具有 "呼吸图 "形态的聚乳酸(PLGA)旋涂薄膜的体外降解和释放特性。

Biomatter Pub Date : 2012-04-01 DOI:10.4161/biom.20390
Thiruselvam Ponnusamy, Louise B Lawson, Lucy C Freytag, Diane A Blake, Ramesh S Ayyala, Vijay T John
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引用次数: 0

摘要

植入材料上的聚(乳酸-共聚乙醇酸)(PLGA)涂层被广泛应用于可控给药领域。通常情况下,这种涂层是用无孔薄膜制成的。在这里,我们采用简单廉价的水模板 "呼吸图 "技术合成了具有高度有序微孔结构的 PLGA 薄膜涂层。我们采用旋涂和呼吸图工艺相结合的单阶段工艺,获得了含有药物的多孔薄膜。利用扫描电子显微镜(SEM)对薄膜进行了表征,以观察多孔结构的表面和体积特征,以及薄膜的降解模式。此外,还对在聚乳酸乙二醇(PLGA)中添加少量聚乙二醇(PEG)的效果进行了表征。扫描电子显微镜分析表明,薄膜表面有序排列着 ~2 微米大小的孔隙,薄膜平均厚度为 20 微米。亲水性聚乙二醇(PEG)的加入增强了孔隙结构的均匀性,并有利于水分进入孔隙结构。为期五周的体外降解研究表明,呼吸图孔会逐渐退化。在降解过程中,表面孔隙结构会恶化,最初会使表面变平。随后会形成新的针孔,最终在薄膜破裂前形成大孔薄膜。我们选择了水杨酸(高水溶性)和布洛芬(稀水溶性)作为模型药物化合物来表征释放率,在呼吸图形态的薄膜中释放率要高于无孔薄膜。这些结果对设计用作涂层的可生物降解薄膜以调节给药具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

In vitro degradation and release characteristics of spin coated thin films of PLGA with a "breath figure" morphology.

In vitro degradation and release characteristics of spin coated thin films of PLGA with a "breath figure" morphology.

In vitro degradation and release characteristics of spin coated thin films of PLGA with a "breath figure" morphology.

In vitro degradation and release characteristics of spin coated thin films of PLGA with a "breath figure" morphology.

Poly (lactic-co-glycolic acid) (PLGA) coatings on implant materials are widely used in controlled drug delivery applications. Typically, such coatings are made with non-porous films. Here, we have synthesized a thin PLGA film coating with a highly ordered microporous structure using a simple and inexpensive water templating "breath figure" technique. A single stage process combining spin coating and breath figure process was used to obtain drug incorporated porous thin films. The films were characterized by scanning electron microscope (SEM) to observe the surface and bulk features of porosity and also, degradation pattern of the films. Moreover, the effect of addition of small amount of poly (ethylene glycol) (PEG) into PLGA was characterized. SEM analysis revealed an ordered array of ~2 µm sized pores on the surface with the average film thickness measured to be 20 µm. The incorporation of hydrophilic poly (ethylene glycol) (PEG) enhances pore structure uniformity and facilitates ingress of water into the structure. A five week in vitro degradation study showed a gradual deterioration of the breath figure pores. During the course of degradation, the surface pore structure deteriorates to initially flatten the surface. This is followed by the formation of new pinprick pores that eventually grow into a macroporous film prior to film breakup. Salicylic acid (highly water soluble) and Ibuprofen (sparingly water soluble) were chosen as model drug compounds to characterize release rates, which are higher in films of the breath figure morphology rather than in non-porous films. The results are of significance in the design of biodegradable films used as coatings to modulate delivery.

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