-
1
-
-
0035253825
-
Predictive assays: Will they ever have a role in the clinic?
-
DOI 10.1016/S0360-3016(00)01469-3, PII S0360301600014693
-
L. Peters, and M. McKay Predictive assays: will they ever have a role in the clinic? Int. J. Radiat. Oncol. Biol. Phys. 49 2001 501 504 (Pubitemid 32120248)
-
(2001)
International Journal of Radiation Oncology Biology Physics
, vol.49
, Issue.2
, pp. 501-504
-
-
Peters, L.1
McKay, M.2
-
2
-
-
7944238041
-
Redox-sensitive signaling factors and antioxidants: How tumor cells respond to ionizing radiation
-
D. Gius Redox-sensitive signaling factors and antioxidants: how tumor cells respond to ionizing radiation J. Nutr. 134 2004 3213S 3214S (Pubitemid 39470121)
-
(2004)
Journal of Nutrition
, vol.134
, Issue.11
-
-
Gius, D.1
-
3
-
-
7944223434
-
Increased expression of antioxidant enzymes in radioresistant variant from U251 human glioblastoma cell line
-
H.C. Lee, D.W. Kim, K.Y. Jung, I.C. Park, M.J. Park, M.S. Kim, S.H. Woo, C.H. Rhee, H. Yoo, S.H. Lee, and S.I. Hong Increased expression of antioxidant enzymes in radioresistant variant from U251 human glioblastoma cell line Int. J. Mol. Med. 13 2004 883 887
-
(2004)
Int. J. Mol. Med.
, vol.13
, pp. 883-887
-
-
Lee, H.C.1
Kim, D.W.2
Jung, K.Y.3
Park, I.C.4
Park, M.J.5
Kim, M.S.6
Woo, S.H.7
Rhee, C.H.8
Yoo, H.9
Lee, S.H.10
Hong, S.I.11
-
4
-
-
67649402187
-
The Nrf2-antioxidant response element signaling pathway and its activation by oxidative stress
-
T. Nguyen, P. Nioi, and C.B. Pickett The Nrf2-antioxidant response element signaling pathway and its activation by oxidative stress J. Biol. Chem. 284 2009 13291 13295
-
(2009)
J. Biol. Chem.
, vol.284
, pp. 13291-13295
-
-
Nguyen, T.1
Nioi, P.2
Pickett, C.B.3
-
5
-
-
77956915802
-
When NRF2 talks, who's listening?
-
N. Wakabayashi, S.L. Slocum, J.J. Skoko, S. Shin, and T.W. Kensler When NRF2 talks, who's listening? Antioxid. Redox Signal. 13 2010 1649 1663
-
(2010)
Antioxid. Redox Signal.
, vol.13
, pp. 1649-1663
-
-
Wakabayashi, N.1
Slocum, S.L.2
Skoko, J.J.3
Shin, S.4
Kensler, T.W.5
-
6
-
-
76649089973
-
Loss of Kelch-like ECH-associated protein 1 function in prostate cancer cells causes chemoresistance and radioresistance and promotes tumor growth
-
P. Zhang, A. Singh, S. Yegnasubramanian, D. Esopi, P. Kombairaju, M. Bodas, H. Wu, S.G. Bova, and S. Biswal Loss of Kelch-like ECH-associated protein 1 function in prostate cancer cells causes chemoresistance and radioresistance and promotes tumor growth Mol. Cancer Ther. 9 2010 336 346
-
(2010)
Mol. Cancer Ther.
, vol.9
, pp. 336-346
-
-
Zhang, P.1
Singh, A.2
Yegnasubramanian, S.3
Esopi, D.4
Kombairaju, P.5
Bodas, M.6
Wu, H.7
Bova, S.G.8
Biswal, S.9
-
7
-
-
77958129306
-
Gain of Nrf2 function in non-small-cell lung cancer cells confers radioresistance
-
A. Singh, M. Bodas, N. Wakabayashi, F. Bunz, and S. Biswal Gain of Nrf2 function in non-small-cell lung cancer cells confers radioresistance Antioxid. Redox Signal. 13 2010 1627 1637
-
(2010)
Antioxid. Redox Signal.
