Dual-stimuli magnetic drug nanoparticles for chemoimmunotherapy: Magnetically driven, charge-reversal enhanced tumour penetration and pH-triggered drug release

纳米医学 阿霉素 药物输送 化学 磁性纳米粒子 药品 渗透(战争) 纳米技术 靶向给药 癌症研究 磁热疗 纳米颗粒 生物医学工程 肿瘤微环境 生物物理学 内吞作用 毒品携带者 磁芯 免疫疗法 癌细胞 氧化铁纳米粒子 癌症免疫疗法 材料科学 细胞毒性
作者
X. Feng,Hao Wang,Yuxiang Xue,Nurbanu Ozgultekin,Takanori Kitamura,Jin Li,Defang Ouyang,Guangyu Zhu,Guangzhao Mao,Bin-Zhi Qian,Xianfeng Chen
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:532: 174177-174177
标识
DOI:10.1016/j.cej.2026.174177
摘要

Poor intratumoral penetration remains a major obstacle to effective chemotherapy, caused by dense extracellular matrices, high interstitial pressure, and abnormal vasculature. Magnetic nanoparticle (NP)-mediated drug delivery provides spatial control, but existing systems suffer from low drug loading, weak responsiveness to tumour microenvironments, and limited penetration. Here, we report for the first time a self-assembled nanoplatform in which ultrasmall Fe₃O₄ NPs are evenly distributed within a carrier-free doxorubicin (DOX) core and surface-modified with glycol chitosan (Fe₃O₄-DOX@GC NPs). This unique architecture simultaneously achieves ultra-high drug loading (69%) and markedly enhances responsiveness to external magnetic fields, addressing two long-standing challenges in magnetic nanomedicine. In addition, tumour acidity triggers surface charge reversal from negative to positive, promoting efficient cellular uptake. In 3D tumour spheroids, dual static and alternating magnetic fields increased DOX retention by 2.02-fold compared with static fields alone. In vivo, magnetic guidance produced a 6.3-fold increase in tumour accumulation and a 55% tumour volume reduction relative to free DOX. Importantly, the nanoplatform also activated antitumour immunity, significantly expanding cytotoxic T cells and antitumoral macrophages. This first-in-class dual chemotherapeutic–immunotherapeutic nanoplatform establishes a powerful strategy to overcome tumour penetration barriers while reshaping the immune microenvironment for improved cancer therapy. • First demonstration of uniformly distributed magnetic cores in carrier-free drug NPs • 6853 Fe₃O₄ NPs uniformly embedded in each DOX NP for strong magnetism • Nanomedicine combines high loading, magnetic control & deep tumour penetration. • Magnetic guidance enhances tumour DOX delivery 6.3-fold over free DOX in vivo. • Fe₃O₄-DOX@GC NPs synergise chemotherapy with immunotherapy in vivo.
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