-
2
-
-
1842612441
-
Molecular determinants of resistance to antiandrogen therapy
-
Chen CD, Welsbie DS, Tran C, Baek SH, Chen R, Vessella R, Rosenfeld MG and Sawyers CL. Molecular determinants of resistance to antiandrogen therapy. Nat Med. 2004; 10(1):33-39.
-
(2004)
Nat Med
, vol.10
, Issue.1
, pp. 33-39
-
-
Chen, C.D.1
Welsbie, D.S.2
Tran, C.3
Baek, S.H.4
Chen, R.5
Vessella, R.6
Rosenfeld, M.G.7
Sawyers, C.L.8
-
3
-
-
1842612442
-
Androgen receptor outwits prostate cancer drugs
-
Isaacs JT and Isaacs WB. Androgen receptor outwits prostate cancer drugs. Nat Med. 2004; 10(1):26-27.
-
(2004)
Nat Med
, vol.10
, Issue.1
, pp. 26-27
-
-
Isaacs, J.T.1
Isaacs, W.B.2
-
4
-
-
34547214787
-
A hierarchical network of transcription factors governs androgen receptordependent prostate cancer growth
-
Wang Q, Li W, Liu XS, Carroll JS, Janne OA, Keeton EK, Chinnaiyan AM, Pienta KJ and Brown M. A hierarchical network of transcription factors governs androgen receptordependent prostate cancer growth. Mol Cell. 2007; 27(3):380-392.
-
(2007)
Mol Cell
, vol.27
, Issue.3
, pp. 380-392
-
-
Wang, Q.1
Li, W.2
Liu, X.S.3
Carroll, J.S.4
Janne, O.A.5
Keeton, E.K.6
Chinnaiyan, A.M.7
Pienta, K.J.8
Brown, M.9
-
5
-
-
77956793432
-
Molecular genetics of prostate cancer: new prospects for old challenges
-
Shen MM and Abate-Shen C. Molecular genetics of prostate cancer: new prospects for old challenges. Genes & development. 2010; 24(18):1967-2000.
-
(2010)
Genes & development
, vol.24
, Issue.18
, pp. 1967-2000
-
-
Shen, M.M.1
Abate-Shen, C.2
-
6
-
-
12344252767
-
Neuroendocrine differentiation in prostate cancer: implications for new treatment modalities
-
Vashchenko N and Abrahamsson PA. Neuroendocrine differentiation in prostate cancer: implications for new treatment modalities. European urology. 2005; 47(2):147-155.
-
(2005)
European urology
, vol.47
, Issue.2
, pp. 147-155
-
-
Vashchenko, N.1
Abrahamsson, P.A.2
-
8
-
-
80053188655
-
PC3 is a cell line characteristic of prostatic small cell carcinoma
-
Tai S, Sun Y, Squires JM, Zhang H, Oh WK, Liang CZ and Huang J. PC3 is a cell line characteristic of prostatic small cell carcinoma. Prostate. 2011; 71(15):1668-1679.
-
(2011)
Prostate
, vol.71
, Issue.15
, pp. 1668-1679
-
-
Tai, S.1
Sun, Y.2
Squires, J.M.3
Zhang, H.4
Oh, W.K.5
Liang, C.Z.6
Huang, J.7
-
9
-
-
65449149109
-
Selective expression of CD44, a putative prostate cancer stem cell marker, in neuroendocrine tumor cells of human prostate cancer
-
Palapattu GS, Wu C, Silvers CR, Martin HB, Williams K, Salamone L, Bushnell T, Huang LS, Yang Q and Huang J. Selective expression of CD44, a putative prostate cancer stem cell marker, in neuroendocrine tumor cells of human prostate cancer. Prostate. 2009; 69(7):787-798.
-
(2009)
Prostate
, vol.69
, Issue.7
, pp. 787-798
-
-
Palapattu, G.S.1
Wu, C.2
Silvers, C.R.3
Martin, H.B.4
Williams, K.5
Salamone, L.6
Bushnell, T.7
Huang, L.S.8
Yang, Q.9
Huang, J.10
-
10
-
-
58149116823
-
CD44 expression is a feature of prostatic small cell carcinoma and distinguishes it from its mimickers
-
Simon RA, di Sant'Agnese PA, Huang LS, Xu H, Yao JL, Yang Q, Liang S, Liu J, Yu R, Cheng L, Oh WK, Palapattu GS, Wei J and Huang J. CD44 expression is a feature of prostatic small cell carcinoma and distinguishes it from its mimickers. Hum Pathol. 2009; 40(2):252-258.
