Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Target Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Query: UMLS:C0034067 (
emphysema
)
11,506
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Extracellular superoxide dismutase (
ECSOD
or
SOD3
) is highly expressed in lungs and functions as a scavenger of O(2)(*-). ECM fragmentation, which can be triggered by oxidative stress, participates in the pathogenesis of chronic obstructive pulmonary disease (COPD) through attracting inflammatory cells into the lungs. The level of
SOD3
is significantly decreased in lungs of patients with COPD. However, the role of endogenous
SOD3
in the development/progression of
emphysema
is unknown. We hypothesized that
SOD3
protects against
emphysema
by attenuating oxidative fragmentation of ECM in mice. To test this hypothesis,
SOD3
-deficient,
SOD3
-transgenic, and WT C57BL/6J mice were exposed to cigarette smoke (CS) for 3 d (300 mg total particulate matter/m(3)) to 6 mo (100 mg/m(3) total particulate matter) or by intratracheal elastase injection. Airspace enlargement, lung inflammation, lung mechanical properties, and exercise tolerance were determined at different time points during CS exposure or after elastase administration. CS exposure and elastase administration caused airspace enlargement as well as impaired lung function and exercise capacity in
SOD3
-null mice, which were improved in mice overexpressing
SOD3
and by pharmacological SOD mimetic. These phenomena were associated with
SOD3
-mediated protection against oxidative fragmentation of ECM, such as heparin sulfate and elastin, thereby attenuating lung inflammatory response. In conclusion,
SOD3
attenuates
emphysema
and reduces oxidative fragmentation of ECM in mouse lung. Thus, pharmacological augmentation of
SOD3
in the lung may have a therapeutic potential in the intervention of COPD/
emphysema
.
...
PMID:Extracellular superoxide dismutase protects against pulmonary emphysema by attenuating oxidative fragmentation of ECM. 2071 93