Miao Yang-Bao, Lin Yu-Jung, Chen Kuan-Hung, Luo Po-Kai, Chuang Shun-Hao, Yu Yu-Tzu, Tai Hsien-Meng, Chen Chiung-Tong, Lin Kun-Ju, Sung Hsing-Wen
Department of Chemical Engineering and Frontier Research Center on Fundamental and Applied Sciences of Matters, National Tsing Hua University, Hsinchu, Taiwan, Republic of China.
Research Center for Applied Sciences, Academia Sinica, Taipei, Taiwan, Republic of China.
Adv Mater. 2021 Dec;33(51):e2104139. doi: 10.1002/adma.202104139. Epub 2021 Oct 1.
Targeted oral delivery of a drug via the intestinal lymphatic system (ILS) has the advantages of protecting against hepatic first-pass metabolism of the drug and improving its pharmacokinetic performance. It is also a promising route for the oral delivery of vaccines and therapeutic agents to induce mucosal immune responses and treat lymphatic diseases, respectively. This article describes the anatomical structures and physiological characteristics of the ILS, with an emphasis on enterocytes and microfold (M) cells, which are the main gateways for the transport of particulate delivery vehicles across the intestinal epithelium into the lymphatics. A comprehensive overview of recent advances in the rational engineering of particulate vehicles, along with the challenges and opportunities that they present for improving ILS drug delivery, is provided, and the mechanisms by which such vehicles target and transport through enterocytes or M cells are discussed. The use of naturally sourced materials, such as yeast microcapsules and their derived polymeric β-glucans, as novel ILS-targeting delivery vehicles is also reviewed. Such use is the focus of an emerging field of research. Their potential use in the oral delivery of nucleic acids, such as mRNA vaccines, is proposed.
通过肠道淋巴系统(ILS)进行药物的靶向口服给药具有防止药物肝脏首过代谢并改善其药代动力学性能的优点。它也是分别口服递送疫苗和治疗剂以诱导粘膜免疫反应和治疗淋巴疾病的一条有前景的途径。本文描述了ILS的解剖结构和生理特征,重点介绍了肠上皮细胞和微褶(M)细胞,它们是微粒递送载体穿过肠上皮进入淋巴管的主要通道。本文全面概述了微粒载体合理工程的最新进展,以及它们在改善ILS药物递送方面所面临的挑战和机遇,并讨论了此类载体靶向并通过肠上皮细胞或M细胞转运的机制。还综述了使用天然来源的材料,如酵母微胶囊及其衍生的聚合β-葡聚糖,作为新型ILS靶向递送载体。这种用途是一个新兴研究领域的重点。提出了它们在口服递送核酸(如mRNA疫苗)方面的潜在用途。