コンテンツへスキップ
Merck
  • Chronic oxidative stress leads to malignant transformation along with acquisition of stem cell characteristics, and epithelial to mesenchymal transition in human renal epithelial cells.

Chronic oxidative stress leads to malignant transformation along with acquisition of stem cell characteristics, and epithelial to mesenchymal transition in human renal epithelial cells.

Journal of cellular physiology (2014-12-30)
Prathap Kumar S Mahalingaiah, Logeswari Ponnusamy, Kamaleshwar P Singh
要旨

Oxidative injury to cellular macromolecules has been suggested as a common pathway shared by multiple etiological factors for kidney cancer. Whether the chronic oxidative stress alone is sufficient to induce malignant transformation in human kidney cells is not clear. Therefore, the objective of this study was to evaluate the effect of H2O2-induced chronic oxidative stress on growth, and malignant transformation of HK-2 normal kidney epithelial cells. This study revealed that chronic oxidative stress causes increased growth and neoplastic transformation in normal kidney epithelial cells at non-cytotoxic dose and increased adaptation to cytotoxic level. This was confirmed by gene expression changes, cell cycle analysis, anchorage independent growth assay and in vivo tumorigenicity in nude mice. Stem cells characteristics as revealed by up-regulation of stem cell marker genes, and morphological changes indicative of EMT with up regulation of mesenchymal markers were also observed in cells exposed to chronic oxidative stress. Antioxidant NAC did not reverse the chronic oxidative stress-induced growth, and adaptation suggesting that perturbed biological function in these cells are permanent. Partial reversal of oxidative stress-induced growth, and adaptation by silencing of Oct 4 and Snail1, respectively, suggest that these changes are mediated by acquisition of stem cell and EMT characteristics. In summary, this study for the first time suggests that chronic exposure to elevated levels of oxidative stress is sufficient to induce malignant transformation in kidney epithelial cells through acquisition of stem cell characteristics. Additionally, the EMT plays an important role in increased adaptive response of renal cells to oxidative stress.

材料
製品番号
ブランド
製品内容

Sigma-Aldrich
N-アセチル-L-システイン, suitable for cell culture, BioReagent
Sigma-Aldrich
N-アセチル-L-システイン, Sigma Grade, ≥99% (TLC), powder
Sigma-Aldrich
エチレンジアミン四酢酸, ACS reagent, 99.4-100.6%, powder
Sigma-Aldrich
エチレンジアミン四酢酸 溶液, 0.02% in DPBS (0.5 mM), sterile-filtered, BioReagent, suitable for cell culture
Sigma-Aldrich
エチレンジアミン四酢酸, anhydrous, crystalline, BioReagent, suitable for cell culture
Sigma-Aldrich
エチレンジアミン四酢酸, 99.995% trace metals basis
Sigma-Aldrich
エチレンジアミン四酢酸, BioUltra, anhydrous, ≥99% (titration)
Sigma-Aldrich
エチレンジアミン四酢酸, purified grade, ≥98.5%, powder
Sigma-Aldrich
過酸化水素 溶液, JIS special grade, 30.0-35.5%
Sigma-Aldrich
過酸化水素 溶液, SAJ first grade, ≥30.0%
Sigma-Aldrich
N-アセチル-L-システイン, BioXtra, ≥99% (TLC)
Sigma-Aldrich
N-アセチル-L-システイン, SAJ special grade, 98.0-102.0%
Sigma-Aldrich
エチレンジアミン四酢酸, SAJ special grade, ≥99.0%
Sigma-Aldrich
アミロイドタンパク質非Aβ成分, ≥80% (HPLC)
Sigma-Aldrich
MISSION® esiRNA, targeting human POU5F1 (2)
Sigma-Aldrich
MISSION® esiRNA, targeting human SNAI1
Sigma-Aldrich
MISSION® esiRNA, targeting human POU5F1 (1)