Intestinal Homeostasis under Stress Siege

Título traducido de la contribución: Homeostasis intestinal bajo el asedio del estrés

Fabiola Guzmán-Mejía, Marycarmen Godínez-Victoria, Alan Vega-Bautista, Judith Del Carmen Pacheco Yepez, Drago Serrano Maria Elisa

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

Resumen

Intestinal homeostasis encompasses a complex and balanced interplay among a wide array of components that collaborate to maintain gut barrier integrity. The appropriate function of the gut barrier requires the mucus layer, a sticky cushion of mucopolysaccharides that overlays the epithelial cell surface. Mucus plays a critical anti-inflammatory role by preventing direct contact between luminal microbiota and the surface of the epithelial cell monolayer. Moreover, mucus is enriched with pivotal effectors of intestinal immunity, such as immunoglobulin A (IgA). A fragile and delicate equilibrium that supports proper barrier function can be disturbed by stress. The impact of stress upon intestinal homeostasis results from neuroendocrine mediators of the brain-gut axis (BGA), which comprises a nervous branch that includes the enteric nervous system (ENS) and the sympathetic and parasympathetic nervous systems, as well as an endocrine branch of the hypothalamic-pituitary-adrenal axis. This review is the first to discuss the experimental animal models that address the impact of stress on components of intestinal homeostasis, with special emphasis on intestinal mucus and IgA. Basic knowledge from animal models provides the foundations of pharmacologic and immunological interventions to control disturbances associated with conditions that are exacerbated by emotional stress, such as irritable bowel syndrome
Título traducido de la contribuciónHomeostasis intestinal bajo el asedio del estrés
Idioma originalInglés
Número de artículo10
Páginas (desde-hasta)5095
PublicaciónInternational Journal of Molecular Sciences
Volumen22
N.º10
EstadoPublicada - 12 may. 2021

Palabras clave

  • Intestinal
  • Homeostasis
  • Stress
  • Siege

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