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Published on: December 17, 2011
Aging-Related Impairments to M Cells in Peyer's Patches Coincide With Disturbances to Paneth Cells
David S Donaldson1, Barbara B Shih1, Neil A Mabbott1
1The Roslin Institute & Royal (Dick) School of Veterinary Studies, University of Edinburgh, Easter Bush, United Kingdom.
Abstract:
The decline in mucosal immunity during aging increases susceptibility, morbidity and mortality to infections acquired via the gastrointestinal and respiratory tracts in the elderly. We previously showed that this immunosenescence includes a reduction in the functional maturation of M cells in the follicle-associated epithelia (FAE) covering the Peyer's patches, diminishing the ability to sample of antigens and pathogens from the gut lumen. Here, co-expression analysis of mRNA-seq data sets revealed a general down-regulation of most FAE- and M cell-related genes in Peyer's patches from aged mice, including key transcription factors known to be essential for M cell differentiation. Conversely, expression of ACE2, the cellular receptor for SARS-Cov-2 virus, was increased in the aged FAE. This raises the possibility that the susceptibility of aged Peyer's patches to infection with the SARS-Cov-2 virus is increased. Expression of key Paneth cell-related genes was also reduced in the ileum of aged mice, consistent with the adverse effects of aging on their function. However, the increased expression of these genes in the villous epithelium of aged mice suggested a disturbed distribution of Paneth cells in the aged intestine. Aging effects on Paneth cells negatively impact on the regenerative ability of the gut epithelium and could indirectly impede M cell differentiation. Thus, restoring Paneth cell function may represent a novel means to improve M cell differentiation in the aging intestine and increase mucosal vaccination efficacy in the elderly.
Insights
Aging impairs gut mucosal immunity, reducing M cell function and increasing infection susceptibility in the elderly. Restoring Paneth cell function may enhance gut immunity and vaccine efficacy in older adults.
Area of Science:
- Immunology
- Gastroenterology
- Aging Research
Background:
- Aging leads to immunosenescence, increasing elderly susceptibility to infections.
- Reduced M cell maturation in Peyer's patches impairs antigen sampling.
- ACE2 receptor expression increases in aged gut epithelium.
Purpose of the Study:
- Investigate aging effects on gut mucosal immunity, focusing on M cells and Paneth cells.
- Determine if aged Peyer's patches are more susceptible to SARS-CoV-2 infection.
- Explore strategies to improve mucosal immunity in the elderly.
Main Methods:
- Co-expression analysis of mRNA-seq data from aged mouse Peyer's patches and ileum.
- Gene expression profiling of FAE, M cells, and Paneth cells.
- Analysis of ACE2 receptor expression in aged gut epithelium.
Main Results:
- Down-regulation of FAE and M cell-related genes in aged Peyer's patches.
- Increased ACE2 expression in aged FAE, suggesting higher SARS-CoV-2 susceptibility.
- Reduced Paneth cell-related gene expression and altered distribution in aged ileum.
Conclusions:
- Aging compromises gut mucosal immunity by affecting M cell differentiation and Paneth cell function.
- Restoring Paneth cell function could enhance M cell differentiation and mucosal vaccine efficacy in the elderly.
- Aged gut epithelium may have increased susceptibility to SARS-CoV-2 infection.
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