miR-17 and -21 in intercellular communication via exosomes in allergic airway inflammation

S. Bartel (Borstel, Germany)

Source: ERS Lung Science Conference 2016
Number: 3
Disease area: Airway diseases

PDF journal article, handout or slides

Rating: 0
You must login to grade this presentation.

Share or cite this content

Citations should be made in the following way:
S. Bartel (Borstel, Germany). miR-17 and -21 in intercellular communication via exosomes in allergic airway inflammation. ERS Lung Science Conference 2016

You must login to share this Presentation/Article on Twitter, Facebook, LinkedIn or by email.

Member's Comments

No comment yet.
You must Login to comment this presentation.


Related content which might interest you:
The role of the epithelial barrier in allergic airway inflammation
Source: Annual Congress 2011 - New mechanisms in airway disease
Year: 2011

P-selectin expression in chronic allergic airway inflammation
Source: Eur Respir J 2001; 18: Suppl. 33, 271s
Year: 2001

ILC2s in allergic airway inflammation
Source: International Congress 2014 – Highlights from the Lung Science Conference 2014
Year: 2014



CCL6 produced by eosinophils drives allergic airway inflammation in mice
Source: International Congress 2019 – Modelling and monitoring of airway diseases
Year: 2019

Role of IL-33 signaling in pollutant-induced allergic airway inflammation
Source: International Congress 2018 – Translational models of the immunopathology that underlies airway obstructive diseases
Year: 2018


ADAM-8 metalloproteinase drives acute allergen-induced airway inflammation
Source: Annual Congress 2010 - Animal models of asthma and lung inflammation
Year: 2010

Dendritic cells-nerve interaction in allergic airway inflammation
Source: Annual Congress 2012 - Immunologic mechanisms in COPD and asthma
Year: 2012

High-level expression of PD-L1 by DC suppresses airway inflammation in OVA-induced allergic asthma
Source: Annual Congress 2010 - Animal models of asthma and lung inflammation
Year: 2010

IL-25 secreted from epithelial cells has the potential to promote airway remodeling in asthma
Source: Annual Congress 2012 - Asthma and COPD: understanding through mechanisms
Year: 2012

Role of cytokines and chemokines in bronchial hyperresponsiveness and airway inflammation and remodelling
Source: Annual Congress 2007 - PG1 - Asthma: from bench to bedside
Year: 2007


Airway epithelial cell P2Y6R-Expression is up-regulated during acute and chronic allergic inflammation and contributes via modulating of CXC8 and IL-6 secretion to development of airway remodelling
Source: Annual Congress 2010 - Pre-clinical models of airways disease
Year: 2010



Apolipoprotein A1 regulate innate immune response and tight junction formation in the airway epithelium to promote the resolution of allergic airway inflammation
Source: Annual Congress 2012 - Mechanisms of asthma
Year: 2012

A potential role of P2X7R in allergic airway inflammation
Source: Annual Congress 2010 - Asthma: basic science and clinical studies
Year: 2010

Chemokine expression, apoptosis, and proliferation in the airway mucosa at steroid-mediated resolution of allergic rhinitis
Source: Eur Respir J 2003; 22: Suppl. 45, 32s
Year: 2003

Increased arginase activity contributes to airway remodelling in chronic allergic asthma
Source: Eur Respir J 2011; 38: 318-328
Year: 2011



4-1BBL/4-1BB costimulation alleviates airway inflammation by restoring Treg/Th17 balance in allergic asthma
Source: Annual Congress 2012 - Asthma and COPD: understanding through mechanisms
Year: 2012

Allergen-induced airway remodelling
Source: Eur Respir J 2007; 29: 1020-1032
Year: 2007



Eosinophilopoietins receptors, TGF-ß1 and outer-membrane integrins expression of lung-resident and inflammatory eosinophils in severe non-allergic eosinophilic asthma
Source: International Congress 2019 – Novel mechanisms elucidated by translational studies of asthma
Year: 2019

Rhinovirus infection in nonasthmatic subjects: effects on intrapulmonary airways
Source: Eur Respir J 2002; 20: 274-279
Year: 2002