Breast cancer (BC) frequently metastasizes to bone, leading to poor patient prognosis. The infiltration of cancer cells in bone impairs its homeostasis, triggering a pathological interaction between tumors and resident cells. Preclinical models able to mimic the bone microenvironment are needed to advance translational findings on BC mechanisms and treatments. We designed strontium-doped calcium phosphate cement to be employed for culturing cancer and bone cells and developed an in vitro bone metastasis model. The platform was established step by step, starting with the monoculture of cancer cells, mature osteoblasts (OBs) differentiated from mesenchymal stem cells, and mature osteoclasts (OCs) differentiated from Peripheral Blood Mononuclear Cells. The model was implemented with the co-culture of cancer cells with OBs or OCs, or the co-culture of OBs and OCs, allowing us to discriminate the interaction between the actors of the bone metastatic niche. The biomimetic material was further challenged with bone metastasis patient-derived material, showing good versatility and biocompatibility, suggesting its potential use as bone substitute. Overall, we developed a bone-mimicking model able to reproduce reciprocal interactions between cancer and bone cells in a biomimetic environment suitable for studying the biomolecular determinants of bone metastasis and, in the future, as a drug efficacy platform.
A Modular Biomimetic Preclinical Platform to Elucidate the Interaction Between Cancer Cells and the Bone Metastatic Niche.
用于阐明癌细胞与骨转移微环境之间相互作用的模块化仿生临床前平台
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作者:Cocchi Claudia, Dapporto Massimiliano, Guerrieri Ania Naila, Liverani Chiara, Tavoni Marta, Bellotti Chiara, Spadazzi Chiara, Tampieri Anna, Gambarotti Marco, Miserocchi Giacomo, Sprio Simone, Lucarelli Enrico, Iafisco Michele, Ibrahim Toni, De Vita Alessandro, Mercatali Laura
| 期刊: | Journal of Functional Biomaterials | 影响因子: | 5.200 |
| 时间: | 2025 | 起止号: | 2025 Jun 12; 16(6):220 |
| doi: | 10.3390/jfb16060220 | 研究方向: | 细胞生物学 |
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