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  1. The role of rat serum carboxylesterase in the activation of paclitaxel and camptothecin prodrugs.
    P D Senter, H Marquardt, B A Thomas, B D Hammock, I S Frank, H P Svensson
    Cancer Res
    Apr 1996 (Vol. 56, Issue 7, Pages 1471-4)
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  1. Secreted and tumour targeted human carboxylesterase for activation of irinotecan.
    D Oosterhoff, H M Pinedo, I H van der Meulen, M de Graaf, T Sone, F A Kruyt, V W van Beusechem, H J Haisma, W R Gerritsen
    Br J Cancer
    Sep 2002 (Vol. 87, Issue 6, Pages 659-64)
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  1. Intracellular inhibition of carboxylesterases by benzil: modulation of CPT-11 cytotoxicity.
    Janice L Hyatt, Lyudmila Tsurkan, Monika Wierdl, Carol C Edwards, Mary K Danks, Philip M Potter
    Mol Cancer Ther
    Sep 2006 (Vol. 5, Issue 9, Pages 2281-8)
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  1. Conversion of the CPT-11 metabolite APC to SN-38 by rabbit liver carboxylesterase.
    S M Guichard, C L Morton, E J Krull, C F Stewart, M K Danks, P M Potter
    Clin Cancer Res
    Dec 1998 (Vol. 4, Issue 12, Pages 3089-94)
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  1. Hydrolysis of irinotecan and its oxidative metabolites, 7-ethyl-10-[4-N-(5-aminopentanoic acid)-1-piperidino] carbonyloxycamptothecin and 7-ethyl-10-[4-(1-piperidino)-1-amino]-carbonyloxycamptothecin, by human carboxylesterases CES1A1, CES2, and a newly expressed carboxylesterase isoenzyme, CES3.
    Sonal P Sanghani, Sara K Quinney, Tyler B Fredenburg, Wilhelmina I Davis, Daryl J Murry, William F Bosron
    Drug Metab Dispos
    May 2004 (Vol. 32, Issue 5, Pages 505-11)
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  1. Characterization of CPT-11 hydrolysis by human liver carboxylesterase isoforms hCE-1 and hCE-2.
    R Humerickhouse, K Lohrbach, L Li, W F Bosron, M E Dolan
    Cancer Res
    Mar 2000 (Vol. 60, Issue 5, Pages 1189-92)
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  1. In vivo human carboxylesterase cDNA gene transfer to activate the prodrug CPT-11 for local treatment of solid tumors.
    A Kojima, N R Hackett, A Ohwada, R G Crystal
    J Clin Invest
    Apr 1998 (Vol. 101, Issue 8, Pages 1789-96)
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  1. Human carboxylesterase 1A2 expressed from carboxylesterase 1A1 and 1A2 genes is a potent predictor of CPT-11 cytotoxicity in vitro.
    Keiji Tanimoto, Mika Kaneyasu, Tatsushi Shimokuni, Keiko Hiyama, Masahiko Nishiyama
    Pharmacogenet Genomics
    Jan 2007 (Vol. 17, Issue 1, Pages 1-10)
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  1. Bioactivation of the anticancer agent CPT-11 to SN-38 by human hepatic microsomal carboxylesterases and the in vitro assessment of potential drug interactions.
    J G Slatter, P Su, J P Sams, L J Schaaf, L C Wienkers
    Drug Metab Dispos
    Oct 1997 (Vol. 25, Issue 10, Pages 1157-64)
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  1. Characterization of inhibitors of specific carboxylesterases: development of carboxylesterase inhibitors for translational application.
    Kyoung Jin P Yoon, Janice L Hyatt, Christopher L Morton, Richard E Lee, Philip M Potter, Mary K Danks
    Mol Cancer Ther
    Aug 2004 (Vol. 3, Issue 8, Pages 903-9)
    MEDLINE | Related Records

