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Items: 1 to 20 of 155

1.

Immunohistochemical characterization of neuroendocrine cells in prostate cancer.

Huang J, Yao JL, di Sant'Agnese PA, Yang Q, Bourne PA, Na Y.

Prostate. 2006 Sep 15;66(13):1399-406.

PMID:
16865726
2.

Alpha-methylacyl-CoA racemase (P504S)/34betaE12/p63 triple cocktail stain in prostatic adenocarcinoma after hormonal therapy.

Sung MT, Jiang Z, Montironi R, MacLennan GT, Mazzucchelli R, Cheng L.

Hum Pathol. 2007 Feb;38(2):332-41. Epub 2006 Nov 28.

PMID:
17134736
5.

Effects of the dual 5 alpha-reductase inhibitor dutasteride on apoptosis in primary cultures of prostate cancer epithelial cells and cell lines.

Maria McCrohan A, Morrissey C, O'Keane C, Mulligan N, Watson C, Smith J, Fitzpatrick JM, Watson RW.

Cancer. 2006 Jun 15;106(12):2743-52.

6.

Immunohistochemistry in diagnostic surgical pathology of the prostate.

Hameed O, Humphrey PA.

Semin Diagn Pathol. 2005 Feb;22(1):88-104. Review.

PMID:
16512601
7.

Prosaposin upregulates AR and PSA expression and activity in prostate cancer cells (LNCaP).

Koochekpour S, Lee TJ, Wang R, Culig Z, Delorme N, Caffey S, Marrero L, Aguirre J.

Prostate. 2007 Feb 1;67(2):178-89.

PMID:
17044040
8.

Alpha-methylacyl-CoA racemase as an androgen-independent growth modifier in prostate cancer.

Zha S, Ferdinandusse S, Denis S, Wanders RJ, Ewing CM, Luo J, De Marzo AM, Isaacs WB.

Cancer Res. 2003 Nov 1;63(21):7365-76.

9.

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, Lin MF.

Endocr Relat Cancer. 2006 Mar;13(1):151-67.

11.

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, Huang J.

Prostate. 2009 May 15;69(7):787-98. doi: 10.1002/pros.20928.

PMID:
19189306
12.

Conversion of prostate cancer from hormone independency to dependency due to AMACR inhibition: involvement of increased AR expression and decreased IGF1 expression.

Takahara K, Azuma H, Sakamoto T, Kiyama S, Inamoto T, Ibuki N, Nishida T, Nomi H, Ubai T, Segawa N, Katsuoka Y.

Anticancer Res. 2009 Jul;29(7):2497-505.

14.

Longitudinal analysis of androgen deprivation of prostate cancer cells identifies pathways to androgen independence.

D'Antonio JM, Ma C, Monzon FA, Pflug BR.

Prostate. 2008 May 15;68(7):698-714. doi: 10.1002/pros.20677.

PMID:
18302219
15.

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, Lucia MS.

Prostate. 2003 Nov 1;57(3):205-25.

PMID:
14518029
16.

Detection of alpha-methylacyl-coenzyme-A racemase transcripts in blood and urine samples of prostate cancer patients.

Zehentner BK, Secrist H, Zhang X, Hayes DC, Ostenson R, Goodman G, Xu J, Kiviat M, Kiviat N, Persing DH, Houghton RL.

Mol Diagn Ther. 2006;10(6):397-403.

PMID:
17154657
17.

The androgen receptor status of neuroendocrine cells in human benign and malignant prostatic tissue.

Nakada SY, di Sant'Agnese PA, Moynes RA, Hiipakka RA, Liao S, Cockett AT, Abrahamsson PA.

Cancer Res. 1993 May 1;53(9):1967-70.

18.

Florid basal cell hyperplasia of the prostate: a histological, ultrastructural, and immunohistochemical analysis.

Yang XJ, Tretiakova MS, Sengupta E, Gong C, Jiang Z.

Hum Pathol. 2003 May;34(5):462-70.

PMID:
12792920
19.

Hormonal regulation of beta2-adrenergic receptor level in prostate cancer.

Ramberg H, Eide T, Krobert KA, Levy FO, Dizeyi N, Bjartell AS, Abrahamsson PA, Taskén KA.

Prostate. 2008 Jul 1;68(10):1133-42. doi: 10.1002/pros.20778.

PMID:
18454446
20.

Aberrant expression of cystatin C in prostate cancer is associated with neuroendocrine differentiation.

Jiborn T, Abrahamson M, Gadaleanu V, Lundwall A, Bjartell A.

BJU Int. 2006 Jul;98(1):189-96.

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