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HALLOYSITE NANOTUBE VEHICLES FOR DRUG DELIVERY THROUGH A MODEL BLOOD-BRAIN BARRIER

机译:埃洛石纳米管 Vapes Fol 药物递送缓慢 A 模型血脑屏障

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摘要

Epilepsy treatment requires anti-seizure medical formulations; available medications have various painful side effects and penetrate the brain-blood barrier poorly. A promising method is the use of natural clay nanocontainers for drug delivery through this membrane barrier. Halloysites (Hly) are biocompatible, 50-nm diameter tubes with a positively charged, hollow inner lumen and negatively charged outer shell and are available naturally. These characteristics enable them to be versatile as drug loaded 'nano-torpedoes' effectively penetrating cell membranes. The endothelial cells are a major cell type in the blood-brain barrier that provides for the selective permeability separating the circulating blood and allowing only the passage of glucose, water, and amino acids, but not traditional drug formulations. Nanotubes encapsulating rhodamine isothiocyanate and ionomycin penetration through the rat-brain microvascular endothelial cells followed by a prolonged 24-h drug release was demonstrated. A model membrane was set up across 0.4-μm-pore polystyrene transwell supports covered by seeding endothelial and astrocyte cells to mimic the blood-brain barrier in vivo. This barrier demonstrated a dual permeation mechanism (inter-cell accumulation and through-passing) for loaded Hlys, exploiting the potential of this nanoclay in the trans-membrane delivery of drugs. Use of Hly nanotubes as drug carriers to penetrate the brain microvascular endothelial barrier and to deliver the payload displayed a new approach for the treatment of brain diseases such as epilepsy.
机译:癫痫治疗需要抗癫痫药物制剂;现有的药物有各种痛苦的副作用,并且很难穿透脑血屏障。一种很有前途的方法是使用天然粘土纳米容器通过该膜屏障进行药物递送。埃洛石 (Hly) 是生物相容的 50 nm 直径管,具有带正电的空心内腔和带负电荷的外壳,可天然获得。这些特性使它们能够作为载药的“纳米鱼雷”进行多功能,有效地穿透细胞膜。内皮细胞是血脑屏障中的一种主要细胞类型,它提供选择性渗透性,将循环血液分开,只允许葡萄糖、水和氨基酸通过,但不允许传统药物制剂通过。证明了包裹异硫氰酸罗丹明和离子霉素的纳米管通过大鼠脑微血管内皮细胞,然后延长 24 小时药物释放。在0.4μm孔隙的聚苯乙烯transwell载体上建立模型膜,该支持物被接种的内皮细胞和星形胶质细胞覆盖,以模拟体内的血脑屏障。该屏障展示了负载Hlys的双重渗透机制(细胞间积累和通过),利用了这种纳米粘土在药物跨膜递送中的潜力。使用Hly纳米管作为药物载体穿透脑微血管内皮屏障并递送有效载荷,展示了治疗癫痫等脑部疾病的新方法。

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