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Synthesis and Self-Assembly of Xylan-Based Amphiphiles: From Bio-Based Vesicles to Antifungal Properties

机译:基于木聚两性的合成与自组装:从生物基囊泡到抗真菌性质

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摘要

This work aims at designing functional biomaterials through selective chemical modification of xylan from beechwood. Acidic hydrolysis of xylan led to well-defined oligomers with an average of six xylose units per chain and with an aldehyde group at the reductive end. Reductive amination was performed on this aldehyde end group to introduce an azide reactive group. "Click chemistry" was then applied to couple these hydrophilic xylans moieties with different hydrophobic fatty acid methyl esters that were previously functionalized with complementary alkyne functions. The resulting amphiphilic bio-based conjugates were then self-assembled using three different methods, namely, direct solubilization, thin-film rehydration/extrusion, and microfluidics. Well-defined micelles and vesicles were obtained, and their high loading capacity with propiconazole as an antifungal active molecule was shown. The resulting vesicles loaded with propiconazole in a microfluidic process proved to significantly improve the antifungal activity of propiconazole, demonstrating the high potential of such xylan-based amphiphiles.
机译:这项工作旨在通过从Beechwood的Xylan的选择性化学改性来设计功能生物材料。木聚糖的酸性水解导致明确定义的低聚物,平均每种链的六个木糖单元和还原末端的醛基。在该醛末端组进行还原胺化以引入叠氮化物反应性基团。然后施用“点击化学”以将这些亲水性含有不同的疏水性脂肪酸甲酯与先前用互补alkyne功能官能团官能化的。然后使用三种不同的方法,即直接溶解,薄膜再水合/挤出和微流体自组装成型两亲生物基缀合物。确定了定义明确的胶束和囊泡,并且显示了它们作为抗真菌活性分子的丙酰唑的高负载能力。在微流体过程中载有丙铵的所得囊泡被证明是显着改善丙酰唑的抗真菌活性,证明了这种基于木聚的两亲物的高潜力。

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