Radical pairs may play a role in xenon-induced general anesthesia
Jordan Smith1, Hadi Zadeh Haghighi2, Dennis Salahub3
1Department of Physics and Astronomy, Institute for Quantum Science and Technology, Quantum Alberta, and Hotchkiss Brain Institute, University of Calgary, Calgary, AB, T2N 1N4, Canada. jordan.smith1@ucalgary.ca.
Abstract:
Understanding the mechanisms underlying general anesthesia would be a key step towards understanding consciousness. The process of xenon-induced general anesthesia has been shown to involve electron transfer, and the potency of xenon as a general anesthetic exhibits isotopic dependence. We propose that these observations can be explained by a mechanism in which the xenon nuclear spin influences the recombination dynamics of a naturally occurring radical pair of electrons. We develop a simple model inspired by the body of work on the radical-pair mechanism in cryptochrome in the context of avian magnetoreception, and we show that our model can reproduce the observed isotopic dependence of the general anesthetic potency of xenon in mice. Our results are consistent with the idea that radical pairs of electrons with entangled spins could be important for consciousness.
Related Concept Videos
Radical Formation: Addition
Similar to charge conservation in chemical reactions, spin conservation is implicit for radical reactions. Accordingly, the product formed must possess an...
Radical Reactivity: Electrophilic Radicals
Radical Halogenation: Stereochemistry
Halogenation to form a new chiral center:
Radical Reactivity: Overview
Radical Reactivity: Steric Effects
Along with electronic...
Radical Reactivity: Nucleophilic Radicals


