Potential of olfactory neuroepithelial cells as a model to study schizophrenia: A focus on GPCRs (Review)

Потенциал обонательных нейроэпителиальных клеток как модели для изучения шизофрении: акцент на GPCR (Обзор)
Zuly A. Sánchez-Florentino, Bianca S. Romero-Martínez, Edgar Flores‐Soto, Héctor Serrano, Luis F. Montaño, Marcela Valdés‐Tovar, Eduardo Calixto, Arnoldo Aquino‐Gálvez, Germán Octavio López-Riquelme, Ramón Alvarado, Jesús Argueta, Héctor Solís‐Chagoyán, Bettina Sommer
2023-11-28

G protein-coupled receptorsGPCR signalingolfactory neuroepithelial cellsolfactory stem cellsschizophrenia pathophysiology
Schizophrenia (SZ) is a multifactorial disorder characterized by volume reduction in gray and white matter, oxidative stress, neuroinflammation, altered neurotransmission, as well as molecular deficiencies such as punctual mutation in Disrupted‑in‑Schizophrenia 1 protein. In this regard, it is essential to understand the underlying molecular disturbances to determine the pathophysiological mechanisms of the disease. The signaling pathways activated by G protein‑coupled receptors (GPCRs) are key molecular signaling pathways altered in SZ. Convenient models need to be designed and validated to study these processes and mechanisms at the cellular level. Cultured olfactory stem cells are used to investigate neural molecular and cellular alterations related to the pathophysiology of SZ. Multipotent human olfactory stem cells are undifferentiated and express GPCRs involved in numerous physiological functions such as proliferation, differentiation and bioenergetics. The use of olfactory stem cells obtained from patients with SZ may identify alterations in GPCR signaling that underlie dysfunctional processes in both undifferentiated and specialized neurons or derived neuroglia. The present review aimed to analyze the role of GPCRs and their signaling in the pathophysiology of SZ. Culture of olfactory epithelial cells constitutes a suitable model to study SZ and other psychiatric disorders at the cellular level.
1
Cultured human olfactory stem/neuroepithelial cells express GPCRs involved in proliferation, differentiation, and bioenergetics.
2
GPCR signaling pathways are key molecular pathways altered in schizophrenia.
3
Olfactory epithelial cell cultures provide a suitable cellular model to study GPCR-related molecular and cellular alterations in schizophrenia.
4
Studying GPCRs in olfactory neuroepithelial cells may help elucidate pathophysiological mechanisms tied to schizophrenia features such as oxidative stress and altered neurotransmission.
5
Using olfactory stem cells from schizophrenia patients can identify GPCR signaling alterations underlying dysfunctions in neurons and neuroglia.

Cultured human olfactory neuroepithelial (olfactory stem) cells as an experimental model for schizophrenia

Alterations in GPCR expression and GPCR-mediated signaling pathways in these olfactory neuroepithelial cells related to schizophrenia pathophysiology

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2023-11-28
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Authors
Zuly A. Sánchez-Florentino
Bianca S. Romero-Martínez
Edgar Flores‐Soto
Héctor Serrano
Luis F. Montaño
Marcela Valdés‐Tovar
Eduardo Calixto
Arnoldo Aquino‐Gálvez
Germán Octavio López-Riquelme
Ramón Alvarado
Jesús Argueta
Héctor Solís‐Chagoyán
Bettina Sommer
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