, vol.13
, pp. 1627-1637
-
-
Singh, A.1
Bodas, M.2
Wakabayashi, N.3
Bunz, F.4
Biswal, S.5
-
8
-
-
80053439769
-
NRF2 mutation confers malignant potential and resistance to chemoradiation therapy in advanced esophageal squamous cancer
-
T. Shibata, A. Kokubu, S. Saito, M. Narisawa-Saito, H. Sasaki, K. Aoyagi, Y. Yoshimatsu, Y. Tachimori, R. Kushima, T. Kiyono, and M. Yamamoto NRF2 mutation confers malignant potential and resistance to chemoradiation therapy in advanced esophageal squamous cancer Neoplasia 13 2011 864 873
-
(2011)
Neoplasia
, vol.13
, pp. 864-873
-
-
Shibata, T.1
Kokubu, A.2
Saito, S.3
Narisawa-Saito, M.4
Sasaki, H.5
Aoyagi, K.6
Yoshimatsu, Y.7
Tachimori, Y.8
Kushima, R.9
Kiyono, T.10
Yamamoto, M.11
-
9
-
-
0034220882
-
Radiation-induced apoptosis: Predictive and therapeutic significance in radiotherapy of prostate cancer (Review)
-
M.J. Szostak, and N. Kyprianou Radiation-induced apoptosis: predictive and therapeutic significance in radiotherapy of prostate cancer (Review) Oncol. Rep. 7 2000 699 706
-
(2000)
Oncol. Rep.
, vol.7
, pp. 699-706
-
-
Szostak, M.J.1
Kyprianou, N.2
-
10
-
-
80052731775
-
Nuclear factor erythroid 2-related factor-2 activity controls 4-hydroxynonenal metabolism and activity in prostate cancer cells
-
P. Pettazzoni, E. Ciamporcero, C. Medana, S. Pizzimenti, F. Dal Bello, V.G. Minero, C. Toaldo, R. Minelli, K. Uchida, M.U. Dianzani, R. Pili, and G. Barrera Nuclear factor erythroid 2-related factor-2 activity controls 4-hydroxynonenal metabolism and activity in prostate cancer cells Free Radic. Biol. Med. 51 2011 1610 1618
-
(2011)
Free Radic. Biol. Med.
, vol.51
, pp. 1610-1618
-
-
Pettazzoni, P.1
Ciamporcero, E.2
Medana, C.3
Pizzimenti, S.4
Dal Bello, F.5
Minero, V.G.6
Toaldo, C.7
Minelli, R.8
Uchida, K.9
Dianzani, M.U.10
Pili, R.11
Barrera, G.12
-
11
-
-
79953297717
-
Enhanced radiosensitivity of androgen-resistant prostate cancer: AZD1152-mediated Aurora kinase B inhibition
-
K.J. Niermann, L. Moretti, N.J. Giacalone, Y. Sun, S.M. Schleicher, P. Kopsombut, L.R. Mitchell, K.W. Kim, and B. Lu Enhanced radiosensitivity of androgen-resistant prostate cancer: AZD1152-mediated Aurora kinase B inhibition Radiat. Res. 175 2011 444 451
-
(2011)
Radiat. Res.
, vol.175
, pp. 444-451
-
-
Niermann, K.J.1
Moretti, L.2
Giacalone, N.J.3
Sun, Y.4
Schleicher, S.M.5
Kopsombut, P.6
Mitchell, L.R.7
Kim, K.W.8
Lu, B.9
-
12
-
-
77952299667
-
Inhibition of p21-activated kinase 6 (PAK6) increases radiosensitivity of prostate cancer cells
-
M. Zhang, M. Siedow, G. Saia, and A. Chakravarti Inhibition of p21-activated kinase 6 (PAK6) increases radiosensitivity of prostate cancer cells Prostate 70 2010 807 816
-
(2010)
Prostate
, vol.70
, pp. 807-816
-
-
Zhang, M.1
Siedow, M.2
Saia, G.3
Chakravarti, A.4
-
13
-
-
84878219848
-
Radiosensitivity of human prostate cancer cells can be modulated by inhibition of 12-lipoxygenase
-
J. Lovey, D. Nie, J. Tovari, I. Kenessey, J. Timar, M. Kandouz, and K.V. Honn Radiosensitivity of human prostate cancer cells can be modulated by inhibition of 12-lipoxygenase Cancer Lett. 335 2013 495 501
-
(2013)
Cancer Lett.
