Suppr超能文献

接枝官能团的水溶性对基于聚(D,L-丙交酯)(PLA)的纳米粒子的物理化学性质的影响。

Effect of aqueous solubility of grafted moiety on the physicochemical properties of poly(d,l-lactide) (PLA) based nanoparticles.

机构信息

C.P. 6128, succursale centre-ville, Montréal, Québec, Canada H3C 3J7.

出版信息

Int J Pharm. 2010 Mar 30;388(1-2):263-73. doi: 10.1016/j.ijpharm.2009.12.059. Epub 2010 Jan 8.

Abstract

In order to evaluate the solubility effect of grafted moiety on the physicochemical properties of poly(d,l-lactide) (PLA) based nanoparticles (NPs), two materials of completely different aqueous solubility, polyethylene glycol (PEG) and palmitic acid were grafted on PLA backbone at nearly the same grafting density, 2.5% (mol of grafted moiety/mol of lactic acid monomer). Blank and ibuprofen-loaded NPs were fabricated from both polymers and their properties were compared to PLA homopolymer NPs as a control. NPs were analyzed for major physicochemical parameters such as encapsulation efficiency, size and size distribution, surface charge, thermal properties, surface chemistry, % poly(vinyl alcohol) (PVA) adsorbed at the surface of NPs, and drug release pattern. Encapsulation efficiency of ibuprofen was found to be nearly the same for both polymers approximately 36% and 39% for PEG2.5%-g-PLA and palmitic acid2.5%-g-PLA NPs, respectively. Lyophilized NPs of palmitic acid2.5%-g-PLA either blank or loaded showed larger hydrodynamic diameter ( approximately 180nm) than PEG2.5%-g-PLA NPs ( approximately 135nm). PEG2.5%-g-PLA NPs showed lower % of PVA adsorbed at their surface ( approximately 5%, w/w) than palmitic acid2.5%-g-PLA NPs ( approximately 10%, w/w). Surface charge of palmitic acid2.5%-g-PLA NPs seems to be influenced by the large amount of PVA remains associated within their matrix. Thermal analysis using DSC revealed possible drug crystallization inside NPs. Both AFM phase imaging and XPS studies revealed the tendency of PEG chains to migrate towards the surface of PEG2.5%-g-PLA NPs. While, XPS analysis of palmitic acid2.5%-g-PLA NPs showed the tendency of palmitate chains to position themselves into the inner core of the forming particle avoiding facing the aqueous phase during NPs preparation using O/W emulsion method. The in vitro release pattern showed that PEG2.5%-g-PLA NPs exhibited faster release rates than palmitic acid2.5%-g-PLA NPs. PEG and palmitate chains when grafted onto PLA backbone, different modes of chain organization during NPs formation were obtained, affecting the physicochemical properties of the obtained NPs. The obtained results suggest that the properties of PLA-based NPs can be tuned by judicious selection of both chemistry and solubility profile of grafted material over PLA backbone.

摘要

为了评估接枝部分对聚(D,L-乳酸)(PLA)基纳米粒子(NPs)理化性质的溶解效应,将两种水溶性完全不同的物质——聚乙二醇(PEG)和棕榈酸接枝到 PLA 主链上,接枝密度相近,均为 2.5%(接枝部分的摩尔数/乳酸单体的摩尔数)。由这两种聚合物制备空白和布洛芬负载的 NPs,并将其性能与 PLA 均聚物 NPs 进行比较作为对照。分析 NPs 的主要理化参数,如包封效率、粒径和粒径分布、表面电荷、热性能、表面化学、NPs 表面吸附的聚乙烯醇(PVA)的%、药物释放模式。布洛芬的包封效率对于两种聚合物几乎相同,PEG2.5%-g-PLA 和棕榈酸 2.5%-g-PLA NPs 的分别约为 36%和 39%。冻干的棕榈酸 2.5%-g-PLA NPs 无论是空白还是负载的,水动力直径都比 PEG2.5%-g-PLA NPs(约 135nm)大(约 180nm)。PEG2.5%-g-PLA NPs 表面吸附的 PVA 量(约 5%,w/w)低于棕榈酸 2.5%-g-PLA NPs(约 10%,w/w)。棕榈酸 2.5%-g-PLA NPs 的表面电荷似乎受到大量 PVA 仍然存在于其基质中的影响。使用 DSC 的热分析显示出药物可能在 NPs 内部结晶。原子力显微镜相成像和 XPS 研究都表明,PEG 链有向 PEG2.5%-g-PLA NPs 表面迁移的趋势。而,XPS 分析表明棕榈酸 2.5%-g-PLA NPs 中棕榈酸链的倾向是将自身定位到形成粒子的内核中,避免在使用 O/W 乳液法制备 NPs 时与水相接触。体外释放模式表明,PEG2.5%-g-PLA NPs 的释放速度比棕榈酸 2.5%-g-PLA NPs 更快。PEG 和棕榈酸链接枝到 PLA 主链上时,在 NPs 形成过程中获得了不同的链组织模式,这影响了所得到的 NPs 的理化性质。研究结果表明,可以通过明智地选择接枝材料的化学性质和在 PLA 主链上的溶解度分布来调节 PLA 基 NPs 的性质。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验