-
(2009)
Hum Pathol
, vol.40
, Issue.2
, pp. 252-258
-
-
Simon, R.A.1
di Sant'Agnese, P.A.2
Huang, L.S.3
Xu, H.4
Yao, J.L.5
Yang, Q.6
Liang, S.7
Liu, J.8
Yu, R.9
Cheng, L.10
Oh, W.K.11
Palapattu, G.S.12
Wei, J.13
Huang, J.14
-
11
-
-
0035698945
-
Neuroendocrine differentiated small cell carcinoma presenting as recurrent prostate cancer after androgen deprivation therapy
-
Miyoshi Y, Uemura H, Kitami K, Satomi Y, Kubota Y and Hosaka M. Neuroendocrine differentiated small cell carcinoma presenting as recurrent prostate cancer after androgen deprivation therapy. BJU Int. 2001; 88(9):982-983.
-
(2001)
BJU Int
, vol.88
, Issue.9
, pp. 982-983
-
-
Miyoshi, Y.1
Uemura, H.2
Kitami, K.3
Satomi, Y.4
Kubota, Y.5
Hosaka, M.6
-
12
-
-
36248995192
-
Neuroendocrine differentiation in prostate cancer: from lab to bedside
-
Cindolo L, Cantile M, Vacherot F, Terry S and de la Taille A. Neuroendocrine differentiation in prostate cancer: from lab to bedside. Urol Int. 2007; 79(4):287-296.
-
(2007)
Urol Int
, vol.79
, Issue.4
, pp. 287-296
-
-
Cindolo, L.1
Cantile, M.2
Vacherot, F.3
Terry, S.4
de la Taille, A.5
-
13
-
-
0031947318
-
Neuroendocrine differentiation in prostatic carcinoma during hormonal treatment
-
Jiborn T, Bjartell A and Abrahamsson PA. Neuroendocrine differentiation in prostatic carcinoma during hormonal treatment. Urology. 1998; 51(4):585-589.
-
(1998)
Urology
, vol.51
, Issue.4
, pp. 585-589
-
-
Jiborn, T.1
Bjartell, A.2
Abrahamsson, P.A.3
-
14
-
-
1842788109
-
Neuroendocrine differentiation in hormone refractory prostate cancer following androgen deprivation therapy
-
Hirano D, Okada Y, Minei S, Takimoto Y and Nemoto N. Neuroendocrine differentiation in hormone refractory prostate cancer following androgen deprivation therapy. Eur Urol. 2004; 45(5):586-592.
-
(2004)
Eur Urol
, vol.45
, Issue.5
, pp. 586-592
-
-
Hirano, D.1
Okada, Y.2
Minei, S.3
Takimoto, Y.4
Nemoto, N.5
-
15
-
-
0041833727
-
Androgen receptor represses the neuroendocrine transdifferentiation process in prostate cancer cells
-
Wright ME, Tsai MJ and Aebersold R. Androgen receptor represses the neuroendocrine transdifferentiation process in prostate cancer cells. Mol Endocrinol. 2003; 17(9):1726-1737.
-
(2003)
Mol Endocrinol
, vol.17
, Issue.9
, pp. 1726-1737
-
-
Wright, M.E.1
Tsai, M.J.2
Aebersold, R.3
-
16
-
-
33645971015
-
Androgen deprivation induces human prostate epithelial neuroendocrine differentiation of androgen-sensitive LNCaP cells
-
Yuan TC, Veeramani S, Lin FF, Kondrikou D, Zelivianski S, Igawa T, Karan D, Batra SK and Lin MF. Androgen deprivation induces human prostate epithelial neuroendocrine differentiation of androgen-sensitive LNCaP cells. Endocr Relat Cancer. 2006; 13(1):151-167.
-
(2006)
Endocr Relat Cancer
, vol.13
, Issue.1
, pp. 151-167
-
-
Yuan, T.C.1
Veeramani, S.2
Lin, F.F.3
Kondrikou, D.4
Zelivianski, S.5
Igawa, T.6
Karan, D.7
Batra, S.K.8
Lin, M.F.9
-
17
-
-
3442881895
-
NE-10 neuroendocrine cancer promotes the LNCaP xenograft growth in castrated mice
-
Jin RJ, Wang Y, Masumori N, Ishii K, Tsukamoto T, Shappell SB, Hayward SW, Kasper S and Matusik RJ. NE-10 neuroendocrine cancer promotes the LNCaP xenograft growth in castrated mice. Cancer research. 2004; 64(15):5489-5495.
