Novel Inhibitors of Fatty Acid Synthase with Anticancer Activity

Teresa Puig1, Carlos Turrado, Bellinda Benhamú

  • 1Authors' Affiliations: Institut Català d'Oncologia and Institut d'Investigació Biomèdica de Girona, Bioquímica i Biologia Molecular, Facultat de Ciències, Universitat de Girona, Girona, Spain; Química Orgánica I, Facultad de Ciencias Químicas, Universidad Complutense de Madrid, M.D. Anderson Cancer Center España, Madrid, Spain; Institut Català d'Oncologia and Institut d'Investigació Biomèdica de Bellvitge, and Bioquímica i Biologia Molecular, Institut de Biomedicina, Universitat de Barcelona, Barcelona, Spain.

Insights

New polyphenolic compounds effectively inhibit fatty acid synthase (FASN) in breast cancer models. These novel FASN inhibitors show anticancer activity and do not cause weight loss, offering potential new treatments.

Area of Science:

  • Biochemistry
  • Oncology
  • Pharmacology

Background:

  • Fatty acid synthase (FASN) is overexpressed in human breast carcinoma.
  • Natural polyphenols like (-)-epigallocatechin-3-gallate inhibit FASN but require further development.
  • Novel synthetic polyphenolic compounds were designed to target FASN in breast cancer.

Purpose of the Study:

  • To synthesize and evaluate novel polyphenolic compounds as FASN inhibitors for breast cancer treatment.
  • To assess the in vitro and in vivo anticancer effects of these compounds.
  • To determine their impact on FASN activity, apoptosis, cell signaling, and body weight.

Main Methods:

  • In vitro evaluation of breast cancer cell growth, apoptosis, cell signaling (HER2, ERK1/2, AKT), and enzyme activity (FASN, CPT-1).
  • In vivo assessment of antitumor activity and body weight effects in a mice model using BT474 breast cancer cells.
  • Synthesis of a panel of new polyphenolic compounds for testing.

Main Results:

  • Two synthesized compounds demonstrated potent FASN inhibition and high cytotoxicity against breast cancer cells.
  • The compounds induced apoptosis and decreased active forms of HER2, AKT, and ERK1/2 proteins.
  • One compound effectively blocked BT474 breast cancer xenograft growth in vivo without inducing weight loss.

Conclusions:

  • Synthesized polyphenolic compounds represent a novel class of FASN inhibitors with significant in vitro and in vivo anticancer activity.
  • These compounds do not activate beta-oxidation or cause weight loss, distinguishing them from some other agents.
  • The FASN inhibitors show promise as potential new therapeutic agents for breast cancer treatment.

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