Sabanci University Nanotechnology Research and Application Center (SUNUM), Tuzla 34956, Istanbul, Turkey.
Dept. of Food Hygiene, The Faculty of Veterinary Medicine, Shahrekord City Branch, IAU University, Shahrekord 8813733395, Iran.
Molecules. 2020 Feb 1;25(3):638. doi: 10.3390/molecules25030638.
Nanoscale lipid bilayers, or nanoliposomes, are generally spherical vesicles formed by the dispersion of phospholipid molecules in a water-based medium by energy input. The other nanoscale object discussed in this entry, i.e., tocosome, is a recently introduced bioactive carrier made mainly from tocopheryl phosphates. Due to their bi-compartmental structure, which consists of lipidic and aqueous compartments, these nanocarriers are capable of carrying hydrophilic and hydrophobic material separately or simultaneously. Nanoliposomes and tocosomes are able to provide protection and release of sensitive food-grade bioactive materials in a sustained manner. They are being utilized for the encapsulation of different types of bioactive materials (such as drugs, vaccines, antimicrobials, antioxidants, minerals and preservatives), for the enrichment and fortification of different food and nutraceutical formulations and manufacturing of functional products. However, a number of issues unique to the nutraceutical and food industry must first be resolved before these applications can completely become a reality. Considering the potentials and promises of these colloidal carrier systems, the present article reviews various aspects of nanoliposomes, in comparison with tocosomes, including the ingredients used in their manufacture, formation mechanisms and issues pertaining to their application in the formulation of health promoting dietary supplements and functional food products.
纳米脂质体,又称纳米脂质体,是通过能量输入将磷脂分子分散在水基介质中形成的通常呈球形的囊泡。本文中讨论的另一种纳米级物体,即生育酚磷酸酯体,是一种最近引入的生物活性载体,主要由生育酚磷酸酯组成。由于其具有脂质和水相的双分隔结构,这些纳米载体能够分别或同时携带亲水性和疏水性物质。纳米脂质体和生育酚磷酸酯体能够以持续的方式为敏感的食品级生物活性物质提供保护和释放。它们正被用于封装各种类型的生物活性物质(如药物、疫苗、抗菌剂、抗氧化剂、矿物质和防腐剂),用于强化和增稠各种食品和营养配方以及制造功能性产品。然而,在这些应用完全成为现实之前,必须首先解决营养保健品和食品工业特有的一些问题。鉴于这些胶体载体系统的潜力和承诺,本文比较了纳米脂质体和生育酚磷酸酯体,综述了包括其制造中使用的成分、形成机制以及在促进健康的膳食补充剂和功能性食品产品配方中的应用等方面。