Anti-Netrin-1 decorated nanoparticles combined with chemotherapy for the treatment of triple-negative breast cancer

多西紫杉醇 纳米载体 癌症研究 药物输送 三阴性乳腺癌 肿瘤微环境 紫杉醇 PEG比率 体内 乳腺癌 化学 靶向给药 化疗 癌症 材料科学 纳米技术 医学 生物 内科学 肿瘤细胞 财务 经济 生物技术
作者
Silvia Breusa,Eloïse Thomas,Noemi Baldinotti,Serena Zilio,Jean‐Guy Delcros,Diana Marcela Hernandez-Palomino,Weisha Qi,H. Guérin,Benjamin Gibert,Patrick Mehlen,Ilaria Marigo,David Kryza,Giovanna Lollo
出处
期刊:Biomaterials advances 卷期号:161: 213881-213881 被引量:1
标识
DOI:10.1016/j.bioadv.2024.213881
摘要

Nanoparticle's success as drug delivery systems for cancer treatment has been achieved through passive targeting mechanisms. However, tumor heterogeneity and rapid drug clearance limit the treatment efficacy. Improved outcomes and selective drug release can be achieved by grafting ligands at the surface of nanocarriers that bind molecules overexpressed in the tumor microenvironment (TME). In this work, we developed a docetaxel-loaded nanoemulsions (NEs) binding an anti-netrin-1 monoclonal antibody (NP137) to selectively target the netrin-1 protein overexpressed in many different tumors. The goal is to refine a combined approach utilizing NP137 and docetaxel as an improved tumor-targeting chemotherapeutic agent for addressing triple-negative breast cancer (TNBC). Several factors have been considered for the optimization of the active targeted drug delivery system via the click-chemistry conjugation, as the impact of PEGylated surfactant that stabilize the NEs shell on conjugation efficiency, cytocompatibility with EMT6 cell line and colloidal stability over time of NEs. Results showed that a 660 Da PEG chain length contributed to NEs colloidal stability and had no impact on cell viability or on the antibody binding ability for its ligand after surface conjugation. Moreover, docetaxel was encapsulated into the oily core of NEs, with an encapsulation efficiency of 70 %. To validate our treatment strategy in vivo, the 4T1 murine breast cancer model was used. As a result, the comparison of active-targeted and non-targeted NEs revealed that only active-targeted NE could decrease the tumor growth rate.
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