Epithelial barrier and antigen uptake in lymphoepithelium of human adenoids

N Ogasawara, T Kojima, M Go, K Takano… - Acta oto …, 2011 - Taylor & Francis
N Ogasawara, T Kojima, M Go, K Takano, R Kamekura, T Ohkuni, J Koizumi, T Masaki…
Acta oto-laryngologica, 2011Taylor & Francis
Invasion of antigens through the mucosal surface can be prevented by the common mucosal
immune system, including Peyer's patches (PPs) and nasopharyngeal-associated
lymphoreticular tissue (NALT). The adenoids (nasopharyngeal tonsils) comprise one of the
NALTs and constitute the major part of Waldeyer's lymphoid ring in humans. However, the
role of the lymphoepithelium, including M cells and dendritic cells (DCs), in the adenoids is
unknown compared with the epithelium of PPs. NALTs also have unique functions such as …
Abstract
Invasion of antigens through the mucosal surface can be prevented by the common mucosal immune system, including Peyer's patches (PPs) and nasopharyngeal-associated lymphoreticular tissue (NALT). The adenoids (nasopharyngeal tonsils) comprise one of the NALTs and constitute the major part of Waldeyer's lymphoid ring in humans. However, the role of the lymphoepithelium, including M cells and dendritic cells (DCs), in the adenoids is unknown compared with the epithelium of PPs. NALTs also have unique functions such as the barrier of epithelial cells and uptake of antigens by M cells and DCs, and may play a crucial role in airway mucosal immune responses. The lymphoepithelium of adenoids has well-developed tight junctions that play an important role in the barrier function, the same as nasal epithelium but not palatine tonsillar epithelium. Tight junction molecules are expressed in both M cells and DCs as well as epithelial cells, and various antigens may be sampled, transported, and released to lymphocytes through the cells while they maintain the integrity of the epithelial barrier. This review summarizes the recent progress in our understanding of how M cells and DCs control the epithelial barrier in the adenoids.
Taylor & Francis Online