-
(2004)
Cancer research
, vol.64
, Issue.15
, pp. 5489-5495
-
-
Jin, R.J.1
Wang, Y.2
Masumori, N.3
Ishii, K.4
Tsukamoto, T.5
Shappell, S.B.6
Hayward, S.W.7
Kasper, S.8
Matusik, R.J.9
-
18
-
-
0028830175
-
Endocrine-paracrine cell types in the prostate and prostatic adenocarcinoma are postmitotic cells
-
Bonkhoff H, Stein U and Remberger K. Endocrine-paracrine cell types in the prostate and prostatic adenocarcinoma are postmitotic cells. Hum Pathol. 1995; 26(2):167-170.
-
(1995)
Hum Pathol
, vol.26
, Issue.2
, pp. 167-170
-
-
Bonkhoff, H.1
Stein, U.2
Remberger, K.3
-
19
-
-
84863992937
-
Androgen-regulated processing of the oncomir miR-27a, which targets Prohibitin in prostate cancer
-
Fletcher CE, Dart DA, Sita-Lumsden A, Cheng H, Rennie PS and Bevan CL. Androgen-regulated processing of the oncomir miR-27a, which targets Prohibitin in prostate cancer. Hum Mol Genet. 2012; 21(14):3112-3127.
-
(2012)
Hum Mol Genet
, vol.21
, Issue.14
, pp. 3112-3127
-
-
Fletcher, C.E.1
Dart, D.A.2
Sita-Lumsden, A.3
Cheng, H.4
Rennie, P.S.5
Bevan, C.L.6
-
20
-
-
84873507539
-
Epigenetic repression of miR-31 disrupts androgen receptor homeostasis and contributes to prostate cancer progression
-
Lin PC, Chiu YL, Banerjee S, Park K, Mosquera JM, Giannopoulou E, Alves P, Tewari AK, Gerstein MB, Beltran H, Melnick AM, Elemento O, Demichelis F and Rubin MA. Epigenetic repression of miR-31 disrupts androgen receptor homeostasis and contributes to prostate cancer progression. Cancer Res. 2013; 73(3):1232-1244.
-
(2013)
Cancer Res
, vol.73
, Issue.3
, pp. 1232-1244
-
-
Lin, P.C.1
Chiu, Y.L.2
Banerjee, S.3
Park, K.4
Mosquera, J.M.5
Giannopoulou, E.6
Alves, P.7
Tewari, A.K.8
Gerstein, M.B.9
Beltran, H.10
Melnick, A.M.11
Elemento, O.12
Demichelis, F.13
Rubin, M.A.14
-
21
-
-
84874309132
-
Identification of novel AR-targeted microRNAs mediating androgen signalling through critical pathways to regulate cell viability in prostate cancer
-
Mo W, Zhang J, Li X, Meng D, Gao Y, Yang S, Wan X, Zhou C, Guo F, Huang Y, Amente S, Avvedimento EV, Xie Y and Li Y. Identification of novel AR-targeted microRNAs mediating androgen signalling through critical pathways to regulate cell viability in prostate cancer. PLoS One. 2013; 8(2):e56592.
-
(2013)
PLoS One
, vol.8
, Issue.2
-
-
Mo, W.1
Zhang, J.2
Li, X.3
Meng, D.4
Gao, Y.5
Yang, S.6
Wan, X.7
Zhou, C.8
Guo, F.9
Huang, Y.10
Amente, S.11
Avvedimento, E.V.12
Xie, Y.13
Li, Y.14
-
22
-
-
70349750196
-
miR-21: an androgen receptor-regulated microRNA that promotes hormone-dependent and hormone-independent prostate cancer growth
-
Ribas J, Ni X, Haffner M, Wentzel EA, Salmasi AH, Chowdhury WH, Kudrolli TA, Yegnasubramanian S, Luo J, Rodriguez R, Mendell JT and Lupold SE. miR-21: an androgen receptor-regulated microRNA that promotes hormone-dependent and hormone-independent prostate cancer growth. Cancer Res. 2009; 69(18):7165-7169.
-
(2009)
Cancer Res
, vol.69
, Issue.18
, pp. 7165-7169
-
-
Ribas, J.1
Ni, X.2
Haffner, M.3
Wentzel, E.A.4
Salmasi, A.H.5
Chowdhury, W.H.6
Kudrolli, T.A.7
Yegnasubramanian, S.8
Luo, J.9
Rodriguez, R.10
Mendell, J.T.11
Lupold, S.E.12
-
23
-
-
0033794201
-
Androgen deprivation induces selective outgrowth of aggressive hormone-refractory prostate cancer clones expressing distinct cellular and molecular properties not present in parental androgen-dependent cancer cells
-
Tso CL, McBride WH, Sun J, Patel B, Tsui KH, Paik SH, Gitlitz B, Caliliw R, van Ophoven A, Wu L, deKernion J and Belldegrun A. Androgen deprivation induces selective outgrowth of aggressive hormone-refractory prostate cancer clones expressing distinct cellular and molecular properties not present in parental androgen-dependent cancer cells. Cancer J. 2000; 6(4):220-233.
