Key Laboratory of Smart Drug Delivery, Ministry of Education, School of Pharmacy, Fudan University, 826 Zhangheng Road, Shanghai, 201203, China.
Department of Neurosurgery, Huashan Hospital, Fudan University, 12 Middle Wulumuqi Road, Shanghai, 200040, China.
Adv Mater. 2017 Jun;29(21). doi: 10.1002/adma.201603917. Epub 2017 Mar 15.
Surgical resection is a mainstay in the treatment of malignant brain tumors. Surgeons, however, face great challenges in distinguishing tumor margins due to their infiltrated nature. Here, a pair of gold nanoprobes that enter a brain tumor by crossing the blood-brain barrier is developed. The acidic tumor environment triggers their assembly with the concomitant activation of both magnetic resonance (MR) and surface-enhanced resonance Raman spectroscopy (SERRS) signals. While the bulky aggregates continuously trap into the tumor interstitium, the intact nanoprobes in normal brain tissue can be transported back into the blood stream in a timely manner. Experimental results show that physiological acidity triggers nanoparticle assembly by forming 3D spherical nanoclusters with remarkable MR and SERRS signal enhancements. The nanoprobes not only preoperatively define orthotopic glioblastoma xenografts by magnetic resonance imaging (MRI) with high sensitivity and durability in vivo, but also intraoperatively guide tumor excision with the assistance of a handheld Raman scanner. Microscopy studies verify the precisely demarcated tumor margin marked by the assembled nanoprobes. Taking advantage of the nanoprobes' rapid excretion rate and the extracellular acidification as a hallmark of solid tumors, these nanoprobes are promising in improving brain-tumor surgical outcome with high specificity, safety, and universality.
手术切除是治疗恶性脑肿瘤的主要方法。然而,由于肿瘤具有浸润性,外科医生在区分肿瘤边界时面临着巨大的挑战。在这里,我们开发了一对可以通过血脑屏障进入脑肿瘤的金纳米探针。酸性肿瘤环境会触发它们的组装,同时激活磁共振(MR)和表面增强共振拉曼光谱(SERRS)信号。当大的聚集体不断进入肿瘤间质时,正常脑组织中的完整纳米探针可以及时被运回到血流中。实验结果表明,生理酸度通过形成具有显著 MR 和 SERRS 信号增强的 3D 球形纳米簇来触发纳米颗粒的组装。这些纳米探针不仅可以通过磁共振成像(MRI)在体内进行术前对原位脑胶质瘤异种移植进行高灵敏度和耐久性的定位,还可以在手持拉曼扫描仪的帮助下进行术中肿瘤切除的指导。显微镜研究验证了由组装的纳米探针精确标记的肿瘤边界。利用纳米探针的快速排泄率和细胞外酸化作为实体瘤的标志,这些纳米探针有望以高特异性、安全性和通用性来改善脑肿瘤的手术效果。