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PUBMED FOR HANDHELDS

Journal Abstract Search


611 related items for PubMed ID: 29132337

  • 1. Gene expression signatures of neuroendocrine prostate cancer and primary small cell prostatic carcinoma.
    Tsai HK, Lehrer J, Alshalalfa M, Erho N, Davicioni E, Lotan TL.
    BMC Cancer; 2017 Nov 13; 17(1):759. PubMed ID: 29132337
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  • 5. A novel mechanism of SRRM4 in promoting neuroendocrine prostate cancer development via a pluripotency gene network.
    Lee AR, Gan Y, Tang Y, Dong X.
    EBioMedicine; 2018 Sep 13; 35():167-177. PubMed ID: 30100395
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  • 7. Biallelic tumour suppressor loss and DNA repair defects in de novo small-cell prostate carcinoma.
    Chedgy EC, Vandekerkhove G, Herberts C, Annala M, Donoghue AJ, Sigouros M, Ritch E, Struss W, Konomura S, Liew J, Parimi S, Vergidis J, Hurtado-Coll A, Sboner A, Fazli L, Beltran H, Chi KN, Wyatt AW.
    J Pathol; 2018 Oct 13; 246(2):244-253. PubMed ID: 30015382
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  • 9. The long noncoding RNA H19 regulates tumor plasticity in neuroendocrine prostate cancer.
    Singh N, Ramnarine VR, Song JH, Pandey R, Padi SKR, Nouri M, Olive V, Kobelev M, Okumura K, McCarthy D, Hanna MM, Mukherjee P, Sun B, Lee BR, Parker JB, Chakravarti D, Warfel NA, Zhou M, Bearss JJ, Gibb EA, Alshalalfa M, Karnes RJ, Small EJ, Aggarwal R, Feng F, Wang Y, Buttyan R, Zoubeidi A, Rubin M, Gleave M, Slack FJ, Davicioni E, Beltran H, Collins C, Kraft AS.
    Nat Commun; 2021 Dec 21; 12(1):7349. PubMed ID: 34934057
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  • 11. The expression of YAP1 is increased in high-grade prostatic adenocarcinoma but is reduced in neuroendocrine prostate cancer.
    Cheng S, Prieto-Dominguez N, Yang S, Connelly ZM, StPierre S, Rushing B, Watkins A, Shi L, Lakey M, Baiamonte LB, Fazili T, Lurie A, Corey E, Shi R, Yeh Y, Yu X.
    Prostate Cancer Prostatic Dis; 2020 Dec 21; 23(4):661-669. PubMed ID: 32313141
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  • 15. Alternative RNA splicing of the GIT1 gene is associated with neuroendocrine prostate cancer.
    Lee AR, Gan Y, Xie N, Ramnarine VR, Lovnicki JM, Dong X.
    Cancer Sci; 2019 Jan 21; 110(1):245-255. PubMed ID: 30417466
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  • 16. Establishment and characterization of a novel treatment-related neuroendocrine prostate cancer cell line KUCaP13.
    Okasho K, Mizuno K, Fukui T, Lin YY, Kamiyama Y, Sunada T, Li X, Kimura H, Sumiyoshi T, Goto T, Kobayashi T, Lin D, Wang Y, Collins CC, Inoue T, Ogawa O, Akamatsu S.
    Cancer Sci; 2021 Jul 21; 112(7):2781-2791. PubMed ID: 33960594
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  • 17. CDHu40: a novel marker gene set of neuroendocrine prostate cancer.
    Liu S, Nam HS, Zeng Z, Deng X, Pashaei E, Zang Y, Yang L, Li C, Huang J, Wendt MK, Lu X, Huang R, Wan J.
    Brief Bioinform; 2024 Sep 23; 25(6):. PubMed ID: 39318189
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  • 18. Icaritin suppresses development of neuroendocrine differentiation of prostate cancer through inhibition of IL-6/STAT3 and Aurora kinase A pathways in TRAMP mice.
    Sun F, Zhang ZW, Tan EM, Lim ZLR, Li Y, Wang XC, Chua SE, Li J, Cheung E, Yong EL.
    Carcinogenesis; 2016 Jul 23; 37(7):701-711. PubMed ID: 27207661
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