-
(2000)
Cancer J
, vol.6
, Issue.4
, pp. 220-233
-
-
Tso, C.L.1
McBride, W.H.2
Sun, J.3
Patel, B.4
Tsui, K.H.5
Paik, S.H.6
Gitlitz, B.7
Caliliw, R.8
van Ophoven, A.9
Wu, L.10
deKernion, J.11
Belldegrun, A.12
-
24
-
-
68749084845
-
Integrated expression profiling and ChIP-seq analyses of the growth inhibition response program of the androgen receptor
-
Lin B, Wang J, Hong X, Yan X, Hwang D, Cho JH, Yi D, Utleg AG, Fang X, Schones DE, Zhao K, Omenn GS and Hood L. Integrated expression profiling and ChIP-seq analyses of the growth inhibition response program of the androgen receptor. PLoS One. 2009; 4(8):e6589.
-
(2009)
PLoS One
, vol.4
, Issue.8
-
-
Lin, B.1
Wang, J.2
Hong, X.3
Yan, X.4
Hwang, D.5
Cho, J.H.6
Yi, D.7
Utleg, A.G.8
Fang, X.9
Schones, D.E.10
Zhao, K.11
Omenn, G.S.12
Hood, L.13
-
25
-
-
58149352800
-
An autoregulatory loop mediated by miR-21 and PDCD4 controls the AP-1 activity in RAS transformation
-
Talotta F, Cimmino A, Matarazzo MR, Casalino L, De Vita G, D'Esposito M, Di Lauro R and Verde P. An autoregulatory loop mediated by miR-21 and PDCD4 controls the AP-1 activity in RAS transformation. Oncogene. 2009; 28(1):73-84.
-
(2009)
Oncogene
, vol.28
, Issue.1
, pp. 73-84
-
-
Talotta, F.1
Cimmino, A.2
Matarazzo, M.R.3
Casalino, L.4
De Vita, G.5
D'Esposito, M.6
Di Lauro, R.7
Verde, P.8
-
26
-
-
58149288673
-
NDRG3 is an androgen regulated and prostate enriched gene that promotes in vitro and in vivo prostate cancer cell growth
-
Wang W, Li Y, Hong A, Wang J, Lin B and Li R. NDRG3 is an androgen regulated and prostate enriched gene that promotes in vitro and in vivo prostate cancer cell growth. Int J Cancer. 2009; 124(3):521-530.
-
(2009)
Int J Cancer
, vol.124
, Issue.3
, pp. 521-530
-
-
Wang, W.1
Li, Y.2
Hong, A.3
Wang, J.4
Lin, B.5
Li, R.6
-
27
-
-
84862828919
-
miR-21 as an independent biochemical recurrence predictor and potential therapeutic target for prostate cancer
-
Li T, Li RS, Li YH, Zhong S, Chen YY, Zhang CM, Hu MM and Shen ZJ. miR-21 as an independent biochemical recurrence predictor and potential therapeutic target for prostate cancer. J Urol. 2012; 187(4):1466-1472.
-
(2012)
J Urol
, vol.187
, Issue.4
, pp. 1466-1472
-
-
Li, T.1
Li, R.S.2
Li, Y.H.3
Zhong, S.4
Chen, Y.Y.5
Zhang, C.M.6
Hu, M.M.7
Shen, Z.J.8
-
28
-
-
11144224065
-
Cyclooxygenase-2 expression: a significant prognostic indicator for patients with colorectal cancer
-
Soumaoro LT, Uetake H, Higuchi T, Takagi Y, Enomoto M and Sugihara K. Cyclooxygenase-2 expression: a significant prognostic indicator for patients with colorectal cancer. Clin Cancer Res. 2004; 10(24):8465-8471.
-
(2004)
Clin Cancer Res
, vol.10
, Issue.24
, pp. 8465-8471
-
-
Soumaoro, L.T.1
Uetake, H.2
Higuchi, T.3
Takagi, Y.4
Enomoto, M.5
Sugihara, K.6
-
29
-
-
0029021971
-
Effects of 5 alpha-reductase inhibitors on intraprostatic androgens in the rat
-
di Salle E, Giudici D, Biagini L, Cominato C, Briatico G and Panzeri A. Effects of 5 alpha-reductase inhibitors on intraprostatic androgens in the rat. J Steroid Biochem Mol Biol. 1995; 53(1-6):381-385.