, vol.335
, pp. 495-501
-
-
Lovey, J.1
Nie, D.2
Tovari, J.3
Kenessey, I.4
Timar, J.5
Kandouz, M.6
Honn, K.V.7
-
14
-
-
34548313955
-
Clonogenic assay of cells in vitro
-
N.A.P. Franken, H.M. Rodermond, J. Stap, J. Haveman, and C. van Bree Clonogenic assay of cells in vitro Nat. Protoc. 1 2006 2315 2319
-
(2006)
Nat. Protoc.
, vol.1
, pp. 2315-2319
-
-
Franken, N.A.P.1
Rodermond, H.M.2
Stap, J.3
Haveman, J.4
Van Bree, C.5
-
15
-
-
84865044015
-
The potential value of the neutral comet assay and the expression of genes associated with DNA damage in assessing the radiosensitivity of tumor cells
-
S. Jayakumar, H.N. Bhilwade, B.N. Pandey, S.K. Sandur, and R.C. Chaubey The potential value of the neutral comet assay and the expression of genes associated with DNA damage in assessing the radiosensitivity of tumor cells Mutat. Res. 748 2012 52 59
-
(2012)
Mutat. Res.
, vol.748
, pp. 52-59
-
-
Jayakumar, S.1
Bhilwade, H.N.2
Pandey, B.N.3
Sandur, S.K.4
Chaubey, R.C.5
-
16
-
-
33745220306
-
Plumbagin (5-hydroxy-2-methyl-1,4-naphthoquinone) suppresses NF-kappaB activation and NF-kappaB-regulated gene products through modulation of p65 and IkappaBalpha kinase activation, leading to potentiation of apoptosis induced by cytokine and chemotherapeutic agents
-
S.K. Sandur, H. Ichikawa, G. Sethi, K.S. Ahn, and B.B. Aggarwal Plumbagin (5-hydroxy-2-methyl-1,4-naphthoquinone) suppresses NF-kappaB activation and NF-kappaB-regulated gene products through modulation of p65 and IkappaBalpha kinase activation, leading to potentiation of apoptosis induced by cytokine and chemotherapeutic agents J. Biol. Chem. 281 2006 17023 17033
-
(2006)
J. Biol. Chem.
, vol.281
, pp. 17023-17033
-
-
Sandur, S.K.1
Ichikawa, H.2
Sethi, G.3
Ahn, K.S.4
Aggarwal, B.B.5
-
17
-
-
79955681022
-
Protective effects of selenocystine against gamma-radiation-induced genotoxicity in Swiss albino mice
-
A. Kunwar, S. Jayakumar, H.N. Bhilwade, P.P. Bag, H. Bhatt, R.C. Chaubey, and K.I. Priyadarsini Protective effects of selenocystine against gamma-radiation-induced genotoxicity in Swiss albino mice Radiat. Environ. Biophys. 50 2011 271 280
-
(2011)
Radiat. Environ. Biophys.
, vol.50
, pp. 271-280
-
-
Kunwar, A.1
Jayakumar, S.2
Bhilwade, H.N.3
Bag, P.P.4
Bhatt, H.5
Chaubey, R.C.6
Priyadarsini, K.I.7
-
18
-
-
2942523092
-
Modification of thymocytes membrane radiooxidative damage and apoptosis by eugenol
-
DOI 10.1615/JEnvPathToxOncol.v23.i2.40
-
B.N. Pandey, and K.P. Mishra Modification of thymocytes membrane radiooxidative damage and apoptosis by eugenol J. Environ. Pathol. Toxicol. Oncol. 23 2004 117 122 (Pubitemid 41724494)
-
(2004)
Journal of Environmental Pathology, Toxicology and Oncology
, vol.23
, Issue.2
, pp. 117-122
-
-
Pandey, B.N.1
Mishra, K.P.2
-
19
-
-
84855826505
-
Diospyrin derivative, an anticancer quinonoid, regulates apoptosis at endoplasmic reticulum as well as mitochondria by modulating cytosolic calcium in human breast carcinoma cells
-
B. Kumar, A. Kumar, S. Ghosh, B.N. Pandey, K.P. Mishra, and B. Hazra Diospyrin derivative, an anticancer quinonoid, regulates apoptosis at endoplasmic reticulum as well as mitochondria by modulating cytosolic calcium in human breast carcinoma cells Biochem. Biophys. Res. Commun. 417 2012 903 909
-
(2012)
Biochem. Biophys. Res. Commun.
