Whole-brain modelling supports the use of serotonergic psychedelics for the treatment of disorders of consciousness

Author:

Mindlin IORCID,Herzog RORCID,Belloli LORCID,Manasova DORCID,Monge-Asensio MORCID,Vohryzek J.ORCID,Escrichs A.ORCID,Alnagger NORCID,Núñez PORCID,Kringelbach MLORCID,Deco GORCID,Tagliazucchi EORCID,Naccache LORCID,Rohaut BORCID,Sitt JDORCID,Sanz Perl YORCID

Abstract

AbstractDisorders of consciousness (DoC) are a challenging and complex group of neurological conditions characterised by absent or impaired awareness. The current range of therapeutic options for DoC patients is limited, offering few non-invasive pharmacological alternatives. This situation has sprung a growing interest in the development of novel treatments, such as the proposal to study the efficacy of 5HT2A receptor agonists (also known as psychedelics) to restore impaired consciousness. Given the ethical implications of exploring novel compounds in non-communicative individuals, we assessed in silico their effects in the whole-brain dynamics of DoC patients. We embedded the whole-brain activity of patients in a low-dimensional space, and then used this representation to visualise the effects of simulated neuromodulation across a range of receptors representing potential drug targets. Our findings show that activation of serotonergic and opioid receptors shifted brain dynamics of DoC patients towards patterns typically seen in conscious and awake individuals, and that this effect was mediated by the brain-wide density of activated receptors. These results showcase the role of whole-brain models in the discovery of novel pharmacological treatments for neuropsychiatric conditions, while also supporting the feasibility of accelerating the recovery of consciousness with serotonergic psychedelics.

Publisher

Cold Spring Harbor Laboratory

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