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Potent and Selective BACE-1 Peptide Inhibitors Lower Brain Aβ Levels Mediated by Brain Shuttle Transport

机译:有力和选择性的BACE-1肽抑制剂可降低脑穿梭转运介导的大脑Aβ水平。

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摘要

Therapeutic approaches to fight Alzheimer's disease include anti-Amyloidβ (Aβ) antibodies and secretase inhibitors. However, the blood-brain barrier (BBB) limits the brain exposure of biologics and the chemical space for small molecules to be BBB permeable. The Brain Shuttle (BS) technology is capable of shuttling large molecules into the brain. This allows for new types of therapeutic modalities engineered for optimal efficacy on the molecular target in the brain independent of brain penetrating properties. To this end, we designed BACE1 peptide inhibitors with varying lipid modifications with single-digit picomolar cellular potency. Secondly, we generated active-exosite peptides with structurally confirmed dual binding mode and improved potency. When fused to the BS via sortase coupling, these BACE1 inhibitors significantly reduced brain Aβ levels in mice after intravenous administration. In plasma, both BS and non-BS BACE1 inhibitor peptides induced a significant time- and dose-dependent decrease of Aβ. Our results demonstrate that the BS is essential for BACE1 peptide inhibitors to be efficacious in the brain and active-exosite design of BACE1 peptide inhibitors together with lipid modification may be of therapeutic relevance.
机译:对抗阿尔茨海默氏病的治疗方法包括抗淀粉样β(Aβ)抗体和分泌酶抑制剂。但是,血脑屏障(BBB)限制了生物制剂的大脑暴露以及小分子具有BBB渗透性的化学空间。 Brain Shuttle(BS)技术能够将大分子穿梭到大脑中。这允许设计新型的治疗方法,以实现对大脑中分子靶标的最佳疗效,而与大脑的穿透特性无关。为此,我们设计了具有不同脂质修饰的BACE1肽抑制剂,其单位位数的皮摩尔细胞效价。其次,我们生成了具有结构确证的双重结合模式和更高效力的活性异位肽。当通过分选酶偶联与BS融合时,这些BACE1抑制剂可在静脉内给药后显着降低小鼠的大脑Aβ水平。在血浆中,BS和非BS BACE1抑制剂肽均可引起Aβ的明显时间依赖性和剂量依赖性降低。我们的结果表明,BS对于BACE1肽抑制剂在大脑中的有效作用至关重要,BACE1肽抑制剂的主动外位设计以及脂质修饰可能具有治疗意义。

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