Department of Drug Chemistry and Technologies, University of Rome "Sapienza", Rome, Italy.
Biomed Microdevices. 2013 Apr;15(2):299-309. doi: 10.1007/s10544-012-9731-y.
Surfactant nanocarriers have received considerable attention in the last several years as interesting alternative to classic liposomes. Different pH-sensitive vesicular colloidal carriers based on Tween 20 derivatives, obtained after functionalization of the head groups of the surfactant with natural, or simply modified, amino acids, were proposed as drug nanocarriers. Dynamic light scattering, Small Angle X-ray Scattering, Trasmission Electron Microscopy and fluorescence studies were used for the physico-chemical characterization of vesicles and mean size, size distribution, zeta potential, vesicle morphology and bilayer properties were evaluated. The pH-sensitivity and the stability of formulations, in absence and in presence of foetal bovine serum, were also evaluated. Moreover, the contact between surfactant vesicles and liposomes designed to model the cellular membrane was investigated by fluorescence studies to preliminary explore the potential interaction between vesicle and cell membranes. Experimental findings showed that physico-chemical and technological features of pH-sensitive vesicles were influenced by the composition of the carriers. Furthermore, proposed carriers are able to interact with mimetic cell membrane and it is reasonable to attribute the observed differences in interaction to the architectural/structural properties of Tween 20 derivatives. The findings reported in this investigation showed that a deep and extensive physico-chemical characterization of the carrier is a fundamental step, according to the evidence that the knowledge of nanocarrier properties is necessary to translate its potentiality to in vitro/in vivo applications.
近年来,表面活性剂纳米载体作为经典脂质体的有趣替代品受到了广泛关注。不同 pH 敏感的囊泡胶体载体基于吐温 20 衍生物,通过用天然或简单修饰的氨基酸对表面活性剂的头基进行功能化得到,被提议作为药物纳米载体。动态光散射、小角 X 射线散射、透射电子显微镜和荧光研究用于囊泡的物理化学特性和平均粒径、粒径分布、Zeta 电位、囊泡形态和双层性质的评估。还评估了制剂在缺乏和存在胎牛血清时的 pH 敏感性和稳定性。此外,通过荧光研究研究了表面活性剂囊泡与旨在模拟细胞膜的脂质体之间的接触,初步探索了囊泡与细胞膜之间的潜在相互作用。实验结果表明,pH 敏感囊泡的物理化学和技术特性受到载体组成的影响。此外,所提出的载体能够与模拟细胞膜相互作用,并且可以合理地将观察到的相互作用差异归因于吐温 20 衍生物的结构/结构特性。本研究报告的结果表明,根据载体特性知识对于将其潜力转化为体外/体内应用是必要的,因此对载体进行深入和广泛的物理化学特性表征是一个基本步骤。