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  4. High MW hyaluronan inhibits smoke inhalation-induced lung injury and improves survival
 
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High MW hyaluronan inhibits smoke inhalation-induced lung injury and improves survival

Journal
Respirology
Journal Volume
15
Journal Issue
7
Pages
1131-1139
ISBN
20874749
Date Issued
2010
Author(s)
PEI-MING HUANG  
Syrkina O.
Yu L.
Dedaj R.
Zhao H.
Shiedlin A.
Liu Y.-Y.
Garg H.
Quinn D.A.
Hales C.A.
DOI
10.1111/j.1440-1843.2010.01829.x
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-77957254789&doi=10.1111%2fj.1440-1843.2010.01829.x&partnerID=40&md5=731d12e01670c923474481da10823c72
https://scholars.lib.ntu.edu.tw/handle/123456789/493571
Abstract
BACKGROUND AND OBJECTIVE: High MW hyaluronan (HMW HA) as opposed to low MW hyaluronan (LMW HA) has been shown to have anti-inflammatory and anti-apoptotic effects. We hypothesized that treatment with HMW HA would block smoke inhalation lung injury by inhibiting smoke-induced lung inflammation and airway epithelial cell apoptosis. METHODS: Anesthetized, intubated male rats were randomly allocated to either control or smoke inhalation injury groups. Rats were treated with 3-mL subcutaneous normal saline solution (sham) or LMW HA (35 kDa) or HMW HA (1600 kDa) 18 h before exposure to 15 min of cotton smoke (n = 5 each). Rats were also treated post smoke inhalation with 1600 kDa HA by intra-peritoneal injection (3 mL) or intra-tracheal nebulization (200 µL). Lung neutrophil infiltration, airway apoptosis, airway mucous plugging and lung injury were assessed 4 h after smoke inhalation injury. RESULTS: Rats pretreated with 1600 kDa HA had significantly less smoke-induced neutrophil infiltration, lung oedema, airway apoptosis and mucous plugging. Pretreatment with 35 kDa HA, in contrast, increased smoke-induced neutrophil infiltration and lung injury score. Intra-tracheal administration of a single dose 1600 kDa HA, but not intra-peritoneal injection, significantly improved survival post smoke inhalation. CONCLUSIONS: High MW hyaluronan (1600 kDa) may prove to be a beneficial therapy for smoke inhalation through inhibition of smoke-induced inflammation, lung oedema, airway epithelial cell apoptosis and airway mucous plugging.
SDGs

[SDGs]SDG3

Type
journal article

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