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Preparation of Multifunctional Polysaccharide Microcontainers for Lipophilic Bioactive Agents

机译:亲脂性生物活性剂多功能多糖微容器的制备

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Chitosan/xanthan gum microcontainers with a core—shell structure formed due to chemical interactions between polysaccharide chains induced by ultrasonication are presented. Containers were prepared by sonication of water-immiscible (oil-like) liquids in the solution of polysaccharides. One-step fabrication of the container permanent shell is possible, because of the contribution of ultrasonically caused formation of hydrogen bonds and amide linkages. We synthesized containers in a wide size range from 350 nm to 7500 nm, varying in oil/water ratio. The microcontainers were modified with oppositely charged polyelectrolytes and micro-particles, which could be used to impart the specified properties to the system. The biocide 4,5-dichloro-2-n-octyl-4-isothiazoline-3-one (DCOIT) was loaded into the proposed containers by utilizing its solution as an oil phase. The following incorporation of the DCOIT containers into the polymer coating demonstrated more sustained antimicrobial activity (~30%) of the biocide in the encapsulated state, compared to its non-encapsulated form.
机译:提出了壳聚糖/黄原胶微容器,其具有壳-壳结构,所述壳-壳结构是由于超声诱导的多糖链之间的化学相互作用而形成的。通过将水不混溶(油状)液体在多糖溶液中进行超声处理来制备容器。由于超声引起的氢键和酰胺键形成的贡献,可以一步制造容器永久壳。我们合成了在350 nm至7500 nm宽范围内变化的容器,其油/水比有所不同。微容器用带相反电荷的聚电解质和微粒修饰,可用于赋予系统特定的性能。利用其溶液作为油相,将杀生物剂4,5-二氯-2-正辛基-4-异噻唑啉-3-one(DCOIT)装入拟议的容器中。将DCOIT容器掺入聚合物涂层后,与未包封形式相比,在包封状态下杀菌剂具有更持久的抗菌活性(约30%)。

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