-
(1995)
J Steroid Biochem Mol Biol
, vol.53
, Issue.1-6
, pp. 381-385
-
-
di Salle, E.1
Giudici, D.2
Biagini, L.3
Cominato, C.4
Briatico, G.5
Panzeri, A.6
-
30
-
-
0032771030
-
A new human prostate carcinoma cell line, 22Rv1
-
Sramkoski RM, Pretlow TG, 2nd, Giaconia JM, Pretlow TP, Schwartz S, Sy MS, Marengo SR, Rhim JS, Zhang D and Jacobberger JW. A new human prostate carcinoma cell line, 22Rv1. In Vitro Cell Dev Biol Anim. 1999; 35(7):403-409.
-
(1999)
In Vitro Cell Dev Biol Anim
, vol.35
, Issue.7
, pp. 403-409
-
-
Sramkoski, R.M.1
Pretlow, T.G.2
Giaconia, J.M.3
Pretlow, T.P.4
Schwartz, S.5
Sy, M.S.6
Marengo, S.R.7
Rhim, J.S.8
Zhang, D.9
Jacobberger, J.W.10
-
31
-
-
0030778457
-
Transdifferentiation of cultured human prostate cancer cells to a neuroendocrine cell phenotype in a hormone-depleted medium
-
Shen R, Dorai T, Szaboles M, Katz AE, Olsson CA and Buttyan R. Transdifferentiation of cultured human prostate cancer cells to a neuroendocrine cell phenotype in a hormone-depleted medium. Urologic oncology. 1997; 3(2):67-75.
-
(1997)
Urologic oncology
, vol.3
, Issue.2
, pp. 67-75
-
-
Shen, R.1
Dorai, T.2
Szaboles, M.3
Katz, A.E.4
Olsson, C.A.5
Buttyan, R.6
-
32
-
-
79956203121
-
Lineage relationship of prostate cancer cell types based on gene expression
-
Pascal LE, Vencio RZ, Vessella RL, Ware CB, Vencio EF, Denyer G and Liu AY. Lineage relationship of prostate cancer cell types based on gene expression. BMC Med Genomics. 2011; 4:46.
-
(2011)
BMC Med Genomics
, vol.4
, pp. 46
-
-
Pascal, L.E.1
Vencio, R.Z.2
Vessella, R.L.3
Ware, C.B.4
Vencio, E.F.5
Denyer, G.6
Liu, A.Y.7
-
33
-
-
20244387835
-
Evidence for the presence of disease-perturbed networks in prostate cancer cells by genomic and proteomic analyses: a systems approach to disease
-
Lin B, White JT, Lu W, Xie T, Utleg AG, Yan X, Yi EC, Shannon P, Khrebtukova I, Lange PH, Goodlett DR, Zhou D, Vasicek TJ and Hood L. Evidence for the presence of disease-perturbed networks in prostate cancer cells by genomic and proteomic analyses: a systems approach to disease. Cancer Res. 2005; 65(8):3081-3091.
-
(2005)
Cancer Res
, vol.65
, Issue.8
, pp. 3081-3091
-
-
Lin, B.1
White, J.T.2
Lu, W.3
Xie, T.4
Utleg, A.G.5
Yan, X.6
Yi, E.C.7
Shannon, P.8
Khrebtukova, I.9
Lange, P.H.10
Goodlett, D.R.11
Zhou, D.12
Vasicek, T.J.13
Hood, L.14
-
34
-
-
84860168795
-
Molecular characterization of neuroendocrine prostate cancer and identification of new drug targets
-
Beltran H, Rickman DS, Park K, Chae SS, Sboner A, MacDonald TY, Wang Y, Sheikh KL, Terry S, Tagawa ST, Dhir R, Nelson JB, de la Taille A, Allory Y, Gerstein MB, Perner S, et al. Molecular characterization of neuroendocrine prostate cancer and identification of new drug targets. Cancer Discov. 2012; 1(6):487-495.
