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[Propofol combined with hypoxia induces cognitive dysfunction in immature rats via p38 pathway]
Jing Zhang1,2, Qing Yu3, Yang Liu4
1Department of Anesthesiology, Children's Hospital of Chongqing Medical University, Chongqing 400014, China.
Insights
Propofol combined with hypoxia impairs cognitive function in young rats by affecting tau protein via the p38 pathway. Oxygenation offers protection against these neurotoxic effects.
Area of Science:
- Neuroscience
- Anesthesiology
- Developmental Biology
Background:
- Propofol is a widely used anesthetic agent.
- Immature brains are particularly vulnerable to anesthetic-induced neurotoxicity.
- Hypoxia can exacerbate brain injury.
Purpose of the Study:
- To examine the impact of propofol and hypoxia on immature rat cognitive function.
- To elucidate the roles of the p38 pathway and tau protein in mediating these effects.
Main Methods:
- Young Sprague-Dawley rats (P7) received daily propofol or lipid emulsion injections for 7 days.
- Rats were exposed to hypoxia (18% O2), normal air (21% O2), or oxygen (50% O2).
- A p38 pathway blocker was administered to a subset of rats before propofol treatment.
- Hippocampal p38, phosphorylated tau, and total tau levels were measured via Western blotting.
- Spatial learning and memory were assessed using the Morris water maze.
Main Results:
- Propofol with hypoxia or normal air increased p38, phosphorylated tau, and total tau levels.
- Propofol with oxygen did not significantly alter protein levels.
- Cognitive deficits (prolonged latency, reduced crossings, less time in target quadrant) were observed in rats treated with propofol and hypoxia/normal air.
- Oxygen treatment mitigated propofol-induced cognitive impairment.
- The p38 blocker reversed propofol-induced cognitive deficits.
Conclusions:
- Propofol combined with hypoxia impairs cognitive function in immature rats.
- The p38 pathway and tau protein are involved in propofol-induced neurotoxicity.
- Oxygen administration plays a protective role against these adverse effects.
Objective:
To investigate the effects of propofol combined with hypoxia on cognitive function of immature rats and the possible role of p38 pathway and tau protein in mediating such effects.
Methods:
Ninety 7-day-old (P7) SD rats were randomized for daily intraperitoneal injection of propofol (50 mg/kg) or lipid emulsion (5.0 mL/kg) for 7 consecutive days. After each injection, the rats were placed in a warm box (38 ℃) with an oxygen concentration of 18% (hypoxia), 21% (normal air), or 50% (oxygen) until full recovery of the righting reflex. Another 90 P7 rats were similarly grouped and received intraperitoneal injections of p-p38 blocker (15 mg/kg) 30 min before the same treaments. The phosphorylated tau protein, total tau protein and p-p38 content in the hippocampus were detected using Western blotting. The spatial learning and memory abilities of the rats were evaluated with Morris water maze test.
Results:
Compared with lipid emulsion, propofol injection resulted in significantly increased levels of p-p38, phosphorylated tau and total tau proteins in rats with subsequent hypoxic or normal air treatment (P < 0.05), but propofol with oxygen and injections of the blocker before propofol did not cause significant changes in the proteins. Without subsequent oxygenation, the rats receiving injections of propofol, with and without prior blocker injection, all showed significantly prolonged latency time and reduced platform-crossing times and third quadrant residence time compared with the corresponding lipid emulsion groups (P < 0.05). With oxygen treatment, the rats in propofoland blocker-treated groups showed no significant difference in the performance in Morris water maze test from the corresponding lipid emulsion group. The results of Morris water maze test differed significantly between blocker-propofol group and propofol groups irrespective of exposures to different oxygen levels (P < 0.05), but not between the lipid emulsion and blocker group pairs with exposures to different oxygen levels.
Conclusions:
Propofol combined with hypoxia can affect the expression of tau protein through p38 pathway to impair the cognitive function of immature rats, in which oxygen plays a protective role.
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