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Theranostic 3-Dimensional nano brain-implant for prolonged and localized treatment of recurrent glioma

机译:三维3维纳米脑植入物用于复发性神经胶质瘤的长期和局部治疗

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摘要

Localized and controlled delivery of chemotherapeutics directly in brain-tumor for prolonged periods may radically improve the prognosis of recurrent glioblastoma. Here, we report a unique method of nanofiber by fiber controlled delivery of anti-cancer drug, Temozolomide, in orthotopic brain-tumor for one month using flexible polymeric nano-implant. A library of drug loaded (20 wt%) electrospun nanofiber of PLGA-PLA-PCL blends with distinct in vivo brain-release kinetics (hours to months) were numerically selected and a single nano-implant was formed by co-electrospinning of nano-fiber such that different set of fibres releases the drug for a specific periods from days to months by fiber-by-fiber switching. Orthotopic rat glioma implanted wafers showed constant drug release (116.6 μg/day) with negligible leakage into the peripheral blood (<100 ng) rendering ~1000 fold differential drug dosage in tumor versus peripheral blood. Most importantly, implant with one month release profile resulted in long-term (>4 month) survival of 85.7% animals whereas 07 day releasing implant showed tumor recurrence in 54.6% animals, rendering a median survival of only 74 days. In effect, we show that highly controlled drug delivery is possible for prolonged periods in orthotopic brain-tumor using combinatorial nanofibre libraries of bulk-eroding polymers, thereby controlling glioma recurrence.
机译:长期在脑肿瘤中直接局部进行化学治疗的控制可从根本上改善复发性胶质母细胞瘤的预后。在这里,我们报告了一种纳米纤维的独特方法,即使用柔性聚合物纳米植入物在原位脑肿瘤中通过纤维控制的抗癌药物替莫唑胺在原位脑肿瘤中的传递,为期一个月。通过数字选择具有不同体内脑释放动力学(数小时至数月)的PLGA-PLA-PCL共混物的载药(20%wt%)电纺纳米纤维库,并通过纳米共电纺丝形成单个纳米植入物这样,通过逐个光纤切换,不同组的光纤可以在几天到几个月的特定时间内释放药物。原位大鼠神经胶质瘤植入的华夫饼显示出恒定的药物释放(116.6μg/天),而渗入外周血的渗漏微乎其微(<100μng),这使得肿瘤与外周血的药物剂量差异约为1000倍。最重要的是,具有一个月释放曲线的植入物可导致85.7%的动物长期存活(> 4个月),而可释放7天的植入物则有54.6%的动物复发,中位生存期仅为74天。实际上,我们显示使用大量侵蚀性聚合物的组合纳米纤维文库,可以在原位脑肿瘤中长时间高度控制药物递送,从而控制神经胶质瘤的复发。

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