DOI: 10.3390/ijms27198572 ISSN: 1422-0067

Targeting Obesity-Associated Breast Cancer: Curcumin Counteracts Leptin-Induced Tumorigenic and Metastatic Traits in MCF-7 and MDA-MB-231 Breast Cancer Cells

Hanène Attia, Orace Mathieu Kenou, Khouloud Ayed, Stanley Arinze Abonyi, Rym Akrout, Rahma Boughriba, Ali Ben Cheikh, Sylvère Fidèle Fassinou, Tomabu Adjobimey, Wassim Y. Almawi, Asma Gati

Obesity-driven hyperleptinemia is a key driver of breast cancer (BC) aggressiveness; nevertheless, strategies to counteract leptin-mediated tumor progression remain limited. Curcumin, a natural polyphenol with established anti-obesity, anti-inflammatory, and anticancer properties, has emerged as a promising metabolic and tumor-modulating biomolecule, although its effects on leptin-induced oncogenic signaling remain unclear. This study evaluated Curcumin as an adjuvant nutraceutical against leptin-induced oncogenesis in MCF-7 and MDA-MB-231 cells. Cells were exposed to obesity-mimicking leptin levels alone or with non-toxic Curcumin doses. MTT, clonogenic, wound-healing, and 3D spheroid dissemination assays were used to assess phenotypic changes, while network pharmacology and molecular docking explored underlying mechanisms. Curcumin significantly inhibited leptin-induced proliferation (8–17%), colony formation (60–90%), migration (20–45%), and 3D spheroid dissemination (20%) in both BC cell lines. Network pharmacology identified shared hub proteins, including AKT1, RHOA, MAP2K1, and MAPK14, linking Curcumin targets with leptin-driven BC signatures, and molecular docking supported direct interactions of Curcumin with these proteins. These findings suggest that Curcumin counteracts hyperleptinemia-induced tumor progression by targeting the PI3K/AKT, MAPK/ERK, and RHOA/ROCK pathways. This integrated in vitro and in silico study supports Curcumin as a promising adjuvant nutraceutical for obesity-associated BC, although experimental pathway validation is still required.