Nuria G. Martínez-Illescas, Camila Quezada-Gutiérrez, Gemma Pérez-García, Estrella Martín-Zapater, Jorge Mañes-García, María Rubert-Hernández, Luis Miguel Alonso‐Colmenar, Carmen Hernández, María Benito-León, Carlos Pérez‐Martín, Ángela Zarco-Cuadrillero, Gabriel Piedrafita, Eduardo Caleiras, Miguel Muñoz-Ruiz, Ana Payo‐Payo, Laura Frías-Aldeguer, Cristina Sánchez, Mercedes Balcells-Camps, Elazer R. Edelman, Leonardo Beccari, María Salazar‐Roa
Cancer cell plasticity enables therapy resistance and metastasis by allowing transitions between stem-like and differentiated states. Differentiation-based strategies aim to stabilize tumor cell identity, yet pharmacological approaches that induce durable lineage restriction remain limited. Here, we show that transient modulation of cannabinoid receptor 2 (CB2R) durably restricts breast cancer cell plasticity by stabilizing a luminal-like cell state. Using patient-derived and murine tumor organoids, we demonstrate that brief, low-dose CB2R modulation reduces self-renewal, invasiveness and tumor-initiating capacity, while enhancing tamoxifen sensitivity and limiting the emergence of resistant phenotypes. These effects persist under pro-dedifferentiation conditions, including TGFβ exposure, stromal co-culture, immune signaling and mechanical stress, and are maintained in vivo following orthotopic transplantation. RNA sequencing reveals a progressive transition from an early plastic state toward a stabilized luminal-like identity, supported by CUT&Tag profiling that uncovers chromatin remodeling associated with this stabilization. Together, our findings redefine CB2R as a regulator of tumor cell state and establish transient CB2R modulation as a strategy to durably constrain breast cancer plasticity through differentiation-based therapy. We investigate how transient cannabinoid receptor 2 modulation influences breast cancer cell plasticity. We show that transient CB2R modulation durably stabilizes a luminal-like state, reducing tumor-initiating capacity and improving tamoxifen sensitivity