Literature DB >> 21149615

Targeting the urokinase plasminogen activator receptor inhibits ovarian cancer metastasis.

Hilary A Kenny1, Payton Leonhardt, Andras Ladanyi, S Diane Yamada, Anthony Montag, Hae Kyung Im, Sujatha Jagadeeswaran, David E Shaw, Andrew P Mazar, Ernst Lengyel.   

Abstract

PURPOSE: To understand the functional and preclinical efficacy of targeting the urokinase plasminogen activator receptor (u-PAR) in ovarian cancer. EXPERIMENTAL
DESIGN: Expression of u-PAR was studied in 162 epithelial ovarian cancers, including 77 pairs of corresponding primary and metastatic tumors. The effect of an antibody against u-PAR (ATN-658) on proliferation, adhesion, invasion, apoptosis, and migration was assessed in 3 (SKOV3ip1, HeyA8, and CaOV3) ovarian cancer cell lines. The impact of the u-PAR antibody on tumor weight, number, and survival was examined in corresponding ovarian cancer xenograft models and the mechanism by which ATN-658 blocks metastasis was explored.
RESULTS: Only 8% of all ovarian tumors were negative for u-PAR expression. Treatment of SKOV3ip1, HeyA8, and CaOV3 ovarian cancer cell lines with the u-PAR antibody inhibited cell invasion, migration, and adhesion. In vivo, anti-u-PAR treatment reduced the number of tumors and tumor weight in CaOV3 and SKOV3ip1 xenografts and reduced tumor weight and increased survival in HeyA8 xenografts. Immunostaining of CaOV3 xenograft tumors and ovarian cancer cell lines showed an increase in active-caspase 3 and TUNEL staining. Treatment with u-PAR antibody inhibited α(5)-integrin and u-PAR colocalization on primary human omental extracellular matrix. Anti-u-PAR treatment also decreased the expression of urokinase, u-PAR, β(3)-integrin, and fibroblast growth factor receptor-1 both in vitro and in vivo.
CONCLUSIONS: This study shows that an antibody against u-PAR reduces metastasis, induces apoptosis, and reduces the interaction between u-PAR and α(5)-integrin. This provides a rationale for targeting the u-PAR pathway in patients with ovarian cancer and for further testing of ATN-658 in this indication. ©2010 AACR.

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Year:  2010        PMID: 21149615      PMCID: PMC3073583          DOI: 10.1158/1078-0432.CCR-10-2258

Source DB:  PubMed          Journal:  Clin Cancer Res        ISSN: 1078-0432            Impact factor:   12.531


  39 in total

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3.  Dedifferentiation of serous ovarian cancer from cystic to solid tumors is associated with increased expression of mRNA for urokinase plasminogen activator (uPA), its receptor (uPAR) and its inhibitor (PAI-1).

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4.  Ovarian cancer development and metastasis.

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5.  c-Met overexpression is a prognostic factor in ovarian cancer and an effective target for inhibition of peritoneal dissemination and invasion.

Authors:  Kenjiro Sawada; A Reza Radjabi; Nariyoshi Shinomiya; Emily Kistner; Hilary Kenny; Amy R Becker; Muge A Turkyilmaz; Ravi Salgia; S Diane Yamada; George F Vande Woude; Maria S Tretiakova; Ernst Lengyel
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6.  The initial steps of ovarian cancer cell metastasis are mediated by MMP-2 cleavage of vitronectin and fibronectin.

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7.  Development and evaluation of peptidic ligands targeting tumour-associated urokinase plasminogen activator receptor (uPAR) for use in alpha-emitter therapy for disseminated ovarian cancer.

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Authors:  Christopher S Gondi; Sajani S Lakka; Dzung H Dinh; William C Olivero; Meena Gujrati; Jasti S Rao
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9.  Targeting the urokinase plasminogen activator receptor with a monoclonal antibody impairs the growth of human colorectal cancer in the liver.

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10.  A cellular binding site for the Mr 55,000 form of the human plasminogen activator, urokinase.

Authors:  J D Vassalli; D Baccino; D Belin
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  33 in total

1.  Quantitative High-Throughput Screening Using an Organotypic Model Identifies Compounds that Inhibit Ovarian Cancer Metastasis.

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2.  Relationship of type II diabetes and metformin use to ovarian cancer progression, survival, and chemosensitivity.

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4.  A flexible multidomain structure drives the function of the urokinase-type plasminogen activator receptor (uPAR).

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5.  Metformin inhibits ovarian cancer growth and increases sensitivity to paclitaxel in mouse models.

Authors:  Ernst Lengyel; Lacey M Litchfield; Anirban K Mitra; Kristin M Nieman; Abir Mukherjee; Yilin Zhang; Alyssa Johnson; Michael Bradaric; WooSeok Lee; Iris L Romero
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6.  Inhibition of fascin in cancer and stromal cells blocks ovarian cancer metastasis.

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7.  Modeling the Early Steps of Ovarian Cancer Dissemination in an Organotypic Culture of the Human Peritoneal Cavity.

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Review 9.  Three-dimensional modeling of ovarian cancer.

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10.  Urokinase plasminogen activator system-targeted delivery of nanobins as a novel ovarian cancer therapy.

Authors:  Yilin Zhang; Hilary A Kenny; Elden P Swindell; Anirban K Mitra; Patrick L Hankins; Richard W Ahn; Katja Gwin; Andrew P Mazar; Thomas V O'Halloran; Ernst Lengyel
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