-
(2012)
Cancer Discov
, vol.1
, Issue.6
, pp. 487-495
-
-
Beltran, H.1
Rickman, D.S.2
Park, K.3
Chae, S.S.4
Sboner, A.5
MacDonald, T.Y.6
Wang, Y.7
Sheikh, K.L.8
Terry, S.9
Tagawa, S.T.10
Dhir, R.11
Nelson, J.B.12
de la Taille, A.13
Allory, Y.14
Gerstein, M.B.15
Perner, S.16
-
35
-
-
0032913866
-
Androgen regulation of the cyclin-dependent kinase inhibitor p21 gene through an androgen response element in the proximal promoter
-
Lu S, Liu M, Epner DE, Tsai SY and Tsai MJ. Androgen regulation of the cyclin-dependent kinase inhibitor p21 gene through an androgen response element in the proximal promoter. Mol Endocrinol. 1999; 13(3):376-384.
-
(1999)
Mol Endocrinol
, vol.13
, Issue.3
, pp. 376-384
-
-
Lu, S.1
Liu, M.2
Epner, D.E.3
Tsai, S.Y.4
Tsai, M.J.5
-
36
-
-
77951164018
-
Differential regulation of microRNA stability
-
Bail S, Swerdel M, Liu H, Jiao X, Goff LA, Hart RP and Kiledjian M. Differential regulation of microRNA stability. RNA. 2010; 16(5):1032-1039.
-
(2010)
RNA
, vol.16
, Issue.5
, pp. 1032-1039
-
-
Bail, S.1
Swerdel, M.2
Liu, H.3
Jiao, X.4
Goff, L.A.5
Hart, R.P.6
Kiledjian, M.7
-
37
-
-
79952205258
-
Systematic analysis of microRNAs targeting the androgen receptor in prostate cancer cells
-
Ostling P, Leivonen SK, Aakula A, Kohonen P, Makela R, Hagman Z, Edsjo A, Kangaspeska S, Edgren H, Nicorici D, Bjartell A, Ceder Y, Perala M and Kallioniemi O. Systematic analysis of microRNAs targeting the androgen receptor in prostate cancer cells. Cancer Res. 2011; 71(5):1956-1967.
-
(2011)
Cancer Res
, vol.71
, Issue.5
, pp. 1956-1967
-
-
Ostling, P.1
Leivonen, S.K.2
Aakula, A.3
Kohonen, P.4
Makela, R.5
Hagman, Z.6
Edsjo, A.7
Kangaspeska, S.8
Edgren, H.9
Nicorici, D.10
Bjartell, A.11
Ceder, Y.12
Perala, M.13
Kallioniemi, O.14
-
38
-
-
84883489775
-
Tumor suppressive miR-124 targets androgen receptor and inhibits proliferation of prostate cancer cells
-
Shi XB, Xue L, Ma AH, Tepper CG, Gandour-Edwards R, Kung HJ and Devere White RW. Tumor suppressive miR-124 targets androgen receptor and inhibits proliferation of prostate cancer cells. Oncogene. 2012.
-
(2012)
Oncogene
-
-
Shi, X.B.1
Xue, L.2
Ma, A.H.3
Tepper, C.G.4
Gandour-Edwards, R.5
Kung, H.J.6
Devere White, R.W.7
-
39
-
-
84868011894
-
Inactivation of AR and Notch-1 signaling by miR-34a attenuates prostate cancer aggressiveness
-
Kashat M, Azzouz L, Sarkar SH, Kong D, Li Y and Sarkar FH. Inactivation of AR and Notch-1 signaling by miR-34a attenuates prostate cancer aggressiveness. Am J Transl Res. 2012; 4(4):432-442.
-
(2012)
Am J Transl Res
, vol.4
, Issue.4
, pp. 432-442
-
-
Kashat, M.1
Azzouz, L.2
Sarkar, S.H.3
Kong, D.4
Li, Y.5
Sarkar, F.H.6
-
40
-
-
77954087303
-
Differential androgen receptor signals in different cells explain why androgen-deprivation therapy of prostate cancer fails
-
Niu Y, Chang TM, Yeh S, Ma WL, Wang YZ and Chang C. Differential androgen receptor signals in different cells explain why androgen-deprivation therapy of prostate cancer fails. Oncogene. 2010; 29(25):3593-3604.
-
(2010)
Oncogene
, vol.29
, Issue.25
, pp. 3593-3604
-
-
Niu, Y.1
Chang, T.M.2
Yeh, S.3
Ma, W.L.4
Wang, Y.Z.5
Chang, C.6
-
41
-
-
84864536251
-
In vitro and in vivo prostate cancer metastasis and chemoresistance can be modulated by expression of either CD44 or CD147
-
Hao J, Madigan MC, Khatri A, Power CA, Hung TT, Beretov J, Chang L, Xiao W, Cozzi PJ, Graham PH, Kearsley JH and Li Y. In vitro and in vivo prostate cancer metastasis and chemoresistance can be modulated by expression of either CD44 or CD147. PLoS One. 2012; 7(8):e40716.
