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Epithelial mesenchymal transition (EMT): a universal process in lung diseases with implications for cystic fibrosis pathophysiology
by
Parsons, David
, Farrow, Nigel
, Donnelley, Martin
, Rout-Pitt, Nathan
in
Asthma
/ Bone marrow
/ Care and treatment
/ Cell adhesion & migration
/ Cell growth
/ Cell migration
/ Chemotherapy
/ Chlorides
/ Chronic obstructive pulmonary disease
/ Cystic fibrosis
/ Dehydration
/ Diseases
/ E-cadherin
/ Epithelial cells
/ Epithelial mesenchymal transition
/ Epithelium
/ Extracellular matrix
/ Fibroblasts
/ Fibronectin
/ Fibrosis
/ Genetic disorders
/ Genotype & phenotype
/ Inflammation
/ Ion transport
/ Kinases
/ Lung
/ Lung diseases
/ Medicine
/ Medicine & Public Health
/ Mesenchyme
/ Metastasis
/ Mutation
/ N-Cadherin
/ Obstructive lung disease
/ Phenotypes
/ Pneumology/Respiratory System
/ Protein transport
/ Proteins
/ Pulmonary fibrosis
/ Respiratory tract
/ Review
/ Snail protein
/ Stem cells
/ Tight junctions
/ Transcription factors
/ Transplants & implants
/ Vimentin
2018
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Epithelial mesenchymal transition (EMT): a universal process in lung diseases with implications for cystic fibrosis pathophysiology
by
Parsons, David
, Farrow, Nigel
, Donnelley, Martin
, Rout-Pitt, Nathan
in
Asthma
/ Bone marrow
/ Care and treatment
/ Cell adhesion & migration
/ Cell growth
/ Cell migration
/ Chemotherapy
/ Chlorides
/ Chronic obstructive pulmonary disease
/ Cystic fibrosis
/ Dehydration
/ Diseases
/ E-cadherin
/ Epithelial cells
/ Epithelial mesenchymal transition
/ Epithelium
/ Extracellular matrix
/ Fibroblasts
/ Fibronectin
/ Fibrosis
/ Genetic disorders
/ Genotype & phenotype
/ Inflammation
/ Ion transport
/ Kinases
/ Lung
/ Lung diseases
/ Medicine
/ Medicine & Public Health
/ Mesenchyme
/ Metastasis
/ Mutation
/ N-Cadherin
/ Obstructive lung disease
/ Phenotypes
/ Pneumology/Respiratory System
/ Protein transport
/ Proteins
/ Pulmonary fibrosis
/ Respiratory tract
/ Review
/ Snail protein
/ Stem cells
/ Tight junctions
/ Transcription factors
/ Transplants & implants
/ Vimentin
2018
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Epithelial mesenchymal transition (EMT): a universal process in lung diseases with implications for cystic fibrosis pathophysiology
by
Parsons, David
, Farrow, Nigel
, Donnelley, Martin
, Rout-Pitt, Nathan
in
Asthma
/ Bone marrow
/ Care and treatment
/ Cell adhesion & migration
/ Cell growth
/ Cell migration
/ Chemotherapy
/ Chlorides
/ Chronic obstructive pulmonary disease
/ Cystic fibrosis
/ Dehydration
/ Diseases
/ E-cadherin
/ Epithelial cells
/ Epithelial mesenchymal transition
/ Epithelium
/ Extracellular matrix
/ Fibroblasts
/ Fibronectin
/ Fibrosis
/ Genetic disorders
/ Genotype & phenotype
/ Inflammation
/ Ion transport
/ Kinases
/ Lung
/ Lung diseases
/ Medicine
/ Medicine & Public Health
/ Mesenchyme
/ Metastasis
/ Mutation
/ N-Cadherin
/ Obstructive lung disease
/ Phenotypes
/ Pneumology/Respiratory System
/ Protein transport
/ Proteins
/ Pulmonary fibrosis
/ Respiratory tract
/ Review
/ Snail protein
/ Stem cells
/ Tight junctions
/ Transcription factors
/ Transplants & implants
/ Vimentin
2018
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Epithelial mesenchymal transition (EMT): a universal process in lung diseases with implications for cystic fibrosis pathophysiology
Journal Article
Epithelial mesenchymal transition (EMT): a universal process in lung diseases with implications for cystic fibrosis pathophysiology
2018
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Overview
Cystic Fibrosis (CF) is a genetic disorder that arises due to mutations in the Cystic Fibrosis Transmembrane Conductance Regulator gene, which encodes for a protein responsible for ion transport out of epithelial cells. This leads to a disruption in transepithelial Cl-, Na + and HCO
3
− ion transport and the subsequent dehydration of the airway epithelium, resulting in infection, inflammation and development of fibrotic tissue. Unlike in CF, fibrosis in other lung diseases including asthma, chronic obstructive pulmonary disease and idiopathic pulmonary fibrosis has been well characterised. One of the driving forces behind fibrosis is Epithelial Mesenchymal Transition (EMT), a process where epithelial cells lose epithelial proteins including E-Cadherin, which is responsible for tight junctions. The cell moves to a more mesenchymal phenotype as it gains mesenchymal markers such as N-Cadherin (providing the cells with migration potential), Vimentin and Fibronectin (proteins excreted to help form the extracellular matrix), and the fibroblast proliferation transcription factors Snail, Slug and Twist. This review paper explores the EMT process in a range of lung diseases, details the common links that these have to cystic fibrosis, and explores how understanding EMT in cystic fibrosis may open up novel methods of treating patients with cystic fibrosis.
Publisher
BioMed Central,BioMed Central Ltd,Nature Publishing Group,BMC
Subject
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