, vol.417
, pp. 903-909
-
-
Kumar, B.1
Kumar, A.2
Ghosh, S.3
Pandey, B.N.4
Mishra, K.P.5
Hazra, B.6
-
20
-
-
34548851693
-
Assay for quantitative determination of glutathione and glutathione disulfide levels using enzymatic recycling method
-
I. Rahman, A. Kode, and S.K. Biswas Assay for quantitative determination of glutathione and glutathione disulfide levels using enzymatic recycling method Nat. Protoc. 1 2006 3159 3165
-
(2006)
Nat. Protoc.
, vol.1
, pp. 3159-3165
-
-
Rahman, I.1
Kode, A.2
Biswas, S.K.3
-
21
-
-
84863111668
-
Chemoresistance in prostate cancer cells is regulated by miRNAs and Hedgehog pathway
-
S. Singh, D. Chitkara, R. Mehrazin, S.W. Behrman, R.W. Wake, and R.I. Mahato Chemoresistance in prostate cancer cells is regulated by miRNAs and Hedgehog pathway PLoS One 7 2012 e40021
-
(2012)
PLoS One
, vol.7
, pp. 40021
-
-
Singh, S.1
Chitkara, D.2
Mehrazin, R.3
Behrman, S.W.4
Wake, R.W.5
Mahato, R.I.6
-
22
-
-
8544230666
-
Phosphatidylinositol 3′-kinase activation leads to multidrug resistance protein-1 expression and subsequent chemoresistance in advanced prostate cancer cells
-
DOI 10.1158/0008-5472.CAN-04-1612
-
J.T. Lee Jr., L.S. Steelman, and J.A. McCubrey Phosphatidylinositol 3′-kinase activation leads to multidrug resistance protein-1 expression and subsequent chemoresistance in advanced prostate cancer cells Cancer Res. 64 2004 8397 8404 (Pubitemid 39491779)
-
(2004)
Cancer Research
, vol.64
, Issue.22
, pp. 8397-8404
-
-
Lee Jr., J.T.1
Steelman, L.S.2
McCubrey, J.A.3
-
23
-
-
0036015519
-
Exposure to low-level chemicals and ionizing radiation: Reactive oxygen species and cellular pathways
-
DOI 10.1191/0960327102ht212oa
-
B.E. Lehnert, and R. Iyer Exposure to low-level chemicals and ionizing radiation: reactive oxygen species and cellular pathways Hum. Exp. Toxicol. 21 2002 65 69 (Pubitemid 34591266)
-
(2002)
Human and Experimental Toxicology
, vol.21
, Issue.2
, pp. 65-69
-
-
Lehnert, B.E.1
Iyer, R.2
-
24
-
-
0032030989
-
Role of antioxidant enzymes on ionizing radiation resistance
-
DOI 10.1016/S0891-5849(97)00291-8, PII S0891584997002918
-
J. Sun, Y. Chen, M. Li, and Z. Ge Role of antioxidant enzymes on ionizing radiation resistance Free Radic. Biol. Med. 24 1998 586 593 (Pubitemid 28150477)
-
(1998)
Free Radical Biology and Medicine
, vol.24
, Issue.4
, pp. 586-593
-
-
Sun, J.1
Chen, Y.2
Li, M.3
Ge, Z.4
-
25
-
-
0025302401
-
Role of glutathione in the radiation response of mammalian cells in vitro and in vivo
-
DOI 10.1016/0163-7258(90)90048-7
-
E.A. Bump, and J.M. Brown Role of glutathione in the radiation response of mammalian cells in vitro and in vivo Pharmacol. Ther. 47 1990 117 136 (Pubitemid 20183311)
-
(1990)
Pharmacology and Therapeutics
, vol.47
, Issue.1
, pp. 117-136
-
-
Bump, E.A.1
Brown, J.M.2
-
26
-
-
0030754701
