Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Data from Roles of Keap1–Nrf2 System in Upper Aerodigestive Tract Carcinogenesis

View through CrossRef
<div>Abstract<p>Cancers in the upper aerodigestive tract, including cancers of the tongue and the esophagus, are the third leading cause of cancer-related deaths in the world, and oxidative stress is well recognized as one of the major risk factors for carcinogenesis. The Keap1–Nrf2 system plays a critical role in cellular defense against oxidative stress, but little is known about its association with upper aerodigestive tract carcinogenesis. In this study, we examined whether loss of Nrf2-function exacerbates carcinogenesis by using an experimental carcinogenesis model that is induced by 4-nitroquinoline-1-oxide (4NQO). We found that Nrf2-knockout (Nrf2-KO) mice were more susceptible to 4NQO-induced tongue and esophageal carcinogenesis than wild-type mice, which suggests that Nrf2 is important for cancer prevention. We also examined how the suppression of Keap1 function or the induction of Nrf2 activity affected 4NQO carcinogenesis. Keap1-knockdown (Keap1-KD) mice were resistant to 4NQO-induced tongue and esophageal carcinogenesis. Importantly, no growth advantage was observed in tongue tumors in the Keap1-KD mice. These results show that the Keap1–Nrf2 system regulates an important defense mechanism against upper aerodigestive tract carcinogenesis. In addition to several important functions of Nrf2 that lead to cancer chemoprevention, we hypothesize that a mechanical defense of thickened keratin layers may also be a chemopreventive factor because thickened, stratified, squamous epithelium was found on the tongue of Keap1-KD mice. <i>Cancer Prev Res; 6(2); 149–59. ©2012 AACR</i>.</p></div>
Title: Data from Roles of Keap1–Nrf2 System in Upper Aerodigestive Tract Carcinogenesis
Description:
<div>Abstract<p>Cancers in the upper aerodigestive tract, including cancers of the tongue and the esophagus, are the third leading cause of cancer-related deaths in the world, and oxidative stress is well recognized as one of the major risk factors for carcinogenesis.
The Keap1–Nrf2 system plays a critical role in cellular defense against oxidative stress, but little is known about its association with upper aerodigestive tract carcinogenesis.
In this study, we examined whether loss of Nrf2-function exacerbates carcinogenesis by using an experimental carcinogenesis model that is induced by 4-nitroquinoline-1-oxide (4NQO).
We found that Nrf2-knockout (Nrf2-KO) mice were more susceptible to 4NQO-induced tongue and esophageal carcinogenesis than wild-type mice, which suggests that Nrf2 is important for cancer prevention.
We also examined how the suppression of Keap1 function or the induction of Nrf2 activity affected 4NQO carcinogenesis.
Keap1-knockdown (Keap1-KD) mice were resistant to 4NQO-induced tongue and esophageal carcinogenesis.
Importantly, no growth advantage was observed in tongue tumors in the Keap1-KD mice.
These results show that the Keap1–Nrf2 system regulates an important defense mechanism against upper aerodigestive tract carcinogenesis.
In addition to several important functions of Nrf2 that lead to cancer chemoprevention, we hypothesize that a mechanical defense of thickened keratin layers may also be a chemopreventive factor because thickened, stratified, squamous epithelium was found on the tongue of Keap1-KD mice.
<i>Cancer Prev Res; 6(2); 149–59.
©2012 AACR</i>.
</p></div>.

Related Results

A Stress-Responsive Transcriptional Factor NRF2 Activates Hematopoietic Stem Cells
A Stress-Responsive Transcriptional Factor NRF2 Activates Hematopoietic Stem Cells
Abstract KEAP1-NRF2 system is a major regulator of cellular redox balance and xenobiotic metabolism. NRF2 is an inducible transcription factor, and KEAP1 is its nega...
Abstract 1702: Loss of KEAP1 promotes R-loop formation independent of NRF2
Abstract 1702: Loss of KEAP1 promotes R-loop formation independent of NRF2
Abstract This study investigates the mechanism of R-loop formation as a consequence of KEAP1 depletion. R-loops, described as three-stranded nucleic acid structures ...
Loss-of-function mutations in KEAP1 drive lung squamous cell carcinoma progression via KEAP1/NRF2 pathway activation
Loss-of-function mutations in KEAP1 drive lung squamous cell carcinoma progression via KEAP1/NRF2 pathway activation
Abstract Background and Purpose Targeted therapy has led to dramatic change in the treatment of lung adenocarcinoma, but lung squamous cell carcinoma(LSCC) lacks targeted t...
KEAP1‐NRF2/HO‐1 Pathway Promotes Ferroptosis and Neuronal Injury in Schizophrenia
KEAP1‐NRF2/HO‐1 Pathway Promotes Ferroptosis and Neuronal Injury in Schizophrenia
ABSTRACT Background This study investigates the role of the KEAP1‐NRF2/HO‐1 signaling pathway in inducing ferroptosis and...

Back to Top