Role of RhoA/ROCK signaling in lung inflammation and lineage commitment of Mesenchymal stem cells in asthma
Furthermore, MSC migration and differentiation into myofibroblast was inhibited by Fasudil in MSCs treated with either conditioned medium from CRE-induced human epithelial cells in vitro or CRE-induced chronic mouse model with nestin-GFP mice.
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Veröffentlicht in: | Journal of allergy and clinical immunology 2017-02, Vol.139 (2), p.AB184-AB184 |
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container_title | Journal of allergy and clinical immunology |
container_volume | 139 |
creator | Ke, Xia Do, Danh C., PhD Li, Changjun Zhao, Yilin, MD, PhD Qu, Jingjing, MD Wan, Mei Gao, Peisong, MD, PhD |
description | Furthermore, MSC migration and differentiation into myofibroblast was inhibited by Fasudil in MSCs treated with either conditioned medium from CRE-induced human epithelial cells in vitro or CRE-induced chronic mouse model with nestin-GFP mice. |
doi_str_mv | 10.1016/j.jaci.2016.12.602 |
format | Article |
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subjects | Allergy and Immunology Asthma Inflammation Rodents Stem cells |
title | Role of RhoA/ROCK signaling in lung inflammation and lineage commitment of Mesenchymal stem cells in asthma |
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