MiR-23b controls TGF-?1 induced airway smooth muscle cell proliferation via TGF?R2/p-Smad3 signals.

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MiR-23b controls TGF-?1 induced airway smooth muscle cell proliferation via TGF?R2/p-Smad3 signals.

Mol Immunol. 2015 Dec 31;70:84-93

Authors: Chen M, Huang L, Zhang W, Shi J, Lin X, Lv Z, Zhang W, Liang R, Jiang S

Abstract
BACKGROUND: Abnormal proliferation of ASM (airway smooth muscle) directly contributes to the airway remodeling during development of lung diseases such as asthma. Here we report that a specific microRNA (miR-23b) controls ASMCs proliferation through directly inhibiting TGF?R2/p-Smad3 pathway.
METHODS: The expression of miR-23b in ASMCs was detected by quantitative real-time polymerase chain reaction (RT-PCR). The effects of miR-23b on cell proliferation and apoptosis of ASMCs were assessed by transient transfection of miR-23b mimics and inhibitor. The target gene of miR-23b and the downstream pathway were further investigated.
RESULTS: Overexpression of miR-23b significantly inhibited TGF-?1-induced ASMCs proliferation and promoted apoptosis. RT-PCR and Western blotting analysis showed miR-23b negatively regulates the expression of TGF?R2 and p-Smad3 in ASMCs. Subsequent analyses demonstrated that TGF?R2 was a direct and functional target of miR-23b, which was validated by the dual luciferase reporter assay.
CONCLUSIONS: MiR-23b may function as an inhibitor of airway smooth muscle cells proliferation through inactivation of TGF?R2/p-Smad3 pathway.

PMID: 26748386 [PubMed – as supplied by publisher]

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Convergence of air pollutant-induced redox-sensitive signals in the dendritic cells contributes to asthma pathogenesis.

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Convergence of air pollutant-induced redox-sensitive signals in the dendritic cells contributes to asthma pathogenesis.

Toxicol Lett. 2015 May 27;

Authors: Li N, Buglak N

Abstract
Exposure to airborne particulate matter (PM) is a major risk factor for allergic airway inflammation such as asthma. Many of the PM components (i.e., polycyclic aromatic hydrocarbons and metals) are redox-active and capable of inducing cellular oxidative stress and injuries including inflammation and cell death. Airway epithelial cells and antigen-presenting dendritic cells (DC) are the major and direct targets of inhaled PM. The epithelial cells can further enhance the DC response to allergen and PM through several immune regulatory cytokines including thymic stromal lymphopoietin (TSLP), IL-33, and IL-25. Among these cytokines TSLP is particularly relevant to the mechanisms by which particulate air pollutants contribute to asthma pathogenesis. Studies have found that TSLP released by PM-exposed human airway epithelial cells could polarize the DC towards a T-helper 2 immune response, which is one of the key immunological mechanisms in asthma pathogenesis. The convergence of regulatory signals generated by PM-induced oxidative stress in DC and the interactions among them may be one of the major mechanisms that are specifically related to the contribution of PM towards asthma pathogenesis.

PMID: 26026960 [PubMed – as supplied by publisher]

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Inflammation signals airway smooth muscle cell proliferation in asthma … – 7thSpace Interactive (press release)

Inflammation signals airway smooth muscle cell proliferation in asthma
7thSpace Interactive (press release)
It is now well recognized that chronic inflammation, as well as airway hyper-responsiveness and remodeling of airway during inflammation, are crucial to asthma. ASM is caused by increased cell proliferation or by hypertrophy of ASM cells depending on

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Immune signals may be target for asthma – Futurity: Research News


IBTimes.co.uk

Immune signals may be target for asthma
Futurity: Research News
Asthma is often triggered by an immune response mounted against an inhaled allergen, which leads to inflammation or swelling in the airways. The new research highlights the connection between Th17 and airway remodeling in asthma, which involves
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