-
(2012)
PLoS One
, vol.7
, Issue.8
-
-
Hao, J.1
Madigan, M.C.2
Khatri, A.3
Power, C.A.4
Hung, T.T.5
Beretov, J.6
Chang, L.7
Xiao, W.8
Cozzi, P.J.9
Graham, P.H.10
Kearsley, J.H.11
Li, Y.12
-
42
-
-
79751473114
-
The microRNA miR-34a inhibits prostate cancer stem cells and metastasis by directly repressing CD44
-
Liu C, Kelnar K, Liu B, Chen X, Calhoun-Davis T, Li H, Patrawala L, Yan H, Jeter C, Honorio S, Wiggins JF, Bader AG, Fagin R, Brown D and Tang DG. The microRNA miR-34a inhibits prostate cancer stem cells and metastasis by directly repressing CD44. Nat Med. 2011; 17(2):211-215.
-
(2011)
Nat Med
, vol.17
, Issue.2
, pp. 211-215
-
-
Liu, C.1
Kelnar, K.2
Liu, B.3
Chen, X.4
Calhoun-Davis, T.5
Li, H.6
Patrawala, L.7
Yan, H.8
Jeter, C.9
Honorio, S.10
Wiggins, J.F.11
Bader, A.G.12
Fagin, R.13
Brown, D.14
Tang, D.G.15
-
43
-
-
34250851115
-
A microRNA component of the p53 tumour suppressor network
-
He L, He X, Lim LP, de Stanchina E, Xuan Z, Liang Y, Xue W, Zender L, Magnus J, Ridzon D, Jackson AL, Linsley PS, Chen C, Lowe SW, Cleary MA and Hannon GJ. A microRNA component of the p53 tumour suppressor network. Nature. 2007; 447(7148):1130-1134.
-
(2007)
Nature
, vol.447
, Issue.7148
, pp. 1130-1134
-
-
He, L.1
He, X.2
Lim, L.P.3
de Stanchina, E.4
Xuan, Z.5
Liang, Y.6
Xue, W.7
Zender, L.8
Magnus, J.9
Ridzon, D.10
Jackson, A.L.11
Linsley, P.S.12
Chen, C.13
Lowe, S.W.14
Cleary, M.A.15
Hannon, G.J.16
-
44
-
-
84862650290
-
Pathogenesis of prostatic small cell carcinoma involves the inactivation of the P53 pathway
-
Chen H, Sun Y, Wu C, Magyar CE, Li X, Cheng L, Yao JL, Shen S, Osunkoya AO, Liang C and Huang J. Pathogenesis of prostatic small cell carcinoma involves the inactivation of the P53 pathway. Endocrine-related cancer. 2012; 19(3):321-331.
-
(2012)
Endocrine-related cancer
, vol.19
, Issue.3
, pp. 321-331
-
-
Chen, H.1
Sun, Y.2
Wu, C.3
Magyar, C.E.4
Li, X.5
Cheng, L.6
Yao, J.L.7
Shen, S.8
Osunkoya, A.O.9
Liang, C.10
Huang, J.11
-
45
-
-
0142075168
-
Molecular characterization of human prostate carcinoma cell lines
-
van Bokhoven A, Varella-Garcia M, Korch C, Johannes WU, Smith EE, Miller HL, Nordeen SK, Miller GJ and Lucia MS. Molecular characterization of human prostate carcinoma cell lines. Prostate. 2003; 57(3):205-225.
-
(2003)
Prostate
, vol.57
, Issue.3
, pp. 205-225
-
-
van Bokhoven, A.1
Varella-Garcia, M.2
Korch, C.3
Johannes, W.U.4
Smith, E.E.5
Miller, H.L.6
Nordeen, S.K.7
Miller, G.J.8
Lucia, M.S.9
-
46
-
-
54449092239
-
Effects of miR-34a on cell growth and chemoresistance in prostate cancer PC3 cells
-
Fujita Y, Kojima K, Hamada N, Ohhashi R, Akao Y, Nozawa Y, Deguchi T and Ito M. Effects of miR-34a on cell growth and chemoresistance in prostate cancer PC3 cells. Biochem Biophys Res Commun. 2008; 377(1):114-119.
