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BBB pathophysiology–independent delivery of siRNA in traumatic brain injury

机译:BBB病理生理学无关的siRNA在创伤性脑损伤中递送

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Small interfering RNA (siRNA)–based therapeutics can mitigate the long-term sequelae of traumatic brain injury (TBI) but suffer from poor permeability across the blood-brain barrier (BBB). One approach to overcoming this challenge involves treatment administration while BBB is transiently breached after injury. However, it offers a limited window for therapeutic intervention and is applicable to only a subset of injuries with substantially breached BBB. We report a nanoparticle platform for BBB pathophysiology–independent delivery of siRNA in TBI. We achieved this by combined modulation of surface chemistry and coating density on nanoparticles, which maximized their active transport across BBB. Engineered nanoparticles injected within or outside the window of breached BBB in TBI mice showed threefold higher brain accumulation compared to nonengineered PEGylated nanoparticles and 50% gene silencing. Together, our data suggest that this nanoparticle platform is a promising next-generation drug delivery approach for the treatment of TBI.
机译:小干扰RNA(siRNA)基础的治疗剂可以减轻创伤性脑损伤的长期后遗症(TBI),但血脑屏障(BBB)的渗透性差。克服这一挑战的一种方法涉及治疗给药,而BBB在伤后瞬时突破。然而,它为治疗干预提供了有限的窗口,并且仅适用于基本上违反BBB的损伤子集。我们报告了纳米粒子平台,用于在TBI中的SiRNA独立于BBB病理生理学递送。我们通过组合表面化学和纳米颗粒上的涂层密度的调节来实现了这一点,这使得它们在BBB上最大化了它们的活性运输。在TBI小鼠中突破BBB窗口内或外部注射的工程化纳米颗粒表现出三重高的脑积累,与非纲要化的聚乙二醇化纳米颗粒和50%基因沉默相比。我们的数据在一起表明,该纳米粒子平台是治疗TBI的前一代药物递送方法。

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