College of Pharmacy, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang, 110016, Liaoning, China.
Key Laboratory of Structure-Based Drug Design & Discovery of Ministry of Education, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang, 110016, Liaoning, China.
AAPS PharmSciTech. 2021 Jan 3;22(1):16. doi: 10.1208/s12249-020-01870-2.
Many anti-inflammatory therapies targeting neutrophils have been developed so far. A sialic acid (SA)-modified liposomal (SAL) formulation, based on the high expression of L-selectin in peripheral blood neutrophils (PBNs) and SA as its targeting ligand, has proved to be an effective neutrophil-mediated drug delivery system targeting rheumatoid arthritis (RA). The objective of this study was to investigate the influence of particle size of drug-carrying SALs transported and delivered by neutrophils on their anti-RA effect. Dexamethasone palmitate-loaded SALs (DP-SALs) of different particle sizes (300.2 ± 5.5 nm, 150.3 ± 4.3 nm, and 75.0 ± 3.9 nm) were prepared with DP as a model drug. Our study indicated that DP-SALs could efficiently target PBNs, with larger liposomes leading to higher drug accumulation in cells. However, a high intake of large DP-SALs by PBNs inhibited their migration ability and capacity to release the payload at the target site. In contrast, small DP-SALs (75.0 ± 3.9 nm) could maintain the drug delivery potential of PBNs, leading to their efficient accumulation at the inflammatory site, where PBNs would be excessively activated to form neutrophil extracellular traps along with efficient payload release (small DP-SALs) and finally to induce excellent anti-RA effect.
到目前为止,已经开发出许多针对中性粒细胞的抗炎疗法。基于外周血中性粒细胞(PBN)中高表达 L-选择素和唾液酸(SA)作为其靶向配体,一种 SA 修饰的脂质体(SAL)制剂已被证明是一种有效的靶向类风湿关节炎(RA)的中性粒细胞介导的药物递送系统。本研究旨在探讨由中性粒细胞转运和递送至炎症部位的载药 SAL 的颗粒大小对其抗 RA 效果的影响。用 DP 作为模型药物,制备了不同粒径(300.2±5.5nm、150.3±4.3nm 和 75.0±3.9nm)的载地塞米松棕榈酸酯的 SAL(DP-SAL)。我们的研究表明,DP-SAL 可以有效地靶向 PBN,较大的脂质体导致细胞内药物积累更高。然而,PBN 大量摄取大 DP-SAL 会抑制其迁移能力和在靶部位释放有效载荷的能力。相比之下,小 DP-SAL(75.0±3.9nm)可以维持 PBN 的药物递送潜力,使其有效地在炎症部位积聚,在那里 PBN 会被过度激活形成中性粒细胞胞外陷阱,同时有效释放有效载荷(小 DP-SAL),最终诱导出色的抗 RA 效果。