-
(2008)
Biochem Biophys Res Commun
, vol.377
, Issue.1
, pp. 114-119
-
-
Fujita, Y.1
Kojima, K.2
Hamada, N.3
Ohhashi, R.4
Akao, Y.5
Nozawa, Y.6
Deguchi, T.7
Ito, M.8
-
47
-
-
58149277310
-
The role of microRNA expression pattern in human intrahepatic cholangiocarcinoma
-
Chen L, Yan HX, Yang W, Hu L, Yu LX, Liu Q, Li L, Huang DD, Ding J, Shen F, Zhou WP, Wu MC and Wang HY. The role of microRNA expression pattern in human intrahepatic cholangiocarcinoma. J Hepatol. 2009; 50(2):358-369.
-
(2009)
J Hepatol
, vol.50
, Issue.2
, pp. 358-369
-
-
Chen, L.1
Yan, H.X.2
Yang, W.3
Hu, L.4
Yu, L.X.5
Liu, Q.6
Li, L.7
Huang, D.D.8
Ding, J.9
Shen, F.10
Zhou, W.P.11
Wu, M.C.12
Wang, H.Y.13
-
48
-
-
84155168994
-
Dysregulation of microRNA-204 mediates migration and invasion of endometrial cancer by regulating FOXC1
-
Chung TK, Lau TS, Cheung TH, Yim SF, Lo KW, Siu NS, Chan LK, Yu MY, Kwong J, Doran G, Barroilhet LM, Ng AS, Wong RR, Wang VW, Mok SC, Smith DI, et al. Dysregulation of microRNA-204 mediates migration and invasion of endometrial cancer by regulating FOXC1. Int J Cancer. 2012; 130(5):1036-1045.
-
(2012)
Int J Cancer
, vol.130
, Issue.5
, pp. 1036-1045
-
-
Chung, T.K.1
Lau, T.S.2
Cheung, T.H.3
Yim, S.F.4
Lo, K.W.5
Siu, N.S.6
Chan, L.K.7
Yu, M.Y.8
Kwong, J.9
Doran, G.10
Barroilhet, L.M.11
Ng, A.S.12
Wong, R.R.13
Wang, V.W.14
Mok, S.C.15
Smith, D.I.16
-
49
-
-
84871377399
-
Genomic loss of tumor suppressor miRNA-204 promotes cancer cell migration and invasion by activating AKT/mTOR/Rac1 signaling and actin reorganization
-
Imam JS, Plyler JR, Bansal H, Prajapati S, Bansal S, Rebeles J, Chen HI, Chang YF, Panneerdoss S, Zoghi B, Buddavarapu KC, Broaddus R, Hornsby P, Tomlinson G, Dome J, Vadlamudi RK, et al. Genomic loss of tumor suppressor miRNA-204 promotes cancer cell migration and invasion by activating AKT/mTOR/Rac1 signaling and actin reorganization. PloS one. 2012; 7(12):e52397.
-
(2012)
PloS one
, vol.7
, Issue.12
-
-
Imam, J.S.1
Plyler, J.R.2
Bansal, H.3
Prajapati, S.4
Bansal, S.5
Rebeles, J.6
Chen, H.I.7
Chang, Y.F.8
Panneerdoss, S.9
Zoghi, B.10
Buddavarapu, K.C.11
Broaddus, R.12
Hornsby, P.13
Tomlinson, G.14
Dome, J.15
Vadlamudi, R.K.16
-
50
-
-
77952966659
-
Microrna profiling analysis of differences between the melanoma of young adults and older adults
-
Jukic DM, Rao UN, Kelly L, Skaf JS, Drogowski LM, Kirkwood JM and Panelli MC. Microrna profiling analysis of differences between the melanoma of young adults and older adults. J Transl Med. 2010; 8:27.
-
(2010)
J Transl Med
, vol.8
, pp. 27
-
-
Jukic, D.M.1
Rao, U.N.2
Kelly, L.3
Skaf, J.S.4
Drogowski, L.M.5
Kirkwood, J.M.6
Panelli, M.C.7
-
51
-
-
79961129083
-
Mechanisms and functional consequences of PDEF protein expression loss during prostate cancer progression
-
Turner DP, Findlay VJ, Moussa O, Semenchenko VI, Watson PM, LaRue AC, Desouki MM, Fraig M and Watson DK. Mechanisms and functional consequences of PDEF protein expression loss during prostate cancer progression. Prostate. 2011; 71(16):1723-1735.
-
(2011)
Prostate
, vol.71
, Issue.16
, pp. 1723-1735
-
-
Turner, D.P.1
Findlay, V.J.2
Moussa, O.3
Semenchenko, V.I.4
Watson, P.M.5
LaRue, A.C.6
Desouki, M.M.7
Fraig, M.8
Watson, D.K.9
|