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Discovery, isolation, characterization and biomedical application of the Acinetobacter Polyelectrolytic Exopolysaccharide (APE).

机译:不动杆菌属聚电解外多糖(APE)的发现,分离,表征和生物医学应用。

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Bacterial polysaccharides are a class of biomaterials that have extensive industrial and biomedical applications. The primary advantages of these polymers are their ease of production, biodegradability and biocompatibility. Emulsan, an amphiphilic anionic, lipoheteropolysaccharide is an example of such a polysaccharide. While it has been traditionally used in industrial applications for its ability to stabilize oil-in-water emulsions, recent research has changed the focus to biomedical uses, making apparent the need to develop a more robust and effective purification process for emulsan. During the course of process development, it was discovered that emulsan was not a homogenous polysaccharide, but rather a complex of low molecular weight lipopolysaccharide and a high molecular weight polysaccharide now termed the Acinetobacter Polyelectrolytic Exopolysaccharide (APE).;Research demonstrated that APE was the emulsion stabilizing component of the emulsan complex. This discovery led to a complete physical and chemical characterization of the polysaccharide in order to develop a model describing its emulsion stabilization ability. Using the knowledge generated by the characterization studies, solid lipid nanoparticles to deliver the chemotherapeutic drug paclitaxel were developed using APE as one of the primary constituents. Based on the results described in this dissertation, APE was shown to be a potentially useful biomaterial for future biomedical and industrial applications.
机译:细菌多糖是一类具有广泛的工业和生物医学应用的生物材料。这些聚合物的主要优点是易于生产,生物降解性和生物相容性。两性的阴离子脂杂多糖Emulsan是这种多糖的一个例子。尽管传统上由于其具有稳定水包油乳液的能力而一直在工业应用中使用,但最近的研究已将重点转移到生物医学用途上,显然需要开发一种更健壮和有效的乳油纯化工艺。在工艺开发过程中,发现乳油不是均质多糖,而是低分子量脂多糖和高分子量多糖的复合物,现在称为不动杆菌聚电解外多糖(APE)。乳液复合物中的乳液稳定成分。该发现导致了多糖的完整的物理和化学表征,以开发描述其乳液稳定能力的模型。利用表征研究获得的知识,使用APE作为主要成分之一,开发了可递送化疗药物紫杉醇的固体脂质纳米颗粒。根据本文描述的结果,APE被证明是潜在的有用的生物材料,用于未来的生物医学和工业应用。

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