Institut Charles Sadron (ICS) - UPR 22 CNRS, Strasbourg, France.
CNRS 7199, Laboratoire de Conception et Application de Molécules Bioactives (CAMB), Equipe de Pharmacie Biogalénique, 74 route du Rhin, 67401 Illkirch Cedex, France and Université de Strasbourg, Faculté de Pharmacie, 74 route du Rhin, 67401 Illkirch Cedex, France.
Soft Matter. 2017 Feb 22;13(8):1660-1669. doi: 10.1039/c6sm02603f.
Double emulsions are very attractive systems for many reasons; the most important of these are their capacity to encapsulate hydrophilic and lipophilic molecules simultaneously in a single particle and their potentiality to protect fragile hydrophilic molecules from the continuous phase. Double emulsions represent a technology that is widely present down to the micrometer scale; however, double nanoemulsions, with their new potential applications as nanomedicines or diagnosis agents, currently present a significant challenge. In this study, we propose an original two-step approach for the fabrication of double nanoemulsions with a final size below 200 nm. The process consists of the formulation of a primary water-in-oil (w/O) nanoemulsion by high-pressure homogenization, followed by the re-emulsification of this primary emulsion by a low-energy method to preserve the double nanostructure. Various characterization techniques were undertaken to confirm the double structure and to evaluate the encapsulation efficiency of a small hydrophilic probe in the inner aqueous droplets. Complementary fluorescence confocal and cryo-TEM microscopy experiments were conducted to characterize and confirm the double structure of the double nanoemulsion.
双乳液因其诸多原因而成为极具吸引力的体系;其中最重要的原因是其能够在单个颗粒中同时包封亲水性和疏水性分子,以及能够保护脆弱的亲水性分子免受连续相的影响。双乳液代表了一种广泛存在于亚微米尺度的技术;然而,具有作为纳米药物或诊断剂的新潜在应用的双纳米乳液目前提出了一个重大挑战。在这项研究中,我们提出了一种新颖的两步法,用于制备最终尺寸小于 200nm 的双纳米乳液。该过程包括通过高压匀质形成初级水包油(w/O)纳米乳液,然后通过低能量方法对该初级乳液进行再乳化,以保持双纳米结构。采用各种表征技术证实了双结构,并评估了小亲水性探针在内部水相液滴中的包封效率。进行了互补的荧光共焦和冷冻透射电子显微镜实验,以表征和确认双纳米乳液的双结构。