Receptor-mediated transcytosis for brain delivery of therapeutics: receptor classes and criteria

A. Haqqani, Kasandra Bélanger, Danica B. Stanimirovic
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Abstract

The delivery of therapeutics into the brain is highly limited by the blood-brain barrier (BBB). Although this is essential to protect the brain from potentially harmful material found in the blood, it poses a great challenge for the treatment of diseases affecting the central nervous system (CNS). Substances from the periphery that are required for the function of the brain must rely on active mechanisms of entry. One such physiological pathway is called receptor-mediated transcytosis (RMT). In this process, ligands bind to specific receptors expressed at the luminal membrane of endothelial cells composing the BBB leading to the internalization of the receptor-ligand complex into intracellular vesicles, their trafficking through various intracellular compartments and finally their fusion with the abluminal membrane to release the cargo into the brain. Targeting such RMT receptors for BBB crossing represents an emerging and clinically validated strategy to increase the brain permeability of biologicals. However, the choice of an appropriate receptor is critical to achieve the best selectivity and efficacy of the delivery method. Whereas the majority of work has been focused on transferrin (Tf) receptor (TfR), the search for novel receptors expressed in brain endothelial cells (BECs) that can deliver protein or viral vector cargos across the BBB has yielded several novel targets with diverse molecular/structural properties and biological functions, and mechanisms of transcytosis. In this review, we summarize well-studied RMT pathways, and explore mechanisms engaged in BBB transport by various RMT receptors. We then discuss key criteria that would be desired for an optimal RMT target, based on lessons-learned from studies on TfR and accumulating experimental evidence on emerging RMT receptors and their ligands.
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通过受体介导的转囊作用向大脑输送治疗药物:受体类别和标准
治疗药物进入大脑受到血脑屏障(BBB)的极大限制。虽然这对保护大脑免受血液中潜在有害物质的影响至关重要,但对治疗影响中枢神经系统(CNS)的疾病却构成了巨大挑战。大脑功能所需的外周物质必须依靠活性机制进入大脑。其中一种生理途径被称为受体介导的转囊作用(RMT)。在这一过程中,配体与构成 BBB 的内皮细胞腔膜上表达的特异性受体结合,导致受体-配体复合物内化成细胞内囊泡,通过各种细胞内分区进行转运,最后与腔膜融合,将货物释放到大脑中。以这种 RMT 受体为靶点穿越 BBB 是一种新兴的、经过临床验证的增加生物制剂脑渗透性的策略。然而,选择合适的受体对于实现递送方法的最佳选择性和有效性至关重要。虽然大部分工作都集中在转铁蛋白(Tf)受体(TfR)上,但在寻找脑内皮细胞(BECs)中表达的、能将蛋白质或病毒载体货物递送过 BBB 的新型受体的过程中,我们发现了几个具有不同分子/结构特性、生物功能和转运机制的新型靶点。在这篇综述中,我们总结了研究充分的 RMT 途径,并探讨了各种 RMT 受体参与 BBB 转运的机制。然后,我们将根据从 TfR 研究中汲取的经验教训以及不断积累的新兴 RMT 受体及其配体的实验证据,讨论最佳 RMT 靶点的关键标准。
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