Anton Nicolas, Vandamme Thierry F
CNRS 7199, Université de Strasbourg, Faculté de Pharmacie, Laboratoire de Conception et Application de Molécules Bioactives, équipe de Pharmacie Biogalénique, 74 route du Rhin BP 60024 F-67401 Illkirch Cedex, France.
Int J Pharm. 2009 Jul 30;377(1-2):142-7. doi: 10.1016/j.ijpharm.2009.05.014. Epub 2009 May 18.
Extensive studies have been done on nano-emulsions and emulsification methods to provide nanometric-scaled templates for the formulation of nanoparticles. The so-called "low-energy" methods are of particular interest as they prevent the potential degradation of fragile encapsulated molecules. This work deals with new concepts in nano-emulsification using low-energy methods. Three-model ternary systems, water/nonionic surfactant/oil, were studied and compared. Nano-emulsions were generated using both spontaneous emulsification and the PIT method, so as to study the links between these two nano-emulsification methods. The influence of the composition and formulation variables on the nano-emulsion properties and emulsification procedures were thus investigated. This study pioneers the concept of the universality of low-energy nano-emulsification, proving that all these low-energy methods (i.e. spontaneous emulsification and the phase inversion temperature (PIT) method) are governed by a single unique mechanism. It thus provides a better understanding of low-energy nano-emulsification processes and notably the PIT method, useful in the fields of nanoparticle and nano-pharmaceutic formulations. These results are fundamental in establishing experimental procedures for the incorporation of drugs in nano-emulsions.
针对纳米乳液和乳化方法已开展了广泛研究,以提供用于纳米颗粒制剂的纳米级模板。所谓的“低能”方法尤其令人关注,因为它们可防止脆弱的被包封分子发生潜在降解。本工作涉及使用低能方法进行纳米乳化的新概念。研究并比较了三种模型三元体系,即水/非离子表面活性剂/油。使用自发乳化和相转变温度(PIT)法制备纳米乳液,以便研究这两种纳米乳化方法之间的联系。由此研究了组成和配方变量对纳米乳液性质及乳化过程的影响。本研究开创了低能纳米乳化普遍性的概念,证明所有这些低能方法(即自发乳化和相转变温度(PIT)法)均受单一独特机制支配。因此,它能更好地理解低能纳米乳化过程,尤其是PIT法,这在纳米颗粒和纳米药物制剂领域很有用。这些结果对于建立将药物纳入纳米乳液的实验程序至关重要。