Methylphenidate and the risk of acute central nervous system oxygen toxicity: a rodent model and observational data

Ivan Gur1,2, Yehuda Arieli3, Yinnon Matsliah4

  • 1Rambam Medical Center, Haifa, Israel.

PubMed
Abstract

Insights

Methylphenidate, used for ADHD, does not increase central nervous system oxygen toxicity (COT) risk in divers. In mice, methylphenidate prolonged the time to COT onset, suggesting a potential protective effect.

Area of Science:

  • Hyperbaric Medicine
  • Neuroscience
  • Pharmacology

Background:

  • Central nervous system oxygen toxicity (COT) is a risk for divers using pure oxygen rebreathers.
  • The impact of methylphenidate, a common ADHD medication, on COT has not been previously studied.
  • Understanding potential drug interactions is crucial for diver safety.

Purpose of the Study:

  • To investigate the association between methylphenidate use and the risk of developing COT in divers.
  • To evaluate the effect of methylphenidate on the latency to COT onset in an animal model.

Main Methods:

  • Retrospective analysis of pure-oxygen-rebreather diver records (1975-2022) to identify COT cases and assess methylphenidate use.
  • Matched case-control study comparing divers with COT to similar controls.
  • Experimental study in mice involving oral methylphenidate administration followed by hyperbaric oxygen exposure until seizure onset.

Main Results:

  • No statistically significant association was found between methylphenidate prescription and an increased risk of COT in human divers (OR 0.72).
  • In mice, increasing doses of methylphenidate were associated with significantly longer latency times to COT onset.
  • The mean latency to COT in mice increased with methylphenidate dosage, from 877s (0 mg/kg) to 1500s (5 mg/kg).

Conclusions:

  • Human observational data suggest methylphenidate does not elevate COT risk in divers.
  • Methylphenidate exposure in mice appears to prolong the latency to central nervous system oxygen toxicity.
  • These findings suggest methylphenidate may possess protective effects against COT.

Related Concept Videos

Types of Toxins01:36

Types of Toxins

Humans continually engage with an environment rich in potentially harmful chemicals. These are introduced to our bodies through inhalation, ingestion, or skin contact. These chemicals exist in various forms, such as air and environmental pollutants, agricultural chemicals, organic solvents, and heavy metals.
Air pollutants, primarily gases, pose significant threats to respiratory health, leading to conditions like hypoxia, lung cancer, and in extreme cases, death.
Environmental pollutants like...
3.7K
Drug Toxicity: Risk factors01:24

Drug Toxicity: Risk factors

Adverse Drug Reactions (ADRs) are potential complications that arise during pharmacotherapy, influenced by multiple risk factors. Age plays a significant role; both neonates and the elderly are at heightened risk due to their respective immature and diminished metabolic and elimination processes. Gender also impacts ADRs, with females experiencing a 1.5 to 1.7-fold greater risk than males, which may be linked to pharmacokinetic, pharmacodynamic, and hormonal differences. Notably, neonates, the...
229
Toxicity Testing in Animals01:23

Toxicity Testing in Animals

Toxicity tests in animals are grounded on two main assumptions: first, the effects observed in laboratory animals can be extrapolated to humans, especially when adjusted for body surface area; second, high-dose exposure in animals is essential to identify potential human hazards from lower doses. This is based on the quantal dose-response concept, which faces the challenge of extrapolating results from relatively few test animals to much larger human populations. For example, a 0.01% incidence...
204