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首页> 外文期刊>Science Advances >Dense hydroxyl polyethylene glycol dendrimer targets activated glia in multiple CNS disorders
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Dense hydroxyl polyethylene glycol dendrimer targets activated glia in multiple CNS disorders

机译:致密羟基聚乙二醇树突靶向多个CNS疾病中的激活胶质胶质

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摘要

Poor transport of neuropharmaceutics through central nervous system (CNS) barriers limits the development of effective treatments for CNS disorders. We present the facile synthesis of a novel neuroinflammation-targeting polyethylene glycol–based dendrimer (PEGOL-60) using an efficient click chemistry approach. PEGOL-60 reduces synthetic burden by achieving high hydroxyl surface density at low generation, which plays a key role in brain penetration and glia targeting of dendrimers in CNS disorders. Systemically administered PEGOL-60 crosses impaired CNS barriers and specifically targets activated microglia/macrophages at the injured site in diverse animal models for cerebral palsy, glioblastoma, and age-related macular degeneration, demonstrating its potential to overcome impaired blood-brain, blood-tumor-brain, and blood-retinal barriers and target key cells in the CNS. PEGOL-60 also exhibits powerful intrinsic anti-oxidant and anti-inflammatory effects in inflamed microglia in vitro. Therefore, PEGOL-60 is an effective vehicle to specifically deliver therapies to sites of CNS injury for enhanced therapeutic outcomes in a range of neuroinflammatory diseases.
机译:通过中枢神经系统(CNS)障碍差的神经羊毛法运输不足限制了CNS障碍的有效治疗的发展。我们使用有效点击化学方法介绍了一种新型神经炎性靶向聚乙二醇基的树突(PEGOL-60)的内容合成。 PEGOL-60通过在低产生的高羟基表面密度下减少合成负担,这在脑穿透和胶林靶向中CNS疾病中的胶导症起着关键作用。系统施用的PEGOL-60在各种动物模型中,在脑瘫,胶质母细胞瘤和年龄相关的黄斑变性的不同动物模型中,在受损的CNS屏障中,特异性靶向受损的CNS屏障和特异性靶向活性的小胶质细胞/巨噬细胞,证明其克服血脑损伤的潜力-Brain,以及CNS中的血管视网膜屏障和靶钥匙细胞。 Pegol-60在体外发炎的微胶质细胞中表现出强大的内在抗氧化剂和抗炎作用。因此,Pegol-60是特异性地将疗法特异性地递送到CNS损伤部位的疗法,以增强一系列神经炎性疾病的治疗结果。

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