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负载十六烷纳米液滴的聚乙烯醇纳米纤维的静电纺丝。

Electrospinning of poly(vinyl alcohol) nanofibers loaded with hexadecane nanodroplets.

机构信息

Dept. of Food Science and Microbiology, Univ. of Milan, Milan, Italy.

出版信息

J Food Sci. 2010 Aug 1;75(6):N80-8. doi: 10.1111/j.1750-3841.2010.01680.x.

Abstract

The feasibility of producing poly(vinyl alcohol) (PVA) nanofibers containing fine-disperse hexadecane droplets by electrospinning a blend of hexadecane-in-water emulsions and PVA was investigated. Hexadecane oil-in-water nanoemulsions (d(10)= 181.2 +/- 0.1 nm) were mixed with PVA at pH 4.5 to yield polymer-emulsion blends containing 0.5 to 1.5 wt% oil droplets and 8-wt% PVA. The solution properties of emulsions and emulsion-PVA blends (viscosity, conductivity, surface tension) were determined. Solutions were electrospun and the morphology and thermal properties of deposited fiber mats characterized by scanning electron microscopy and differential scanning calorimetry. Fiber mats were dissolved in buffer to liberate incorporated hexadecane droplets and the buffer solutions analyzed by optical microscopy, UV-spectroscopy, and light scattering. Analysis of dry fiber mats and their solutions showed that emulsion droplets were indeed part of the electrospun fiber structures. Depending on the concentration of hexadecane in the initial emulsion-polymer blends, droplets were dispersed in the fibers as individual droplets or in form of aggregated flocs of hexadecane droplets. Nanofibers with spindle-like perturbations or nanofibers containing bead-like structures with approximately 5 times larger than the size of droplets in the original nanoemulsion were obtained. Remarkably, incorporation of hexadecane droplets in fibers did not alter size of individual droplets, that is, no coalescence occurred. The manufacture of solid matrix containing nanodroplets could be of substantial interest for manufacturers wishing to develop encapsulation system for lipophilic functional compounds such as lipid-soluble flavors, antimicrobials, antioxidants, and bioactives with tailored release kinetics. Practical Applications: The paper describes the formation of electrospun nanofibers from hydrophilic polymers that contain fine-disperse emulsion droplets. By incorporating emulsion droplets, a large variety of lipophilic ingredients can be easily loaded into the fibers' hydrophilic polymer matrix. This is of practical importance as to date the only way to include a lipophilic ingredient in a nanofibers is by dissolving the lipophilic ingredient and polymer in an organic solvent followed by electrospinning. However, use of an organic solvent is (a) not feasible if one wants to electrospin hydrophilic polymers, and (b) use of organic solvents is generally highly undesirable in the food industry. Our results should be of interest to a number of industries such as the food, pharmaceutical, chemical, and personal care industries that are generally in need of novel matrices that can serve as carrier vehicles and release functional components such as flavors, antimicrobials, antioxidants, drugs, and bioactives.

摘要

通过静电纺丝法将十六烷在水中的乳液和聚乙烯醇(PVA)的混合物制成含有细小分散的十六烷液滴的聚乙烯醇(PVA)纳米纤维,研究了其可行性。制备了十六烷油包水纳米乳液(d(10)= 181.2 +/- 0.1 nm),并将其与 PVA 在 pH 4.5 下混合,得到含有 0.5 至 1.5wt%油滴和 8wt% PVA 的聚合物-乳液混合物。测定了乳液和乳液-PVA 混合物的溶液性质(粘度、电导率、表面张力)。将溶液进行静电纺丝,并通过扫描电子显微镜和差示扫描量热法对沉积纤维垫的形态和热性能进行了表征。将纤维垫溶解在缓冲液中以释放所包含的十六烷液滴,并通过光学显微镜、紫外光谱和光散射对缓冲液溶液进行分析。对干燥纤维垫及其溶液的分析表明,乳液液滴实际上是静电纺纤维结构的一部分。根据初始乳液-聚合物混合物中十六烷的浓度,液滴以单个液滴的形式或以十六烷液滴聚集絮状物的形式分散在纤维中。得到了具有纺锤形扰动的纳米纤维或含有珠状结构的纳米纤维,珠状结构的尺寸大约是原始纳米乳液中液滴尺寸的 5 倍。值得注意的是,十六烷液滴在纤维中的掺入并没有改变单个液滴的尺寸,也就是说没有发生聚结。对于希望开发具有定制释放动力学的亲脂性功能性化合物(如脂溶性香料、抗菌剂、抗氧化剂和生物活性剂)的封装系统的制造商来说,制造含有纳米液滴的固体基质可能具有重要的实际意义。实际应用:本文描述了由亲水性聚合物形成包含细分散乳液液滴的静电纺纳米纤维的方法。通过掺入乳液液滴,可以很容易地将各种亲脂性成分加载到纤维的亲水性聚合物基质中。这具有实际意义,因为迄今为止,将亲脂性成分包含在纳米纤维中的唯一方法是将亲脂性成分和聚合物溶解在有机溶剂中,然后进行静电纺丝。然而,如果要静电纺丝亲水性聚合物,则(a)使用有机溶剂是不可行的,并且(b)在食品工业中通常非常不希望使用有机溶剂。我们的研究结果应该引起许多行业的兴趣,例如食品、制药、化工和个人护理行业,这些行业通常需要新型基质作为载体,以释放香料、抗菌剂、抗氧化剂、药物和生物活性剂等功能性成分。

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