bioRxiv · 10.1101/2024.12.29.630575
Primary sensory neuron dysfunction underlying mechanical itch hypersensitivity in a Shank3 mouse model of autism
Abstract
Autism Spectrum Disorder (ASD) is a neurodevelopmental disorder marked by social deficits, repetitive behaviors, and atypical sensory perception. The link between ASD and skin abnormalities, inducing itchiness, has never been investigated in depth. This study explores mechanical itch sensitivity in the Shank3{Delta}C/{Delta}C mouse model. Key observations include heightened scratching in response to skin deformation and hypersensitivity to mechanical itch (i.e. alloknesis) in Shank3{Delta}C/{Delta}C mice. In Shank3{Delta}C/{Delta}C mice, ex vivo electrophysiological experiments revealed that C-fiber low-threshold mechanoreceptors (C-LTMRs) were hyporesponsive, and transcriptomic analysis showed a downregulation of TAFA4, a protein secreted by C-LMTRs. Interestingly, pharmacologically inhibiting A{beta}-LTMR, important in mechanical itch initiation, abolished the itch hypersensitivity. Also, TAFA4 injections reduced the spontaneous scratching response to skin deformation but failed to restore itch sensitivity. Our data suggest that somatosensory deficits in Shank3{Delta}C/{Delta}C mice lead to hypersensitivity to itchiness and indicate that two pathways might regulate mechanical itchiness, dependent on TAFA4.
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Huzard, D., Marias, M., Granat, c., Oliva, G., Soubeyre, V., Grellier, G., Negm, A., Devaux, J., Bourinet, E., Francois, A.. 2024-12-29. Primary sensory neuron dysfunction underlying mechanical itch hypersensitivity in a Shank3 mouse model of autism. https://doi.org/10.1101/2024.12.29.630575
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