Wu Lan, Xu Wenwen, Jiang Huiyang, Yang Mingshi, Cun Dongmei
Wuya College of Innovation, Shenyang Pharmaceutical University, Shenyang 110016, China.
Joint International Research Laboratory of Intelligent Drug Delivery Systems, Ministry of Education, Shenyang 110016, China.
Acta Pharm Sin B. 2024 Dec;14(12):5132-5160. doi: 10.1016/j.apsb.2024.08.026. Epub 2024 Nov 4.
The respiratory tract is susceptible to various infections and can be affected by many serious diseases. Vaccination is one of the most promising ways that prevent infectious diseases and treatment of some diseases such as malignancy. Direct delivery of vaccines to the respiratory tract could mimic the natural process of infection and shorten the delivery path, therefore unique mucosal immunity at the first line might be induced and the efficiency of delivery can be high. Despite considerable attempts at the development of respiratory vaccines, the rational formulation design still warrants attention, , how the formulation composition, particle properties, formulation type (liquid or solid), and devices would influence the immune outcome. This article reviews the recent advances in the formulation design and development of respiratory vaccines. The focus is on the state of the art of delivering antigenic compounds through the respiratory tract, overcoming the pulmonary bio-barriers, enhancing delivery efficiencies of respiratory vaccines as well as maintaining the stability of vaccines during storage and use. The choice of devices and the influence of deposition sites on vaccine efficiencies were also reviewed.
呼吸道易受各种感染,且会受到许多严重疾病的影响。疫苗接种是预防传染病和治疗某些疾病(如恶性肿瘤)最有前景的方法之一。将疫苗直接递送至呼吸道可模拟自然感染过程并缩短递送路径,因此可能诱导第一线独特的黏膜免疫,且递送效率较高。尽管在呼吸道疫苗的研发方面进行了大量尝试,但合理的制剂设计仍值得关注,例如制剂组成、颗粒性质、制剂类型(液体或固体)以及给药装置如何影响免疫效果。本文综述了呼吸道疫苗制剂设计与研发的最新进展。重点在于通过呼吸道递送抗原性化合物的技术现状、克服肺部生物屏障、提高呼吸道疫苗的递送效率以及在储存和使用过程中保持疫苗的稳定性。还综述了给药装置的选择以及沉积部位对疫苗效率的影响。