Literature DB >> 18310962

Involvement of epithelial cell apoptosis in interstitial lung diseases.

Kazuyoshi Kuwano1.   

Abstract

Lung epithelium is the primary site of lung damage in interstitial lung diseases. Although there are various initiating factors, the terminal stages are characterized by pulmonary fibrosis. Conventional therapy consisting of glucocorticoids or immunosuppressive drugs is usually ineffective. Epithelial cell apoptosis have been considered to be initial events in interstitial lung diseases. The death receptor-mediated signaling pathway directly induces caspase activation and apoptosis. Other stresses induce the release of cytochrome from mitochondria and caspase activation. Endoplasmic reticulum stress also induces apoptosis. Epithelial cell death is followed by remodeling processes, which consist of epithelial and fibroblast activation, cytokine production, activation of the coagulation pathway, neoangiogenesis, re-epithelialization and fibrosis. Epithelial and mesenchymal interaction plays important roles in these processes. Further understanding of apoptosis signaling may lead to effective strategies against devastating lung diseases. We review the role of epithelial cell apoptosis in the molecular mechanisms of pulmonary fibrosis.

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Year:  2008        PMID: 18310962     DOI: 10.2169/internalmedicine.47.0713

Source DB:  PubMed          Journal:  Intern Med        ISSN: 0918-2918            Impact factor:   1.271


  15 in total

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2.  Mechanical stress induces lung fibrosis by epithelial-mesenchymal transition.

Authors:  Nuria E Cabrera-Benítez; Matteo Parotto; Martin Post; Bing Han; Peter M Spieth; Wei-Erh Cheng; Francisco Valladares; Jesús Villar; Mingayo Liu; Masaaki Sato; Haibo Zhang; Arthur S Slutsky
Journal:  Crit Care Med       Date:  2012-02       Impact factor: 7.598

3.  Endoplasmic reticulum stress, a new wrestler, in the pathogenesis of idiopathic pulmonary fibrosis.

Authors:  Lei Zhang; Yi Wang; Nuruliarizki Shinta Pandupuspitasari; Guorao Wu; Xudong Xiang; Quan Gong; Weining Xiong; Cong-Yi Wang; Ping Yang; Boxu Ren
Journal:  Am J Transl Res       Date:  2017-02-15       Impact factor: 4.060

4.  Acid sphingomyelinase deficiency attenuates bleomycin-induced lung inflammation and fibrosis in mice.

Authors:  Rajwinder Dhami; Xingxuan He; Edward H Schuchman
Journal:  Cell Physiol Biochem       Date:  2010-10-29

5.  Obliterative airway remodelling in transplanted and non-transplanted lungs.

Authors:  Danny Jonigk; Katharina Theophile; Kais Hussein; Oliver Bock; Ulrich Lehmann; Clemens L Bockmeyer; Jens Gottlieb; Stefan Fischer; Andre Simon; Tobias Welte; Lavinia Maegel; Hans Kreipe; Florian Laenger
Journal:  Virchows Arch       Date:  2010-07-15       Impact factor: 4.064

6.  Recommendations of scRNA-seq Differential Gene Expression Analysis Based on Comprehensive Benchmarking.

Authors:  Jake Gagnon; Lira Pi; Matthew Ryals; Qingwen Wan; Wenxing Hu; Zhengyu Ouyang; Baohong Zhang; Kejie Li
Journal:  Life (Basel)       Date:  2022-06-07

7.  Polycyclic aromatic hydrocarbon components contribute to the mitochondria-antiapoptotic effect of fine particulate matter on human bronchial epithelial cells via the aryl hydrocarbon receptor.

Authors:  Ioana Ferecatu; Marie-Caroline Borot; Camille Bossard; Melanie Leroux; Nicole Boggetto; Francelyne Marano; Armelle Baeza-Squiban; Karine Andreau
Journal:  Part Fibre Toxicol       Date:  2010-07-21       Impact factor: 9.400

8.  Lung epithelial cell focal adhesion kinase signaling inhibits lung injury and fibrosis.

Authors:  Amanda K Wheaton; Manisha Agarwal; Shijing Jia; Kevin K Kim
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2017-03-10       Impact factor: 5.464

9.  Local apoptosis promotes collagen production by monocyte-derived cells in transforming growth factor β1-induced lung fibrosis.

Authors:  Xueyan Peng; Susan K Mathai; Lynne A Murray; Thomas Russell; Ronald Reilkoff; Qingsheng Chen; Mridu Gulati; Jack A Elias; Richard Bucala; Ye Gan; Erica L Herzog
Journal:  Fibrogenesis Tissue Repair       Date:  2011-05-17

10.  Exposure to Iron Oxide Nanoparticles Coated with Phospholipid-Based Polymeric Micelles Induces Biochemical and Histopathological Pulmonary Changes in Mice.

Authors:  Mihaela Radu Balas; Ioana Mihaela Din Popescu; Anca Hermenean; Otilia Ludmila Cinteză; Radu Burlacu; Aurel Ardelean; Anca Dinischiotu
Journal:  Int J Mol Sci       Date:  2015-12-10       Impact factor: 5.923

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