Yu Yinglan, Li Shujie, Yao Yuan, Shen Xinran, Li Lian, Huang Yuan
Key Laboratory of Drug-Targeting and Drug Delivery System of the Education Ministry and Sichuan Province, Sichuan Engineering Laboratory for Plant-Sourced Drug and Sichuan Research Center for Drug Precision Industrial Technology, West China School of Pharmacy, Sichuan University, Chengdu, 610041, China.
Bioact Mater. 2022 Jun 28;20:539-547. doi: 10.1016/j.bioactmat.2022.06.016. eCollection 2023 Feb.
Inhaled nanoparticles (NPs) need to penetrate the bronchial mucosa to deliver drug payloads deeply in the lung for amplified local therapy. However, the bronchial mucociliary barrier eliminates NPs rapidly, which considerably limits their mucosal penetration. In this study, we find that surface ligand modification and stiffness adjustment of NPs contribute to the significantly enhanced bronchial mucosal absorption and pulmonary retention of inhaled drugs. We utilize neonatal Fc receptor ligand (FcBP) to modify the rationally designed low stiffness NPs (Soft-NP) and high stiffness NPs (Stiff-NP) to target bronchial mucosa. In an acute lung inflammation rat model, after intranasal administration with dexamethasone-loaded NPs, Stiff-NP endowed with FcBP displays superior therapeutic effects. The data demonstrate that the promotion effect of FcBP to bronchial mucosal absorption of Stiff-NP dominates over Soft-NP. This could be attributed to the higher affinity between ligand-receptor when incorporating FcBP on the Stiff-NP surface. Meanwhile, high stiffness modulates more actin filaments aggregation to mediate endocytosis, along with strengthened Ca signal to enhance exocytosis. Conclusively, we highlight that FcBP-modified NPs with higher stiffness would be a potential pulmonary drug delivery system.
吸入性纳米颗粒(NPs)需要穿透支气管黏膜,以便将药物有效载荷深入递送至肺部,从而增强局部治疗效果。然而,支气管黏液纤毛屏障会迅速清除纳米颗粒,这在很大程度上限制了它们的黏膜穿透能力。在本研究中,我们发现纳米颗粒的表面配体修饰和硬度调节有助于显著增强吸入药物的支气管黏膜吸收和肺部滞留。我们利用新生儿Fc受体配体(FcBP)对合理设计的低硬度纳米颗粒(Soft-NP)和高硬度纳米颗粒(Stiff-NP)进行修饰,以靶向支气管黏膜。在急性肺部炎症大鼠模型中,经鼻给予载有地塞米松的纳米颗粒后,赋予FcBP的Stiff-NP显示出卓越的治疗效果。数据表明,FcBP对Stiff-NP支气管黏膜吸收的促进作用优于Soft-NP。这可能归因于在Stiff-NP表面掺入FcBP时配体-受体之间具有更高的亲和力。同时,高硬度调节更多肌动蛋白丝聚集以介导内吞作用,同时增强Ca信号以增强胞吐作用。总之,我们强调具有更高硬度的FcBP修饰纳米颗粒将是一种潜在的肺部给药系统。