Smart Bio-Interfaces, Istituto Italiano di Tecnologia, Viale Rinaldo Piaggio 34, Pontedera 56025, Italy.
Translational Pharmacology, Istituto Italiano di Tecnologia, Via Morego 30, Genova 16163, Italy.
ACS Nano. 2023 Sep 26;17(18):18441-18455. doi: 10.1021/acsnano.3c06085. Epub 2023 Sep 12.
Glioblastoma multiforme (GBM) is a devastating tumor of the central nervous system, currently missing an effective treatment. The therapeutic gold standard consists of surgical resection followed by chemotherapy (usually with temozolomide, TMZ) and/or radiotherapy. TMZ does not, however, provide significant survival benefit after completion of treatment because of development of chemoresistance and of heavy side effects of systemic administration. Improvement of conventional treatments and complementary therapies are urgently needed to increase patient survival and quality of life. Stimuli-responsive lipid-based drug delivery systems offer promising prospects to overcome the limitations of the current treatments. In this work, multifunctional lipid-based magnetic nanovectors functionalized with the peptide angiopep-2 and loaded with TMZ (Ang-TMZ-LMNVs) were tested to enhance specific GBM therapy on an model. Exposure to alternating magnetic fields (AMFs) enabled magnetic hyperthermia to be performed, that works in synergy with the chemotherapeutic agent. Studies on orthotopic human U-87 MG-Luc2 tumors in nude mice have shown that Ang-TMZ-LMNVs can accumulate and remain in the tumor after local administration without crossing over into healthy tissue, effectively suppressing tumor invasion and proliferation and significantly prolonging the median survival time when combined with the AMF stimulation. This powerful synergistic approach has proven to be a robust and versatile nanoplatform for an effective GBM treatment.
多形性胶质母细胞瘤(GBM)是一种中枢神经系统的破坏性肿瘤,目前缺乏有效的治疗方法。治疗的金标准包括手术切除,然后进行化疗(通常使用替莫唑胺,TMZ)和/或放疗。然而,由于化疗耐药性的发展和全身给药的严重副作用,TMZ 在完成治疗后并不能提供显著的生存获益。为了提高患者的生存率和生活质量,迫切需要改进传统治疗方法和补充治疗方法。对刺激响应性基于脂质的药物传递系统的研究为克服当前治疗方法的局限性提供了有希望的前景。在这项工作中,用肽血管生成肽-2 功能化并负载 TMZ 的多功能脂质基磁性纳米载体(Ang-TMZ-LMNVs)被用于增强模型上的特定 GBM 治疗。施加交变磁场(AMFs)可进行磁热疗,与化疗药物协同作用。在裸鼠原位人 U-87 MG-Luc2 肿瘤中的研究表明,Ang-TMZ-LMNVs 可以在局部给药后在肿瘤中积聚并保持,而不会进入健康组织,有效抑制肿瘤侵袭和增殖,并在与 AMF 刺激联合使用时显著延长中位生存时间。这种强大的协同方法已被证明是一种有效的 GBM 治疗的强大而通用的纳米平台。