Fatty acid binding protein 5 inhibitors as novel anticancer agents against metastatic castration-resistant prostate

Hehe Wang1, Chuanzhou Zhu1, Manojit M Swamynathan2

  • 1Department of Chemistry, Stony Brook University, Stony Brook, NY 11794-3400, USA.

Insights

New inhibitors targeting FABP5 show promise against advanced prostate cancer (PCa). These compounds, especially third-generation versions, demonstrate potent cytotoxicity and synergize with topotecan, offering new therapeutic options for castration-resistant PCa.

Area of Science:

  • Oncology
  • Medicinal Chemistry
  • Molecular Biology

Background:

  • Prostate cancer (PCa) is a leading cause of cancer death in men, with metastatic castration-resistant PCa (mCRPC) lacking effective treatments.
  • Fatty acid-binding protein 5 (FABP5) is overexpressed in PCa, promoting tumor growth, survival, and metastasis through fatty acid chaperoning to PPARs.
  • Current therapies like docetaxel (DTX) and cabazitaxel (CTX) have limitations, necessitating novel therapeutic strategies for CRPC.

Purpose of the Study:

  • To conduct an extensive structure-activity relationship (SAR) study of second- and third-generation truxillic acid monoester (TAME)-based FABP5 inhibitors (SB-FIs).
  • To evaluate the cytotoxicity of novel SB-FIs against PC-3 and RCaP prostate cancer cell lines, including the drug-resistant RCaP model.
  • To identify SB-FIs that synergize with topotecan (TPT), a topoisomerase I inhibitor, for potential treatment of taxane-resistant CRPC.

Main Methods:

  • Synthesis and SAR analysis of 1st, 2nd, and 3rd generation SB-FIs.
  • Cytotoxicity assays using PC-3 and RCaP cell lines.
  • Cell cycle analysis to assess apoptotic effects.
  • Synergy screening of SB-FIs with TPT in RCaP cells.

Main Results:

  • Third-generation SB-FIs exhibited potent cytotoxicity against both PC-3 and RCaP cell lines.
  • Cell cycle analysis demonstrated an increasing apoptotic potency across SB-FI generations.
  • Three SB-FIs (L3, α-11, and α-4) showed significant synergy with topotecan (TPT) in the RCaP cell line.

Conclusions:

  • Novel third-generation SB-FIs are potent inhibitors of prostate cancer cell growth, including resistant cell lines.
  • SB-FIs demonstrate enhanced apoptotic activity with successive generations.
  • The identified synergistic combinations of SB-FIs with TPT offer a promising strategy to overcome taxane resistance in CRPC and expand TPT's therapeutic window.

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