4.7 Article

Rat Mucosal Immunity following an Intensive Chronic Training and an Exhausting Exercise: Effect of Hesperidin Supplementation

Journal

NUTRIENTS
Volume 15, Issue 1, Pages -

Publisher

MDPI
DOI: 10.3390/nu15010133

Keywords

flavanone; flavonoid; IgA-coated bacteria; lymphocytes; mesenteric lymph node; microbiota; proliferation; secretory IgA

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Stressful situations such as intense exercise can disrupt the immune system and gastrointestinal function. This study investigated the effect of hesperidin consumption in rats undergoing intense training and exhaustion tests. Results showed that while hesperidin did not prevent immune system changes, it enhanced IgA synthesis in the intestine, potentially strengthening the immune barrier in stressful situations.
Stressful situations such as a high-intensity exercise or exhausting training programs can act as immune disruptors leading to transitory immunodepression status, which can be accompanied by alterations of the gastrointestinal functions. Hesperidin intake has demonstrated ergogenic activity and is able to influence the intestinal ecosystem and immunity. We aimed to investigate the effect of hesperidin consumption in rats submitted to an intense training and a final exhaustion test, focusing on the functionality of the intestinal immune system and on the cecal microbiota. Rats, supplemented or not with hesperidin, were intensively trained on a treadmill for 5 weeks. Samples were obtained 24 h after a regular training session, and immediately and 24 h after a final exhaustion test. Cecal microbiota and composition and function of mesenteric lymph node (MLN) lymphocytes and mucosal immunoglobulin A (IgA) were determined. Results showed that chronic intense exercise followed by an exhausting test induced changes in the intestinal immune compartment such as the distribution and function of MLN lymphocytes. Although the hesperidin supplementation did not prevent these alterations, it was able to enhance IgA synthesis in the intestinal compartment. This could be important in enhancing the immune intestinal barrier in this stressful situation.

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