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Stress-induced gastrointestinal barrier dysfunction and its inflammatory effects1

Journal of Animal Science · 2008 · Vol. 87(suppl_14) · pp. E101–E108
G. Patrick Lambert

Abstract

The intestinal barrier is formed by enterocyte membranes, tight junctions, secreted mucus, and immunologic factors, such as tissue macrophages. Dysfunction of this barrier can be caused by different types of stress (e.g., physiological, pathological, psychological, pharmacological) and can lead to increased intestinal permeability. Increased permeability to endotoxin, a component of the walls of gram-negative bacteria, causes local or systemic inflammatory reactions, or both. The immune response(s) can then promote more serious conditions. Exertional heat stroke is an example of such a condition. During severe exercise-heat stress, possibly combined with other stresses, reductions in intestinal blood flow, direct thermal damage to the intestinal mucosa, or both, can cause intestinal barrier disruption and endotoxemia. The resulting inflammatory response is believed to be involved in altered thermoregulation and multiple-organ dysfunction. Possible means for preventing or attenuating, or both, many stress-induced intestinal barrier problems include environmental, pharmaceutical, or nutritional approaches, or a combination of these.

Thermoregulation and physiological responsesExercise and Physiological ResponsesDietary Effects on HealthIntestinal permeabilityEnterocyteTight junctionImmune systemInflammationMucusIntestinal mucosaHyperthermiaImmunologyHeat stress

MeSH terms

AnimalsGastroenteritisInflammationStress, PhysiologicalGastrointestinal Tract
Citations
523
FWCI
3.63
field-weighted impact
References
35
Percentile
93%
vs. same field & year
Citations per year
References
Mechanisms of circulatory and intestinal barrier dysfunction during whole body hyperthermia
American Journal of Physiology-Heart and Circulatory Physiology · 2001 · 450 citations
II. Stress and intestinal barrier function
American Journal of Physiology-Gastrointestinal and Liver Physiology · 2001 · 459 citations
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