  1. Cellular parameters predictive of the clinical response of colorectal cancers to irinotecan. A preliminary study.
    Valérie Pavillard, Virginie Charasson, Audrey Laroche-Clary, Isabelle Soubeyran, Jacques Robert
    Anticancer Res
    (Vol. 24, Issue 2B, Pages 579-85)
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  1. CPT-11 in human colon-cancer cell lines and xenografts: characterization of cellular sensitivity determinants.
    W J Jansen, B Zwart, S T Hulscher, G Giaccone, H M Pinedo, E Boven
    Int J Cancer
    Jan 1997 (Vol. 70, Issue 3, Pages 335-40)
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  1. Human carboxylesterase 2 is commonly expressed in tumor tissue and is correlated with activation of irinotecan.
    Guang Xu, Wanghai Zhang, Margaret K Ma, Howard L McLeod
    Clin Cancer Res
    Aug 2002 (Vol. 8, Issue 8, Pages 2605-11)
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  1. Determinants of the cytotoxicity of irinotecan in two human colorectal tumor cell lines.
    Valérie Pavillard, Cécile Agostini, Sophie Richard, Virginie Charasson, Danièle Montaudon, Jacques Robert
    Cancer Chemother Pharmacol
    Apr 2002 (Vol. 49, Issue 4, Pages 329-35)
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  1. Determination and analysis of single nucleotide polymorphisms and haplotype structure of the human carboxylesterase 2 gene.
    Michael H Wu, Peixian Chen, Xiaolin Wu, Wanqing Liu, Stephen Strom, Soma Das, Edwin H Cook, Gary L Rosner, M Eileen Dolan
    Pharmacogenetics
    Sep 2004 (Vol. 14, Issue 9, Pages 595-605)
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  1. Pharmacology of irinotecan.
    J G Kuhn
    Oncology (Williston Park)
    Aug 1998 (Vol. 12, Issue 8 Suppl 6, Pages 39-42)
    MEDLINE | Related Records

  1. The 3D structure of the anticancer prodrug CPT-11 with Torpedo californica acetylcholinesterase rationalizes its inhibitory action on AChE and its hydrolysis by butyrylcholinesterase and carboxylesterase.
    Michal Harel, Janice L Hyatt, Boris Brumshtein, Christopher L Morton, Randy M Wadkins, Israel Silman, Joel L Sussman, Philip M Potter
    Chem Biol Interact
    Dec 2005 (Vol. 157-158, Pages 153-7)
    MEDLINE | Related Records

  1. Carboxylesterases expressed in human colon tumor tissue and their role in CPT-11 hydrolysis.
    Sonal P Sanghani, Sara K Quinney, Tyler B Fredenburg, Zejin Sun, Wilhelmina I Davis, Daryl J Murry, Oscar W Cummings, David E Seitz, William F Bosron
    Clin Cancer Res
    Oct 2003 (Vol. 9, Issue 13, Pages 4983-91)
    MEDLINE | Related Records

  1. Metabolic activation of CPT-11, 7-ethyl-10-[4-(1-piperidino)-1- piperidino]carbonyloxycamptothecin, a novel antitumor agent, by carboxylesterase.
    T Satoh, M Hosokawa, R Atsumi, W Suzuki, H Hakusui, E Nagai
    Biol Pharm Bull
    May 1994 (Vol. 17, Issue 5, Pages 662-4)
    MEDLINE | Related Records

  1. Functional characterization of three naturally occurring single nucleotide polymorphisms in the CES2 gene encoding carboxylesterase 2 (HCE-2).
    Takashi Kubo, Su-Ryang Kim, Kimie Sai, Yoshiro Saito, Toshiharu Nakajima, Kenji Matsumoto, Hirohisa Saito, Kuniaki Shirao, Noboru Yamamoto, Hironobu Minami, Atsushi Ohtsu, Teruhiko Yoshida, Nagahiro Saijo, Yasuo Ohno, Shogo Ozawa, Jun-Ichi Sawada
    Drug Metab Dispos
    Oct 2005 (Vol. 33, Issue 10, Pages 1482-7)
    MEDLINE | Related Records
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