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PMID: 25804888 Published · ppublish English

Chronic inorganic arsenic exposure in vitro induces a cancer cell phenotype in human peripheral lung epithelial cells.

Toxicology and applied pharmacology ·Vol. 286 ·No. 1 ·2015-08-05

Person Rachel J, Ngalame Ntube N Olive, Makia Ngome L, Bell Matthew W, Waalkes Michael P, Tokar Erik J

Abstract

Inorganic arsenic is a human lung carcinogen. We studied the ability of chronic inorganic arsenic (2 μM; as sodium arsenite) exposure to induce a cancer phenotype in the immortalized, non-tumorigenic human lung peripheral epithelial cell line, HPL-1D. After 38 weeks of continuous arsenic exposure, secreted matrix metalloproteinase-2 (MMP2) activity increased to over 200% of control, levels linked to arsenic-induced cancer phenotypes in other cell lines. The invasive capacity of these chronic arsenic-treated lung epithelial (CATLE) cells increased to 320% of control and colony formation increased to 280% of control. CATLE cells showed enhanced proliferation in serum-free media indicative of autonomous growth. Compared to control cells, CATLE cells showed reduced protein expression of the tumor suppressor gene PTEN (decreased to 26% of control) and the putative tumor suppressor gene SLC38A3 (14% of control). Morphological evidence of epithelial-to-mesenchymal transition (EMT) occurred in CATLE cells together with appropriate changes in expression of the EMT markers vimentin (VIM; increased to 300% of control) and e-cadherin (CDH1; decreased to 16% of control). EMT is common in carcinogenic transformation of epithelial cells. CATLE cells showed increased KRAS (291%), ERK1/2 (274%), phosphorylated ERK (p-ERK; 152%), and phosphorylated AKT1 (p-AKT1; 170%) protein expression. Increased transcript expression of metallothioneins, MT1A and MT2A and the stress response genes HMOX1 (690%) and HIF1A (247%) occurred in CATLE cells possibly in adaptation to chronic arsenic exposure. Thus, arsenic induced multiple cancer cell characteristics in human peripheral lung epithelial cells. This model may be useful to assess mechanisms of arsenic-induced lung cancer.

Keywords
Adaptation Human lung cells Inorganic arsenic KRAS Lung cancer Transformation
MeSH 主题词
Adenocarcinoma Adenocarcinoma of Lung Arsenic/toxicity Carcinogens/toxicity Cell Line, Tumor Cells, Cultured Epithelial Cells/drug effects,physiology Epithelial-Mesenchymal Transition/drug effects Humans Lung Neoplasms Metallothionein/metabolism Mitogen-Activated Protein Kinase 1/metabolism Mitogen-Activated Protein Kinase 3/metabolism Phenotype Proto-Oncogene Proteins/metabolism Proto-Oncogene Proteins p21(ras) ras Proteins/metabolism
Article Info
Journal
Toxicology and applied pharmacology
Abbr.
Toxicol Appl Pharmacol
Published
2015-08-05
Indexed
2015-05-25
Updated
2016-11-25
Language
English
Country/Region
United States
NLM ID
0416575
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