Topical application of ochratoxin A causes DNA damage and tumor initiation in mouse skin.

Skin cancer is one of the most common forms of cancer and 2-3 million new cases are being diagnosed globally each year. Along with UV rays, environmental pollutants/chemicals including mycotoxins, contaminants of various foods and feed stuffs, could be one of the aetiological factors of skin cancer....

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Main Authors: Rahul Kumar, Kausar M Ansari, Bhushan P Chaudhari, Alok Dhawan, Premendra D Dwivedi, Swatantra K Jain, Mukul Das
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3468467?pdf=render
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spelling doaj-d840b2ed9f4d43a38edcb98d1dd7c8072020-11-25T01:14:57ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01710e4728010.1371/journal.pone.0047280Topical application of ochratoxin A causes DNA damage and tumor initiation in mouse skin.Rahul KumarKausar M AnsariBhushan P ChaudhariAlok DhawanPremendra D DwivediSwatantra K JainMukul DasSkin cancer is one of the most common forms of cancer and 2-3 million new cases are being diagnosed globally each year. Along with UV rays, environmental pollutants/chemicals including mycotoxins, contaminants of various foods and feed stuffs, could be one of the aetiological factors of skin cancer. In the present study, we evaluated the DNA damaging potential and dermal carcinogenicity of a mycotoxin, ochratoxin A (OTA), with the rationale that dermal exposure to OTA in workers may occur during their involvement in pre and post harvest stages of agriculture. A single topical application of OTA (20-80 µg/mouse) resulted in significant DNA damage along with elevated γ-H2AX level in skin. Alteration in oxidative stress markers such as lipid peroxidation, protein carbonyl, glutathione content and antioxidant enzymes was observed in a dose (20-80 µg/mouse) and time-dependent (12-72 h) manner. The oxidative stress was further emphasized by the suppression of Nrf2 translocation to nucleus following a single topical application of OTA (80 µg/mouse) after 24 h. OTA (80 µg/mouse) application for 12-72 h caused significant enhancement in- (a) reactive oxygen species generation, (b) activation of ERK1/2, p38 and JNK MAPKs, (c) cell cycle arrest at G0/G1 phase (37-67%), (d) induction of apoptosis (2.0-11.0 fold), (e) expression of p53, p21/waf1, (f) Bax/Bcl-2 ratio, (g) cytochrome c level, (h) activities of caspase 9 (1.2-1.8 fold) and 3 (1.7-2.2 fold) as well as poly ADP ribose polymerase cleavage. In a two-stage mouse skin tumorigenesis protocol, it was observed that a single topical application of OTA (80 µg/mouse) followed by twice weekly application of 12-O-tetradecanoylphorbol-13-acetate for 24 week leads to tumor formation. These results suggest that OTA has skin tumor initiating property which may be related to oxidative stress, MAPKs signaling and DNA damage.http://europepmc.org/articles/PMC3468467?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Rahul Kumar
Kausar M Ansari
Bhushan P Chaudhari
Alok Dhawan
Premendra D Dwivedi
Swatantra K Jain
Mukul Das
spellingShingle Rahul Kumar
Kausar M Ansari
Bhushan P Chaudhari
Alok Dhawan
Premendra D Dwivedi
Swatantra K Jain
Mukul Das
Topical application of ochratoxin A causes DNA damage and tumor initiation in mouse skin.
PLoS ONE
author_facet Rahul Kumar
Kausar M Ansari
Bhushan P Chaudhari
Alok Dhawan
Premendra D Dwivedi
Swatantra K Jain
Mukul Das
author_sort Rahul Kumar
title Topical application of ochratoxin A causes DNA damage and tumor initiation in mouse skin.
title_short Topical application of ochratoxin A causes DNA damage and tumor initiation in mouse skin.
title_full Topical application of ochratoxin A causes DNA damage and tumor initiation in mouse skin.
title_fullStr Topical application of ochratoxin A causes DNA damage and tumor initiation in mouse skin.
title_full_unstemmed Topical application of ochratoxin A causes DNA damage and tumor initiation in mouse skin.
title_sort topical application of ochratoxin a causes dna damage and tumor initiation in mouse skin.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Skin cancer is one of the most common forms of cancer and 2-3 million new cases are being diagnosed globally each year. Along with UV rays, environmental pollutants/chemicals including mycotoxins, contaminants of various foods and feed stuffs, could be one of the aetiological factors of skin cancer. In the present study, we evaluated the DNA damaging potential and dermal carcinogenicity of a mycotoxin, ochratoxin A (OTA), with the rationale that dermal exposure to OTA in workers may occur during their involvement in pre and post harvest stages of agriculture. A single topical application of OTA (20-80 µg/mouse) resulted in significant DNA damage along with elevated γ-H2AX level in skin. Alteration in oxidative stress markers such as lipid peroxidation, protein carbonyl, glutathione content and antioxidant enzymes was observed in a dose (20-80 µg/mouse) and time-dependent (12-72 h) manner. The oxidative stress was further emphasized by the suppression of Nrf2 translocation to nucleus following a single topical application of OTA (80 µg/mouse) after 24 h. OTA (80 µg/mouse) application for 12-72 h caused significant enhancement in- (a) reactive oxygen species generation, (b) activation of ERK1/2, p38 and JNK MAPKs, (c) cell cycle arrest at G0/G1 phase (37-67%), (d) induction of apoptosis (2.0-11.0 fold), (e) expression of p53, p21/waf1, (f) Bax/Bcl-2 ratio, (g) cytochrome c level, (h) activities of caspase 9 (1.2-1.8 fold) and 3 (1.7-2.2 fold) as well as poly ADP ribose polymerase cleavage. In a two-stage mouse skin tumorigenesis protocol, it was observed that a single topical application of OTA (80 µg/mouse) followed by twice weekly application of 12-O-tetradecanoylphorbol-13-acetate for 24 week leads to tumor formation. These results suggest that OTA has skin tumor initiating property which may be related to oxidative stress, MAPKs signaling and DNA damage.
url http://europepmc.org/articles/PMC3468467?pdf=render
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