Department of Pharmacology, School of Biological Sciences, Universidad de Concepcion, Concepcion, Chile.
Department of Biology, School of Biological Sciences & Engineering, Yachay Tech University, San Miguel de Urcuqui, Ecuador.
Curr Pharm Biotechnol. 2021;22(11):1394-1403. doi: 10.2174/1389201022666210104115224.
The main obstacle to biopharmaceutical delivery in therapeutic concentration into the brain for treating neurological disorders is the presence of the Blood-Brain Barrier (BBB). The physiological process of Receptor-Mediated Transcytosis (RMT) to transport cargo through the brain endothelial cells toward brain parenchyma has prompted researchers to search for non-natural ligands that can be used to transport drugs across the BBB. Conjugation of drugs to RMT ligands would be an effective strategy for its delivery to the central nervous system. An attractive approach to identify novel transcytosing ligands is the screening by phage display combinatorial libraries. The main technology strength lies in the large variety of exogenous peptides or proteins displayed on the phage's surface. Here, we provide a mini-review of phage display technology using in vitro and in vivo BBB models for the development of peptide-mediated drug delivery systems.
治疗神经疾病时,将生物制药以治疗浓度递送至大脑的主要障碍是血脑屏障(BBB)的存在。受体介导的胞吞作用(RMT)将货物穿过脑内皮细胞运送到脑实质的生理过程促使研究人员寻找可用于将药物穿过 BBB 的非天然配体。将药物与 RMT 配体缀合将是向中枢神经系统递送药物的有效策略。鉴定新型转胞吞配体的一种有吸引力的方法是通过噬菌体展示组合文库进行筛选。该技术的主要优势在于噬菌体表面展示的大量外源肽或蛋白质。在这里,我们提供了一个关于噬菌体展示技术的简要综述,该技术使用体外和体内 BBB 模型来开发肽介导的药物递送系统。