Affiliation:
1. School of Medicine, Jiangsu University, Zhenjiang 212013, Jiangsu, China
2. Department of Applied Biology, University for Development Studies, Navrongo, Ghana, Ghana
Abstract
Background:
Alterations in airway smooth muscle cells cause an increase in their mass and
result in a significant impact on airway remodeling diseases such as asthma and chronic obstructive
pulmonary disease. Several studies have used platelet-derived growth factors to stimulate the
alterations of airway smooth muscle cells.
Objective:
This review discusses the platelet-derived growth factor-stimulated alterations of airway
smooth muscle cells, diversity of inhibitors and inhibitory actions against these alterations and their
related mechanisms, and how this diversity presents an avenue for the development of multifarious
therapeutic targets for airway remodeling diseases especially asthma and chronic obstructive pulmonary
disease.
Methods:
A comprehensive search of PubMed and Medscape database for studies that investigated
the stimulation of the alterations of airway smooth muscle cells in asthma and chronic obstructive
pulmonary disease by platelet-derived growth factors and inhibitions of these alterations.
Results:
Marked platelet-derived growth factor-stimulated alterations of airway smooth muscle cells
are proliferation, migration and proliferative phenotype with diverse inhibitors and inhibitory actions
against these alterations. Inhibitory actions are the result of the activation of protein kinase,
overexpression of Tripartite motif protein, human transporter sub-family ABCA1 protein and
miRNAs, knockdown of an isoform of reticulon 4 and follistatin protein, exogenous applications of
recombinant proteins, supplements and active metabolite of retinoic acid, flavonoid extracts and
polysaccharides extract.
Conclusion:
The multifarious inhibitors and inhibitory actions with varied mechanisms in
platelet-derived growth factors-stimulated alterations of airway smooth muscle cells present a potential
for diverse therapeutic targets for the treatment of airway remodeling diseases.
Publisher
Bentham Science Publishers Ltd.
Subject
Molecular Biology,Biochemistry
Cited by
2 articles.
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