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Engineered nanoparticles for systemic siRNA delivery to malignant brain tumours

机译:工程纳米颗粒的系统性核交付恶性脑肿瘤

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摘要

Improved delivery materials are needed to enable siRNA transport across biological barriers, including the blood-brain barrier (BBB), to treat diseases like brain cancer. We engineered bioreducible nanoparticles for systemic siRNA delivery to patient-derived glioblastoma cells in an orthotopic mouse tumor model. We first utilized a newly developed biomimetic in vitro model to evaluate and optimize the performance of the engineered bioreducible nanoparticles at crossing the brain microvascular endothelium. We performed transmission electron microscopy imaging which indicated that the engineered nanoparticles are able to cross the BBB endothelium via a vesicular mechanism. The nanoparticle formulation engineered to best cross the BBB model in vitro led to safe delivery across the BBB to the brain in vivo. The nanoparticles were internalized by human brain cancer cells, released siRNA to the cytosol via environmentally-triggered degradation, and gene silencing was obtained both in vitro and in vivo. This study opens new frontiers for the in vitro evaluation and engineering of nanomedicines for delivery to the brain, and reports a systemically administered biodegradable nanocarrier for oligonucleotide delivery to treat glioma.
机译:改进交付启用所需材料核运输跨越生物屏障,包括血脑屏障(BBB)治疗大脑癌症等疾病。bioreducible系统性siRNA纳米颗粒交付patient-derived胶质母细胞瘤细胞一个老鼠原位肿瘤模型。利用新开发的仿生体外模型评估和优化的性能这些工程bioreducible纳米颗粒穿过大脑微血管内皮。进行透射电子显微镜成像表明,工程纳米粒子能够穿过BBB内皮细胞通过一个水泡机制。纳米颗粒配方设计最好的十字架BBB模型体外导致安全交付大脑在BBB体内。纳米粒子被人类大脑内化公布的癌细胞核细胞溶质通过环境所引发的退化和基因在体外和体内都沉默了。体外研究打开新的领域纳米药物的评价和工程交付到大脑,和报告系统管理可降解nanocarrier为寡核苷酸治疗神经胶质瘤交付。

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