Department of Pharmacology and Immunotherapy, Veterinary Research Institute, Brno, Czech Republic.
Technical University of Liberec, Institute for Nanomaterials, Advanced Technologies and Innovation, Liberec, Czech Republic.
J Control Release. 2017 Mar 10;249:183-195. doi: 10.1016/j.jconrel.2016.07.036. Epub 2016 Jul 25.
Nanofibre-based mucoadhesive films were invented for oromucosal administration of nanocarriers used for delivery of drugs and vaccines. The mucoadhesive film consists of an electrospun nanofibrous reservoir layer, a mucoadhesive film layer and a protective backing layer. The mucoadhesive layer is responsible for tight adhesion of the whole system to the oral mucosa after application. The electrospun nanofibrous reservoir layer is intended to act as a reservoir for polymeric and lipid-based nanoparticles, liposomes, virosomes, virus-like particles, dendrimers and the like, plus macromolecular drugs, antigens and/or allergens. The extremely large surface area of nanofibrous reservoir layers allows high levels of nanoparticle loading. Nanoparticles can either be reversibly adsorbed to the surface of nanofibres or they can be deposited in the pores between the nanofibres. After mucosal application, nanofibrous reservoir layers are intended to promote prolonged release of nanoparticles into the submucosal tissue. Reversible adsorption of model nanoparticles as well as sufficient mucoadhesive properties were demonstrated. This novel system appears appropriate for the use in oral mucosa, especially for sublingual and buccal tissues. To prove this concept, trans-/intramucosal and lymph-node delivery of PLGA-PEG nanoparticles was demonstrated in a porcine model. This system can mainly be used for sublingual immunization and the development of "printed vaccine technology".
纳米纤维基黏膜粘附膜是为经口黏膜给予纳米载体而发明的,用于药物和疫苗的传递。黏膜粘附膜由静电纺纳米纤维储库层、黏膜粘附膜层和保护背衬层组成。黏膜粘附层负责在给药后使整个系统与口腔黏膜紧密粘附。静电纺纳米纤维储库层旨在作为聚合物和基于脂质的纳米粒子、脂质体、病毒体、类病毒颗粒、树枝状聚合物等的储库,以及高分子药物、抗原和/或过敏原。纳米纤维储库层的极高表面积允许高载量的纳米粒子。纳米粒子可以可逆地吸附到纳米纤维的表面上,也可以沉积在纳米纤维之间的孔隙中。经黏膜给药后,纳米纤维储库层旨在促进纳米粒子向黏膜下组织的持续释放。已证明模型纳米粒子的可逆吸附和足够的黏膜粘附性能。这种新型系统似乎适用于口腔黏膜,特别是舌下和颊部组织。为了验证这一概念,在猪模型中证明了 PLGA-PEG 纳米粒子的经黏膜/黏膜内和淋巴结传递。该系统主要可用于舌下免疫和“打印疫苗技术”的开发。