Department of Pharmaceutical and Toxicological Chemistry, University of Naples Federico II, Naples, Italy.
J Control Release. 2012 Jan 10;157(1):149-59. doi: 10.1016/j.jconrel.2011.08.010. Epub 2011 Aug 16.
Although few experimental studies have been handled so far to exploit the potential of poly(lactic-co-glycolic acid) (PLGA) nanoparticles (NPs) in the production of dry powders for antibiotic inhalation, there has been no comprehensive study on the role played by NP composition. In this work, we try to shed light on this aspect by designing and developing a pulmonary delivery system for antibiotics, such as tobramycin (Tb), based on PLGA NPs embedded in an inert microcarrier made of lactose, referred to as nano-embedded micro-particles (NEM). At nanosize level, helper hydrophilic polymers were used to impart the desired surface, bulk and release properties to PLGA NPs prepared by a modified emulsion-solvent diffusion technique. Results showed that poly(vinyl alcohol) (PVA) and chitosan (CS) are essential to optimise the size and modulate the surface properties of Tb-loaded PLGA NPs, whereas the use of alginate (Alg) allows efficient Tb entrapment within NPs and its release up to one month. Optimized formulations display good in vitro antimicrobial activity against P. aeruginosa planktonic cells. Furthermore, spray-drying of the NPs with lactose yielded NEM with peculiar but promising flow and aerosolization properties, while preserving the peculiar NP features. Nonetheless, in vivo biodistribution studies showed that PVA-modified Alg/PLGA NPs reached the deep lung, while CS-modified NPs were found in great amounts in the upper airways, lining lung epithelial surfaces. In conclusion, PLGA NP composition appears to play a crucial role in determining not only the technological features of NPs but, once processed in the form of NEM, also their in vitro/in vivo deposition pattern.
尽管迄今为止,很少有实验研究利用聚(乳酸-共-乙醇酸)(PLGA)纳米颗粒(NPs)的潜力来生产抗生素吸入用干粉,但对于 NP 组成所起的作用还没有进行全面的研究。在这项工作中,我们试图通过设计和开发一种抗生素肺部给药系统来阐明这一方面,该系统基于嵌入乳糖惰性微载体中的 PLGA NPs,称为纳米嵌入微颗粒(NEM)。在纳米尺寸水平上,使用亲水性辅助聚合物赋予 PLGA NPs 所需的表面、体相和释放特性,这些 NPs 是通过改良的乳液-溶剂扩散技术制备的。结果表明,聚(乙烯醇)(PVA)和壳聚糖(CS)对于优化 PLGA NPs 的大小和调节其表面性质至关重要,而藻酸盐(Alg)的使用则允许将 Tb 有效包埋在 NPs 内,并在一个月内释放。优化的配方显示出对浮游菌的良好体外抗菌活性。此外,将 NPs 与乳糖喷雾干燥得到具有特殊但有前途的流动和雾化特性的 NEM,同时保持了 NPs 的独特特性。尽管如此,体内分布研究表明,PVA 修饰的 Alg/PLGA NPs 到达肺部深处,而 CS 修饰的 NPs 在上呼吸道中大量存在,覆盖肺上皮表面。总之,PLGA NP 组成似乎不仅对 NPs 的技术特性起着关键作用,而且一旦以 NEM 的形式加工,还决定了它们的体外/体内沉积模式。