in brain cells, suggesting a mechanism for its immune-modulating effects.
Area of Science:
- Immunology
- Pharmacology
- Neuroscience
Background:
- Post-surgical immune responses can be modulated by anesthetic agents.
- Understanding the effects of sedatives like midazolam on immune function is crucial for pediatric patient care.
Purpose of the Study:
- To investigate the impact of midazolam on immune function in pediatric patients after surgery.
- To explore the potential mechanisms underlying midazolam's effects on cytokine release, particularly IL-6.
Main Methods:
- A randomized study comparing midazolam and propofol in 56 pediatric patients (5-14 years) receiving sedation for over 48 hours.
- Measurement of plasma cytokine levels (IL-1β, IL-8, TNF-α) before and after 48 hours of midazolam infusion.
- In vitro experiments using rat C6 brain glioma cells treated with midazolam and IL-1β to assess IL-6 release via ELISA.
Main Results:
- Midazolam administration led to a significant decrease in plasma concentrations of IL-1β, IL-8, and TNF-α after 48 hours.
- Midazolam demonstrated a dose-dependent suppression of IL-1β-induced IL-6 release in rat C6 glioma cells.
- A concentration of 3 μM midazolam reduced IL-1β-induced IL-6 release by 43.58%.
Conclusions:
- Midazolam significantly inhibits cytokine release in pediatric patients following surgery.
- A key mechanism involves the suppression of IL-1β-induced IL-6 release within the central nervous system.
Abstract:
The current study was performed to investigate the effects of midazolam on immune function in pediatric patients after surgery and possible mechanism involved. Patients who needed sedation for more than 2 consecutive days after undergoing surgery in the Pediatric Surgery Department of our hospital were enrolled for the study. Fifty-six patients (5-14 years old) were randomly divided into midazolam and propofol treatment groups (N = 28 each in each group). Pediatric patients received midazolam or profolol via continuous intravenous administration, and their plasma cytokine levels were compared after 48 h. Cultured rat C6 brain glioma cells were pretreated with a range of concentrations of midazolam or propofol for 60 minutes prior to incubation with 10 ng/mL IL-1β in serum-free medium or vehicle for 36 h. IL-6 concentration was subsequently measured using ELISA. In comparison with levels measured before the infusion of midazolam for 48 h, concentrations of all cytokines decreased, with the differences in IL-1β, IL-8, and TNF-α concentrations reaching significance (all P < 0.05). Midazolam significantly suppressed the IL-1β-induced release of IL-6 in rat C6 glioma cells. This inhibition was concentration-dependent between 0.3 and 3 μM, with 3 μM concentration of midazolam decreasing the IL-1β-induced release of IL-6 by 43.58%. Midazolam can significantly inhibit the release of cytokines in pediatric patients after surgery. One of the mechanisms may be the inhibition of IL-1β- induced release of IL-6 in the central nervous system.
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