National University of Singapore, Department of Chemical and Biomolecular Engineering, 4 Engineering Drive 4, Singapore, 117585, Singapore.
Nanyang Technological University, School of Materials Science and Engineering, 50 Nanyang Avenue, Singapore, 639798, Singapore.
Nat Commun. 2023 Jul 17;14(1):4269. doi: 10.1038/s41467-023-40015-4.
Delivering cancer therapeutics to tumors necessitates their escape from the surrounding blood vessels. Tumor vasculatures are not always sufficiently leaky. Herein, we engineer therapeutically competent leakage of therapeutics from tumor vasculature with gold nanoparticles capable of inducing endothelial leakiness (NanoEL). These NanoEL gold nanoparticles activated the loss of endothelial adherens junctions without any perceivable toxicity to the endothelial cells. Microscopically, through real time live animal intravital imaging, we show that NanoEL particles induced leakiness in the tumor vessels walls and improved infiltration into the interstitial space within the tumor. In both primary tumor and secondary micrometastases animal models, we show that pretreatment of tumor vasculature with NanoEL particles before therapeutics administration could completely regress the cancer. Engineering tumoral vasculature leakiness represents a new paradigm in our approach towards increasing tumoral accessibility of anti-cancer therapeutics instead of further increasing their anti-cancer lethality.
将癌症治疗药物递送到肿瘤中需要它们从周围的血管中逃逸。肿瘤血管并不总是具有足够的渗漏性。在此,我们使用能够诱导内皮通透性的金纳米粒子(NanoEL)来工程化治疗性渗漏的肿瘤血管。这些 NanoEL 金纳米粒子激活了内皮细胞黏附连接的丧失,而对内皮细胞没有任何可察觉的毒性。通过实时活体动物活体成像,我们在显微镜下显示 NanoEL 颗粒诱导肿瘤血管壁通透性增加,并改善了治疗药物在肿瘤间质中的渗透。在原发性肿瘤和继发性微转移动物模型中,我们表明,在治疗药物给药前用 NanoEL 颗粒预处理肿瘤血管,可以完全使癌症消退。工程化肿瘤血管通透性代表了我们增加抗癌治疗药物进入肿瘤的可及性的新方法,而不是进一步增加其抗癌致死性。