Radiotherapy remains a cornerstone in metastatic cancer treatment but is often hindered by tumor hypoxia and radioresistance. Gold nanorods (AuNRs) offer promise in enhancing radiotherapy through hyperthermia, yet their clinical impact is limited by poor tumor targeting. Building on the previous findings demonstrating the tumor-homing ability of Endothelial Colony Forming Cells (ECFCs) loaded with AuNRs, this study advances their use as a biologically targeted delivery system for precise radiotherapy enhancement. Using 3D in vitro tumor models and in vivo studies with nude rats, it is demonstrated that ECFCs actively home to hypoxic tumor regions, overcoming traditional nanoparticle delivery limitations. This targeted approach ensures efficient AuNR accumulation, enhancing photothermal activation and maximizing radiosensitization. In vitro, ECFC-loaded AuNRs significantly amplify radiotherapy effects, inducing ferroptosis in melanoma and inhibiting autophagy in breast cancer cells-revealing distinct tumor-specific mechanisms. Moreover, ECFC-AuNRs suppress tumor proliferation and angiogenesis, blocking vessel-like structure formation in vitro and in vivo. By integrating cellular therapy with nanotechnology, this study presents a novel strategy to counter radioresistance and improve therapeutic precision. These findings lay the foundation for a clinically viable, patient-specific approach, unlocking new possibilities in advanced cancer treatment.
Antitumoral Efficacy of AuNRs-Laden ECFCs In Vitro and In Vivo: Decoding the Heat and Rays Combo Treatment in Breast Cancer and Melanoma Cells.
AuNRs负载ECFCs在体外和体内的抗肿瘤功效:解码热疗和射线联合治疗乳腺癌和黑色素瘤细胞
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作者:Anceschi Cecilia, Scavone Francesca, Armanetti Paolo, Menichetti Luca, Catarinicchia Claudia, Borri Claudia, Ratto Fulvio, Micheletti Filippo, Formica Noemi, Ruzzolini Jessica, Frediani Elena, Chillà Anastasia, Margheri Francesca, Severi Mirko, Traversi Rita, Nardini Patrizia, Guasti Daniele, Del Rosso Mario, Del Rosso Tommaso, Giovanelli Lisa, Talamonti Cinzia, Mangoni Monica, Desideri Isacco, Burchielli Silvia, Pajar Fabiola, Fibbi Gabriella, Laurenzana Anna
| 期刊: | Advanced Healthcare Materials | 影响因子: | 9.600 |
| 时间: | 2025 | 起止号: | 2025 Aug;14(22):e2502416 |
| doi: | 10.1002/adhm.202502416 | 研究方向: | 细胞生物学、肿瘤 |
| 疾病类型: | 乳腺癌、黑色素瘤 | ||
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