
Role of antimicrobial peptides in periodontal innate defense mechanism
Author(s) -
Ashank Mishra,
Bagalkotkr Apeksha,
Pradeep Koppolu,
Swapna Lingam
Publication year - 2015
Publication title -
journal of oral research and review
Language(s) - English
Resource type - Journals
eISSN - 2394-2541
pISSN - 2249-4987
DOI - 10.4103/2249-4987.172500
Subject(s) - antimicrobial peptides , mechanism (biology) , innate immune system , antimicrobial , microbiology and biotechnology , chemistry , medicine , immunology , biology , immune system , physics , quantum mechanics
The periodontal epithelium neighboring the tooth is precise to form a seal and attachment around the tooth. This exclusive function imparts unique challenges to the tissue and leads to certain vulnerabilities allied with periodontal disease, particularly in view of the continual exposure to the bacterial biofilm (dental plaque) that form that is formed on the tooth surface at the junction of the soft tissue. It is obvious that oral epithelial cells can counter unbroken microbial challenges from dental plaque by the production of antimicrobial peptides (AMPs), chemokines and cytokines that boost inflammation and immune response in periodontal tissues. AMPs are early responders of the innate immune system that search and destroy invading pathogens. The large variety of AMPs presumably allows for an effective response to the large variety of microorganisms that invade the mouth and airways. The present paper portrays the association between altered expression of AMPs and some types of periodontitis along with AMPs and their clinical significance in other oral diseases