论文标题
使用微生物生物表面活性剂从pH刺激的相转变中的多层壁囊泡的合成多层壁囊泡囊泡囊泡囊泡的合成
Synthesis of multilamellar walls vesicles polyelectrolyte-surfactant complexes from pH-stimulated phase transition using microbial biosurfactants
论文作者
论文摘要
多层壁囊泡(MLWV)是一类有趣的聚电解质表面表面活性剂复合物(PESC),用于从房屋护理到生物医学产品的广泛应用。如果通常在伪平衡条件下通过聚电解质驱动的囊泡凝集获得MLWV,则结果相通常是一个以上结构的混合物。在这项工作中,我们表明,MLWV可以从最近开发的方法中进行大规模和生殖制备,该方法涉及从复杂的凝聚相(CO)的pH刺激相变。我们在存在天然或合成的多胺(壳聚糖,聚乙二醇,聚二亚烯,多利丙氨酸)的情况下使用生物基pH敏感的微生物糖生物表面活性剂。原位的小角度X射线散射(SAXS)和低温透射电子显微镜(冷冻TEM)显示了从CO到MLWV相的系统的同源性和同二维的过渡,而光学显微镜在极化的光实验和冷冻-TEM下显示出大量的MLWV,实际上是量化的,实际上是定量的,存在MLWV。最后,多层壁结构不会受到过滤和超声处理的干扰,这是用于控制囊泡中尺寸分布的两种典型方法。总而言之,这项工作突出了一种新的,可靠的,非平衡的相变方法,用于开发生物基的多层壁囊泡,有望在个人护理,化妆品和药物领域的应用中使用许多其他胶体。
Multilamellar wall vesicles (MLWV) are an interesting class of polyelectrolyte-surfactant complexes (PESCs) for wide applications ranging from house-care to biomedical products. If MLWV are generally obtained by a polyelectrolyte-driven vesicle agglutination under pseudo-equilibrium conditions, the resulting phase is often a mixture of more than one structure. In this work, we show that MLWV can be massively and reproductively prepared from a recently developed method involving a pH-stimulated phase transition from a complex coacervate phase (Co). We employ a biobased pH-sensitive microbial glucolipid biosurfactant in the presence of a natural, or synthetic, polyamine (chitosan, poly-L-Lysine, polyethylene imine, polyallylamine). In situ small angle X-ray scattering (SAXS) and cryogenic transmission electron microscopy (cryo-TEM) show a systematic isostructural and isodimensional transition from the Co to the MLWV phase, while optical microscopy under polarized light experiments and cryo-TEM reveal a massive, virtually quantitative, presence of MLWV. Finally, the multilamellar wall structure is not perturbed by filtration and sonication, two typical methods employed to control size distribution in vesicles. In summary, this work highlights a new, robust, non-equilibrium phase-change method to develop biobased multilamellar wall vesicles, promising soft colloids with applications in the field of personal care, cosmetics and pharmaceutics among many others.