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Macrophages with cellular backpacks for targeted drug delivery to the brain

机译:具有靶向药物递送的细胞背包的巨噬细胞

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Most potent therapeutics are unable to cross the blood-brain barrier following systemic administration, which necessitates the development of unconventional, clinically applicable drug delivery systems. With the given challenges, biologically active vehicles are crucial to accomplishing this task. We now report a new method for drug delivery that utilizes living cells as vehicles for drug carriage across the blood brain barrier. Cellular backpacks, 7-10 mu m diameter polymer patches of a few hundred nanometers in thickness, are a potentially interesting approach, because they can act as drug depots that travel with the cell-carrier, without being phagocytized. Backpacks loaded with a potent antioxidant, catalase, were attached to autologous macrophages and systemically administered into mice with brain inflammation. Using inflammatory response cells enabled targeted drug transport to the inflamed brain. Furthermore, catalase-loaded backpacks demonstrated potent therapeutic effects deactivating free radicals released by activated microglia in vitro. This approach for drug carriage and release can accelerate the development of new drug formulations for all the neurodegenerative disorders. (C) 2017 Published by Elsevier Ltd.
机译:大多数有效的治疗剂无法在全身管理后跨越血脑屏障,这需要发展非常规,临床适用的药物递送系统。通过若干挑战,生物活跃的车辆对于完成这项任务至关重要。我们现在报告了一种新的药物递送方法,其利用活细胞作为用于血脑屏障的药物托架的车辆。细胞背包,厚度为7-10μm的聚合物贴剂,厚度为几百纳米,是一种潜在的有趣方法,因为它们可以充当与细胞载体一起行进的药物储物,而不是吞噬细胞。用有效的抗氧化剂,过氧化氢酶加载的背包附着在自体巨噬细胞上,并系统性地施用脑炎症的小鼠。使用炎症反应细胞使靶向药物输送到发炎的大脑。此外,已加载过氧化酶的背包证明了在体外激活的微胶质释放的自由基效果效果。这种用于药物携带和释放的方法可以加速所有神经变性障碍的新药物制剂的发展。 (c)2017年由elestvier有限公司出版

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