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Profil bibliographique

Cheyanne M. Lewis

Informations fournies par OpenAlex. Research Africa ne déduit ni nationalité, ni poste, ni coordonnées personnelles.

8Publications signalées
138Citations signalées
1Affiliations récentes

Les institutions déclarées

Les domaines associés

Ion channel regulation and functionNeurobiology and Insect Physiology ResearchIon Channels and ReceptorsNeuroscience and Neural EngineeringNeuroscience and Neuropharmacology Research

Les publications récentes

Accès ouvert 2025 article OpenAlex

Enteric glutamatergic interneurons regulate intestinal motility

Ryan Hamnett, Jacqueline L. Bendrick, Zinnia Saha, Keiramarie Robertson et autres

The enteric nervous system (ENS) controls digestion autonomously via a complex neural network within the gut wall. Enteric neurons expressing glutamate have been identified by transcriptomic studies as a distinct subpopulation, and glutamate can affect intestinal motility by modulating enteric neuron activity. …

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29 citations Neuron
Accès ouvert 2024 article OpenAlex

Ion channels of cold transduction and transmission

Cheyanne M. Lewis, Theanne N. Griffith

Thermosensation requires the activation of a unique collection of ion channels and receptors that work in concert to transmit thermal information. It is widely accepted that transient receptor potential melastatin 8 (TRPM8) activation is required for normal cold sensing; however, recent studies …

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8 citations The Journal of General Physiology
Accès ouvert 2023 article OpenAlex

BMAL1 loss in oligodendroglia contributes to abnormal myelination and sleep

Daniela Rojo, Louisa Dal Cengio, Anna Badner, Samuel Kim et autres

Myelination depends on the maintenance of oligodendrocytes that arise from oligodendrocyte precursor cells (OPCs). We show that OPC-specific proliferation, morphology, and BMAL1 are time-of-day dependent. Knockout of Bmal1 in mouse OPCs during development disrupts the expression of genes associated with circadian rhythms, …

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50 citations Neuron
Accès ouvert 2022 article OpenAlex

NaV1.1 is essential for proprioceptive signaling and motor behaviors

Cyrrus M. Espino, Cheyanne M. Lewis, Serena Ortiz, Miloni S. Dalal et autres

The voltage-gated sodium channel (Na V ), Na V 1.1, is well-studied in the central nervous system; conversely, its contribution to peripheral sensory neuron function is more enigmatic. Here, we identify a new role for Na V 1.1 in mammalian proprioception. RNAscope …

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38 citations eLife
Accès ouvert 2022 preprint OpenAlex

Na V 1.1 is essential for proprioceptive signaling and motor behaviors

Cyrrus M. Espino, Cheyanne M. Lewis, Serena Ortiz, Miloni S. Dalal et autres

A bstract The voltage-gated sodium channel (Na V ), Na V 1.1, is well-studied in the central nervous system; conversely, its contribution to peripheral sensory neuron function is more enigmatic. Here, we identify a new role for Na V 1.1 in mammalian …

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0 citations bioRxiv (Cold Spring Harbor Laboratory)

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