Pain hypersensitivity in a pharmacological mouse model of attention-deficit/hyperactivity disorder

Author:

Bouchatta Otmane12ORCID,Aby Franck3ORCID,Sifeddine Wahiba2,Bouali-Benazzouz Rabia3,Brochoire Louison3,Manouze Houria2ORCID,Fossat Pascal3ORCID,Ba M’Hamed Saadia2,Bennis Mohamed2ORCID,Landry Marc34ORCID

Affiliation:

1. University of Bordeaux, CNRS, Interdisciplinary Institute for Neuroscience, UMR 5297, Bordeaux, France

2. Laboratory of Pharmacology, Neurobiology, Anthropology & Environment, Faculty of Sciences, Cadi Ayyad University, Marrakesh, 40000, Morocco

3. University of Bordeaux, CNRS, Institute of Neurodegenerative Diseases, UMR 5293, Bordeaux, France

4. University of Bordeaux, CNRS, INSERM, Bordeaux Imaging Center, UMS 3420, US 4, Bordeaux, France

Abstract

Clinical evidence suggests that pain hypersensitivity develops in patients with attention-deficit/hyperactivity disorder (ADHD). However, the mechanisms and neural circuits involved in these interactions remain unknown because of the paucity of studies in animal models. We previously validated a mouse model of ADHD obtained by neonatal 6-hydroxydopamine (6-OHDA) injection. Here, we have demonstrated that 6-OHDA mice exhibit a marked sensitization to thermal and mechanical stimuli, suggesting that phenotypes associated with ADHD include increased nociception. Moreover, sensitization to pathological inflammatory stimulus is amplified in 6-OHDA mice as compared to shams. In this ADHD model, spinal dorsal horn neuron hyperexcitability was observed. Furthermore, ADHD-related hyperactivity and anxiety, but not inattention and impulsivity, are worsened in persistent inflammatory conditions. By combining in vivo electrophysiology, optogenetics, and behavioral analyses, we demonstrated that anterior cingulate cortex (ACC) hyperactivity alters the ACC–posterior insula circuit and triggers changes in spinal networks that underlie nociceptive sensitization. Altogether, our results point to shared mechanisms underlying the comorbidity between ADHD and nociceptive sensitization. This interaction reinforces nociceptive sensitization and hyperactivity, suggesting that overlapping ACC circuits may be targeted to develop better treatments.

Funder

Campus France

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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