Qu Mingyue, Wang Quan, Wang Xinying, Tang Jie, Dong Xiyao, Zhao Chaoyue, Guan Qingxiang
School of Pharmaceutical Sciences, Jilin University, Changchun, Jilin, China.
School of Medicine, Shanghai Jiao Tong University, Shanghai, China.
Nanomedicine (Lond). 2025 Jun;20(12):1495-1511. doi: 10.1080/17435889.2025.2503694. Epub 2025 May 12.
Glioblastoma (GBM) poses a formidable challenge because of its high morbidity and mortality. The therapeutic efficacy of GBM is significantly hampered by the intricate blood-brain barrier (BBB) and blood-brain tumor barrier (BBTB). Nanomaterial-based brain-targeted delivery systems have shown great potential for effectively delivering therapeutic agents for GBM treatment by overcoming the limitations of conventional drugs, such as poor BBB penetration, a short half-life, and low bioavailability. This review focuses on an in-depth analysis of the interplay between the BBB/BBTB and drug transport kinetics while analyzing innovative nanoparticle-mediated strategies for enhanced GBM treatment. Moreover, the delivery strategies of nanoparticle-based brain-targeted systems are emphasized, with particular attention given to biomimetic nanoparticles (BMNPs), whose unique advantages. The current challenges, translational potential, and future research directions in this rapidly evolving field are comprehensively discussed, highlighting advances in nanomaterial applications. This review aims to stimulate further research into GBM delivery systems, offering promising avenues for maximizing the therapeutic effects of gene drugs or chemotherapeutic agents in practical applications.
胶质母细胞瘤(GBM)因其高发病率和高死亡率而构成了一项艰巨的挑战。复杂的血脑屏障(BBB)和血脑肿瘤屏障(BBTB)严重阻碍了GBM的治疗效果。基于纳米材料的脑靶向递送系统通过克服传统药物的局限性,如血脑屏障穿透性差、半衰期短和生物利用度低等问题,在有效递送治疗药物用于GBM治疗方面显示出巨大潜力。本综述重点深入分析血脑屏障/血脑肿瘤屏障与药物转运动力学之间的相互作用,同时分析用于增强GBM治疗的创新纳米颗粒介导策略。此外,强调了基于纳米颗粒的脑靶向系统的递送策略,特别关注具有独特优势的仿生纳米颗粒(BMNP)。全面讨论了这个快速发展领域当前面临的挑战、转化潜力和未来研究方向,突出了纳米材料应用方面的进展。本综述旨在激发对GBM递送系统的进一步研究,为在实际应用中最大化基因药物或化疗药物的治疗效果提供有前景的途径。