Roche Informatics, F. Hoffmann-La Roche Ltd, Poznań, Poland.
Expert Opin Drug Deliv. 2023 Jul-Dec;20(12):1699-1711. doi: 10.1080/17425247.2023.2255138. Epub 2023 Sep 15.
The blood-brain barrier (BBB) restricts brain access of virtually all macromolecules. Receptor-mediated transcytosis (RMT) is one strategy toward their brain delivery. In this strategy, targeting ligands conjugated to therapeutic payload or decorating particles containing the payload interact with targets on brain capillary endothelial cells (BCEC), triggering internalization, trafficking, and release from BCEC.
RMT at the BBB has leveraged multiple formats of macromolecules and large particles. Interactions between those and BCEC have been studied primarily using antibodies, with findings applicable to the design of larger particles. BBB-penetrant constructs have also been identified in screening campaigns and directed evolution, and subsequently found to interact with RMT targets. In addition, BCEC targeted by constructs incorporating genomic payload can be made to produce therapeutic proteins.
While targeting may not be strictly necessary to reach a therapeutic effect for all macromolecules, it can improve a molecule's BBB transport, exposing it to the entire brain parenchyma and enhancing its effect. Constructs with better BCEC transcytosis may be designed rationally, leveraging knowledge about BCEC trafficking, and found in screening campaigns, where this knowledge can reduce the search space and improve iterative refinement. Identification of new targets may also help generate BBB-crossing constructs.
血脑屏障(BBB)限制了几乎所有大分子进入大脑。受体介导的胞吞作用(RMT)是一种将治疗性有效载荷递送到大脑的策略。在此策略中,与治疗有效载荷偶联的靶向配体或包载有效载荷的颗粒与脑毛细血管内皮细胞(BCEC)上的靶标相互作用,触发内化、转运和从 BCEC 释放。
RMT 在 BBB 中利用了多种形式的大分子和大颗粒。这些物质与 BCEC 之间的相互作用主要使用抗体进行研究,研究结果适用于更大颗粒的设计。在筛选和定向进化中也发现了能够穿透 BBB 的构建体,随后发现它们与 RMT 靶点相互作用。此外,通过包含基因组有效载荷的构建体靶向 BCEC 可以使其产生治疗性蛋白。
虽然对于所有大分子来说,靶向可能不是达到治疗效果的严格必要条件,但它可以改善分子的 BBB 转运,使其暴露于整个脑实质中,并增强其效果。可以通过利用对 BCEC 转运的了解,从筛选中获得更好的 BCEC 胞吞作用的构建体,从而进行合理设计,从而减少搜索空间并提高迭代改进。新靶点的鉴定也可能有助于产生穿越 BBB 的构建体。