Literature DB >> 26873728

Applying Small Molecule Signal Transducer and Activator of Transcription-3 (STAT3) Protein Inhibitors as Pancreatic Cancer Therapeutics.

Carolyn C Arpin1, Stephen Mac1, Yanlin Jiang2, Huiwen Cheng2, Michelle Grimard2, Brent D G Page1, Malgorzata M Kamocka3, Sina Haftchenary1, Han Su4, Daniel P Ball1, David A Rosa1, Ping-Shan Lai1, Rodolfo F Gómez-Biagi1, Ahmed M Ali5, Rahul Rana1, Helmut Hanenberg6, Kagan Kerman4, Kyle C McElyea7, George E Sandusky7, Patrick T Gunning8, Melissa L Fishel9.   

Abstract

Constitutively activated STAT3 protein has been found to be a key regulator of pancreatic cancer and a target for molecular therapeutic intervention. In this study, PG-S3-001, a small molecule derived from the SH-4-54 class of STAT3 inhibitors, was found to inhibit patient-derived pancreatic cancer cell proliferation in vitro and in vivo in the low micromolar range. PG-S3-001 binds the STAT3 protein potently, Kd = 324 nmol/L by surface plasmon resonance, and showed no effect in a kinome screen (>100 cancer-relevant kinases). In vitro studies demonstrated potent cell killing as well as inhibition of STAT3 activation in pancreatic cancer cells. To better model the tumor and its microenvironment, we utilized three-dimensional (3D) cultures of patient-derived pancreatic cancer cells in the absence and presence of cancer-associated fibroblasts (CAF). In this coculture model, inhibition of tumor growth is maintained following STAT3 inhibition in the presence of CAFs. Confocal microscopy was used to verify tumor cell death following treatment of 3D cocultures with PG-S3-001. The 3D model was predictive of in vivo efficacy as significant tumor growth inhibition was observed upon administration of PG-S3-001. These studies showed that the inhibition of STAT3 was able to impact the survival of tumor cells in a relevant 3D model, as well as in a xenograft model using patient-derived cells. Mol Cancer Ther; 15(5); 794-805. ©2016 AACR. ©2016 American Association for Cancer Research.

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Year:  2016        PMID: 26873728      PMCID: PMC4873422          DOI: 10.1158/1535-7163.MCT-15-0003

Source DB:  PubMed          Journal:  Mol Cancer Ther        ISSN: 1535-7163            Impact factor:   6.261


  60 in total

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Journal:  J Med Chem       Date:  2004-03-25       Impact factor: 7.446

3.  Extra precision glide: docking and scoring incorporating a model of hydrophobic enclosure for protein-ligand complexes.

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4.  In vivo antitumor efficacy of STAT3 blockade using a transcription factor decoy approach: implications for cancer therapy.

Authors:  Sichuan Xi; William E Gooding; Jennifer Rubin Grandis
Journal:  Oncogene       Date:  2005-02-03       Impact factor: 9.867

5.  Orally bioavailable small-molecule inhibitor of transcription factor Stat3 regresses human breast and lung cancer xenografts.

Authors:  Xiaolei Zhang; Peibin Yue; Brent D G Page; Tianshu Li; Wei Zhao; Andrew T Namanja; David Paladino; Jihe Zhao; Yuan Chen; Patrick T Gunning; James Turkson
Journal:  Proc Natl Acad Sci U S A       Date:  2012-05-23       Impact factor: 11.205

6.  Stat3/Socs3 activation by IL-6 transsignaling promotes progression of pancreatic intraepithelial neoplasia and development of pancreatic cancer.

Authors:  Marina Lesina; Magdalena U Kurkowski; Katharina Ludes; Stefan Rose-John; Matthias Treiber; Günter Klöppel; Akihiko Yoshimura; Wolfgang Reindl; Bence Sipos; Shizuo Akira; Roland M Schmid; Hana Algül
Journal:  Cancer Cell       Date:  2011-04-12       Impact factor: 31.743

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8.  A low-molecular-weight compound discovered through virtual database screening inhibits Stat3 function in breast cancer cells.

