Key Laboratory of Molecular Medicine and Biotherapy, School of Life Science, Beijing Institute of Technology, Beijing, 100081, P. R. China.
State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100190, P. R. China.
Adv Mater. 2021 Jul;33(26):e2100106. doi: 10.1002/adma.202100106. Epub 2021 May 19.
A major challenge in vaccine delivery is to achieve robust lymph-node (LN) accumulation, which can capitalize on concentrated immunocytes and cytokines in LNs to stimulate the onset and persistence of adaptive immune responses. Previous attempts at developing vaccine delivery systems have focused on the sizes, charges, or surface ligands but not on their deformability. In fact, the LN homing of antigen-presenting cells depends on deformability to pass through the cellular gaps. Herein, the deformability of albumin-stabilized emulsions is engineered. Owing to self-adaptive deformability, the droplets (≈330 nm) can attach to and deform between cells and adjust their sizes to pass through the endothelial gaps (20-100 nm), favoring direct LN transfer (intercellular pathway). Additionally, owing to relatively large sizes, some emulsions can be retained at the administration sites for potent antigen uptake and activation of APCs as well as LN-targeted delivery of vaccines (intracellular pathway). Compared with solid particles, the dual LN transfer strategy evidently enhances antigen accumulation and activation of LN drainage, potently stimulates cellular immune responses, and increases the survival rate of tumor-bearing mice. Thus, the deformability of albumin-stabilized droplets may offer an efficient strategy for potent LN targeting and enhanced vaccinations.
疫苗输送的一个主要挑战是实现强大的淋巴结(LN)积累,这可以利用 LN 中集中的免疫细胞和细胞因子来刺激适应性免疫反应的开始和持续。以前开发疫苗输送系统的尝试主要集中在大小、电荷或表面配体上,但没有集中在它们的变形能力上。事实上,抗原呈递细胞的 LN 归巢依赖于变形能力以穿过细胞间隙。在此,白蛋白稳定乳液的变形能力得到了设计。由于自适应变形能力,液滴(≈330nm)可以附着在细胞之间并变形,调整它们的大小以穿过内皮间隙(20-100nm),有利于直接 LN 转移(细胞间途径)。此外,由于相对较大的尺寸,一些乳液可以保留在给药部位,以有效摄取抗原并激活 APC 以及 LN 靶向疫苗输送(细胞内途径)。与固体颗粒相比,双重 LN 转移策略明显增强了抗原在 LN 引流中的积累和激活,有力地刺激了细胞免疫反应,并提高了荷瘤小鼠的存活率。因此,白蛋白稳定液滴的变形能力可能为强大的 LN 靶向和增强疫苗接种提供一种有效的策略。