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A keratan sulfate disaccharide prevents inflammation and the progression of emphysema in murine models

Authors :
Fumi Ota
Tetsuya Hirayama
Congxiao Gao
Jonas Aretz
Hiroki Kabata
Yoshiki Yamaguchi
Manabu Ueno
Reiko Fujinawa
Christoph Rademacher
Peter H. Seeberger
Naoyuki Taniguchi
Kozui Kida
Keiichi Yoshida
Kazuaki Ohtsubo
Toshitaka Maeno
Ahmed E. Hegab
Shinobu Kitazume
Tomoko Betsuyaku
Hiroaki Korekane
Yasuhiko Kizuka
Takayuki Yoshida
Bernd Lepenies
Source :
American journal of physiology. Lung cellular and molecular physiology. 312(2)
Publication Year :
2016

Abstract

Emphysema is a typical component of chronic obstructive pulmonary disease (COPD), a progressive and inflammatory airway disease. However, no effective treatment currently exists. Here, we show that keratan sulfate (KS), one of the major glycosaminoglycans produced in the small airway, decreased in lungs of cigarette smoke-exposed mice. To confirm the protective effect of KS in the small airway, a disaccharide repeating unit of KS designated L4 ([SO3−-6]Galβ1–4[SO3−-6]GlcNAc) was administered to two murine models: elastase-induced-emphysema and LPS-induced exacerbation of a cigarette smoke-induced emphysema. Histological and microcomputed tomography analyses revealed that, in the mouse elastase-induced emphysema model, administration of L4 attenuated alveolar destruction. Treatment with L4 significantly reduced neutrophil influx, as well as the levels of inflammatory cytokines, tissue-degrading enzymes (matrix metalloproteinases), and myeloperoxidase in bronchoalveolar lavage fluid, suggesting that L4 suppressed inflammation in the lung. L4 consistently blocked the chemotactic migration of neutrophils in vitro. Moreover, in the case of the exacerbation model, L4 inhibited inflammatory cell accumulation to the same extent as that of dexamethasone. Taken together, L4 represents one of the potential glycan-based drugs for the treatment of COPD through its inhibitory action against inflammation.

Details

ISSN :
15221504
Volume :
312
Issue :
2
Database :
OpenAIRE
Journal :
American journal of physiology. Lung cellular and molecular physiology
Accession number :
edsair.doi.dedup.....2b79f0a97968bf763eb2e1733a4da7e0