-
Resistance to radiation-induced apoptosis in Bcl-2-expressing cells is reversed by depleting cellular thiols
-
N. Mirkovic, D.W. Voehringer, M.D. Story, D.J. McConkey, T.J. McDonnell, and R.E. Meyn Resistance to radiation-induced apoptosis in Bcl-2-expressing cells is reversed by depleting cellular thiols Oncogene 15 1997 1461 1470 (Pubitemid 27437836)
-
(1997)
Oncogene
, vol.15
, Issue.12
, pp. 1461-1470
-
-
Mirkovic, N.1
Voehringer, D.W.2
Story, M.D.3
McConkey, D.J.4
McDonnell, T.J.5
Meyn, R.E.6
-
27
-
-
79954504166
-
Basic principles and emerging concepts in the redox control of transcription factors
-
R. Brigelius-Flohe, and L. Flohe Basic principles and emerging concepts in the redox control of transcription factors Antioxid. Redox Signal. 15 2011 2335 2381
-
(2011)
Antioxid. Redox Signal.
, vol.15
, pp. 2335-2381
-
-
Brigelius-Flohe, R.1
Flohe, L.2
-
28
-
-
77953977999
-
Low-dose gamma-ray irradiation induces translocation of Nrf2 into nuclear in mouse macrophage RAW264.7 cells
-
M. Tsukimoto, N. Tamaishi, T. Homma, and S. Kojima Low-dose gamma-ray irradiation induces translocation of Nrf2 into nuclear in mouse macrophage RAW264.7 cells J. Radiat. Res. 51 2010 349 353
-
(2010)
J. Radiat. Res.
, vol.51
, pp. 349-353
-
-
Tsukimoto, M.1
Tamaishi, N.2
Homma, T.3
Kojima, S.4
-
29
-
-
33847050801
-
Cell survival responses to environmental stresses via the Keap1-Nrf2-ARE pathway
-
T.W. Kensler, N. Wakabayashi, and S. Biswal Cell survival responses to environmental stresses via the Keap1-Nrf2-ARE pathway Annu. Rev. Pharmacol. Toxicol. 47 2007 89 116
-
(2007)
Annu. Rev. Pharmacol. Toxicol.
, vol.47
, pp. 89-116
-
-
Kensler, T.W.1
Wakabayashi, N.2
Biswal, S.3
-
30
-
-
34248591499
-
Upregulation of thioredoxin system via Nrf2-antioxidant responsive element pathway in adaptive-retinal neuroprotection in vivo and in vitro
-
DOI 10.1016/j.freeradbiomed.2007.03.018, PII S0891584907002146
-
M. Tanito, M.P. Agbaga, and R.E. Anderson Upregulation of thioredoxin system via Nrf2-antioxidant responsive element pathway in adaptive-retinal neuroprotection in vivo and in vitro Free Radic. Biol. Med. 42 2007 1838 1850 (Pubitemid 46754760)
-
(2007)
Free Radical Biology and Medicine
, vol.42
, Issue.12
, pp. 1838-1850
-
-
Tanito, M.1
Agbaga, M.-P.2
Anderson, R.E.3
-
31
-
-
78449270816
-
Ionizing radiation activates the Nrf2 antioxidant response
-
J.T. McDonald, K. Kim, A.J. Norris, E. Vlashi, T.M. Phillips, C. Lagadec, L. Della Donna, J. Ratikan, H. Szelag, L. Hlatky, and W.H. McBride Ionizing radiation activates the Nrf2 antioxidant response Cancer Res. 70 2010 8886 8895
-
(2010)
Cancer Res.
, vol.70
, pp. 8886-8895
-
-
McDonald, J.T.1
Kim, K.2
Norris, A.J.3
Vlashi, E.4
Phillips, T.M.5
Lagadec, C.6
Della Donna, L.7
Ratikan, J.8
Szelag, H.9
Hlatky, L.10
McBride, W.H.11
|