Low level exposure to monomethyl arsonous acid-induced the over-production of inflammation-related cytokines and the activation of cell signals associated with tumor progression in a urothelial cell model
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Human bladder cancer has been associated with chronic exposure to arsenic. Chronic exposure of an immortalized non-tumorigenic urothelial cell line (UROtsa cells) to arsenicals has transformed these cells to a malignant phenotype, but the involved mechanisms are not fully understood. Chronic inflammation has been linked with cancer development mainly because many pro-inflammatory cytokines, growth factors as well as angiogenic chemokines have been found in tumors.In this study the chronology of inflammatory cytokines production was profiled in UROtsa cells chronically exposed to the toxic arsenic metabolite, monomethylarsonous acid [50 nM MMA(III)] to know the role of inflammation in cell transformation. Acute 50 nM MMA(III) exposure induced over-production of many pro-inflammatory cytokines as soon as 12 h after acute exposure. The same cytokines remain over-regulated after chronic exposure to 50 nM MMA(III), especially after 3 mo exposure. At 3 mo exposure the sustained production of cytokines like IL-1, IL-6, IL-8 and TNF is coincident with the appearance of characteristics associated with cell transformation seen in other arsenic-UROtsa studies. The sustained and increased activation of NFκB and c-Jun is also present along the transformation process and the phosphorylated proteins p38 MAPK and ERK 1/2 are increased also through the time line. Taken together these results support the notion that chronic inflammation is associated within MMA(III)-induced cell transformation and may act as a promoting factor in UROtsa cell transformation. © 2009 Elsevier Inc.
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Arsenic; Bladder cancer; Inflammation; Monomethylarsonous acid; Urothelial cells cytokine; immunoglobulin enhancer binding protein; interleukin 1; interleukin 6; interleukin 8; macrophage migration inhibition factor; mitogen activated protein kinase 1; mitogen activated protein kinase 3; mitogen activated protein kinase p38; monomethylarsonous acid; organoarsenic derivative; STAT3 protein; stress activated protein kinase; tumor necrosis factor; unclassified drug; article; cell line; cell survival; cell transformation; controlled study; cytokine production; enzyme linked immunosorbent assay; exposure; human; human cell; inflammation; protein expression; tumor growth; urothelium; Cell Line, Transformed; Cell Transformation, Neoplastic; Cytokines; Humans; Inflammation Mediators; Organometallic Compounds; Signal Transduction; Urinary Bladder Neoplasms; Urothelium
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