Authors:  Hui Song; Renxiao Wang; Shaomeng Wang; Jiayuh Lin
Journal:  Proc Natl Acad Sci U S A       Date:  2005-03-21       Impact factor: 11.205

Review 9.  Inhibiting aberrant Stat3 function with molecular therapeutics: a progress report.

Authors:  Sina Haftchenary; Miriam Avadisian; Patrick T Gunning
Journal:  Anticancer Drugs       Date:  2011-02       Impact factor: 2.248

Review 10.  Transcriptional regulatory functions of mammalian AP-endonuclease (APE1/Ref-1), an essential multifunctional protein.

Authors:  Kishor K Bhakat; Anil K Mantha; Sankar Mitra
Journal:  Antioxid Redox Signal       Date:  2009-03       Impact factor: 8.401

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  19 in total

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Review 2.  Phosphotyrosine isosteres: past, present and future.

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Journal:  J Pharmacol Exp Ther       Date:  2016-09-08       Impact factor: 4.030

4.  Regulation of HIF1α under Hypoxia by APE1/Ref-1 Impacts CA9 Expression: Dual Targeting in Patient-Derived 3D Pancreatic Cancer Models.

Authors:  Derek P Logsdon; Michelle Grimard; Meihua Luo; Safi Shahda; Yanlin Jiang; Yan Tong; Zhangsheng Yu; Nicholas Zyromski; Ernestina Schipani; Fabrizio Carta; Claudiu T Supuran; Murray Korc; Mircea Ivan; Mark R Kelley; Melissa L Fishel
Journal:  Mol Cancer Ther       Date:  2016-08-17       Impact factor: 6.261

5.  Antitumor Activity and Mechanistic Characterization of APE1/Ref-1 Inhibitors in Bladder Cancer.

Authors:  Melissa L Fishel; Hanyu Xia; Jack McGeown; David W McIlwain; May Elbanna; Ariel A Craft; Hristos Z Kaimakliotis; George E Sandusky; Chi Zhang; Roberto Pili; Mark R Kelley; Travis J Jerde
Journal:  Mol Cancer Ther       Date:  2019-08-14       Impact factor: 6.261

Review 6.  Small molecule inhibitors in pancreatic cancer.

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Journal:  RSC Med Chem       Date:  2020-01-24

7.  Phenotypic Screening of Chemical Libraries Enriched by Molecular Docking to Multiple Targets Selected from Glioblastoma Genomic Data.

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Journal:  ACS Chem Biol       Date:  2020-05-21       Impact factor: 5.100

8.  Exploiting the Ref-1-APE1 node in cancer signaling and other diseases: from bench to clinic.

Authors:  Fenil Shah; Derek Logsdon; Richard A Messmann; Jill C Fehrenbacher; Melissa L Fishel; Mark R Kelley
Journal:  NPJ Precis Oncol       Date:  2017-06-08

9.  Presence of stromal cells in a bioengineered tumor microenvironment alters glioblastoma migration and response to STAT3 inhibition.

Authors:  R Marisol Herrera-Perez; Sherry L Voytik-Harbin; Jann N Sarkaria; Karen E Pollok; Melissa L Fishel; Jenna L Rickus
Journal:  PLoS One       Date:  2018-03-22       Impact factor: 3.240

Review 10.  Adipocytes and Macrophages Interplay in the Orchestration of Tumor Microenvironment: New Implications in Cancer Progression.

Authors:  Luís Henrique Corrêa; Rafael Corrêa; Cecília Menezes Farinasso; Lívia Pimentel de Sant'Ana Dourado; Kelly Grace Magalhães
Journal:  Front Immunol       Date:  2017-09-19       Impact factor: 7.561

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