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An Orthotopic Murine Model of Human Prostate Cancer Metastasis
Published on: September 18, 2013
FABP5 Inhibition against PTEN-Mutant Therapy Resistant Prostate Cancer
Manojit M Swamynathan1,2, Grinu Mathew1,3, Andrei Aziz1
1Cold Spring Harbor Laboratory, Cold Spring Harbor, NY 11724, USA.
Abstract:
Resistance to standard of care taxane and androgen deprivation therapy (ADT) causes the vast majority of prostate cancer (PC) deaths worldwide. We have developed RapidCaP, an autochthonous genetically engineered mouse model of PC. It is driven by the loss of PTEN and p53, the most common driver events in PC patients with life-threatening diseases. As in human ADT, surgical castration of RapidCaP animals invariably results in disease relapse and death from the metastatic disease burden. Fatty Acid Binding Proteins (FABPs) are a large family of signaling lipid carriers. They have been suggested as drivers of multiple cancer types. Here we combine analysis of primary cancer cells from RapidCaP (RCaP cells) with large-scale patient datasets to show that among the 10 FABP paralogs, FABP5 is the PC-relevant target. Next, we show that RCaP cells are uniquely insensitive to both ADT and taxane treatment compared to a panel of human PC cell lines. Yet, they share an exquisite sensitivity to the small-molecule FABP5 inhibitor SBFI-103. We show that SBFI-103 is well tolerated and can strongly eliminate RCaP tumor cells in vivo. This provides a pre-clinical platform to fight incurable PC and suggests an important role for FABP5 in PTEN-deficient PC.
Insights
A new mouse model, RapidCaP, mimics lethal prostate cancer (PC). Targeting Fatty Acid Binding Protein 5 (FABP5) with SBFI-103 shows promise for treating advanced PC resistant to standard therapies.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Prostate cancer (PC) resistance to taxane and androgen deprivation therapy (ADT) leads to most PC deaths.
- PTEN and p53 loss are common drivers in lethal PC.
- Fatty Acid Binding Proteins (FABPs) are implicated in various cancers.
Purpose of the Study:
- To develop a preclinical model for lethal prostate cancer.
- To identify therapeutic targets in PTEN-deficient PC.
- To evaluate FABP5 as a therapeutic target in advanced prostate cancer.
Main Methods:
- Development of the RapidCaP (RCaP) autochthonous genetically engineered mouse model.
- Analysis of primary RCaP cells and large-scale patient datasets.
- In vitro and in vivo evaluation of the FABP5 inhibitor SBFI-103.
Main Results:
- The RapidCaP model recapitulates lethal PC with resistance to ADT and taxanes.
- FABP5 was identified as a key target in PTEN-deficient PC.
- SBFI-103 demonstrated efficacy in eliminating RCaP tumor cells in vivo with good tolerability.
Conclusions:
- The RapidCaP model provides a platform for studying incurable PC.
- FABP5 is a crucial driver in PTEN-deficient prostate cancer.
- Targeting FABP5 with SBFI-103 offers a potential therapeutic strategy for advanced prostate cancer.
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