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ADAM Metallopeptidase Domain 33 (ADAM33): A Promising Target for Asthma
by
Awasthi, Shally
, Tripathi, Priya
, Gao, Peisong
in
ADAM Proteins - genetics
/ ADAM Proteins - metabolism
/ Airway Remodeling - genetics
/ Airway Remodeling - physiology
/ Animals
/ Asthma - drug therapy
/ Asthma - enzymology
/ Asthma - genetics
/ Asthma - therapy
/ Humans
/ Myocytes, Smooth Muscle - cytology
/ Myocytes, Smooth Muscle - metabolism
/ Polymorphism, Genetic - genetics
/ Review
2014
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ADAM Metallopeptidase Domain 33 (ADAM33): A Promising Target for Asthma
by
Awasthi, Shally
, Tripathi, Priya
, Gao, Peisong
in
ADAM Proteins - genetics
/ ADAM Proteins - metabolism
/ Airway Remodeling - genetics
/ Airway Remodeling - physiology
/ Animals
/ Asthma - drug therapy
/ Asthma - enzymology
/ Asthma - genetics
/ Asthma - therapy
/ Humans
/ Myocytes, Smooth Muscle - cytology
/ Myocytes, Smooth Muscle - metabolism
/ Polymorphism, Genetic - genetics
/ Review
2014
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ADAM Metallopeptidase Domain 33 (ADAM33): A Promising Target for Asthma
by
Awasthi, Shally
, Tripathi, Priya
, Gao, Peisong
in
ADAM Proteins - genetics
/ ADAM Proteins - metabolism
/ Airway Remodeling - genetics
/ Airway Remodeling - physiology
/ Animals
/ Asthma - drug therapy
/ Asthma - enzymology
/ Asthma - genetics
/ Asthma - therapy
/ Humans
/ Myocytes, Smooth Muscle - cytology
/ Myocytes, Smooth Muscle - metabolism
/ Polymorphism, Genetic - genetics
/ Review
2014
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ADAM Metallopeptidase Domain 33 (ADAM33): A Promising Target for Asthma
Journal Article
ADAM Metallopeptidase Domain 33 (ADAM33): A Promising Target for Asthma
2014
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Overview
Over the last few years, a significant progress has been made in understanding the role of a disintegrin and metalloproteinase 33 (ADAM33) in asthma. The previous observations for the association with asthma have been replicated in over 33 different population samples worldwide. We and others have performed association analysis and meta-analysis and provided further evidence that several polymorphisms in the ADAM33 are risk factors for asthma, especially in the Asian population. Further, several studies have suggested that alterations in epigenetic marks alter the patterns of DNA methylation of ADAM33 and result in potentially adverse biological effects. Finally, while the biological activities of ADAM33 are as yet unknown, ADAM33 may play a possible role in airway remodeling because of its high expression in epithelium, myo/fibroblasts, and airway smooth muscle cells (ASMCs) and its role in promoting angiogenesis and stimulating cell proliferation and differentiation. Thus, ADAM33 represents a promising target for asthma. However, further investigations are clearly needed to discover functional ADAM33 gene polymorphisms and the role of genetic/epigenetic factors in conferring genetic susceptibility to environmental exposure induced asthma as well as biological function in asthma. This, in turn, will unlock the possibility of ADAM33 as a target for asthma therapy.
Publisher
Hindawi Limiteds,Hindawi Publishing Corporation,Wiley
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