Escuela de Ingeniería y Ciencias, Tecnológico de Monterrey, Av. Eugenio Garza Sada 2501 Sur, Monterrey 64849, Mexico.
Center for Bioinformatics and Integrative Biology (CBIB), Facultad de Ciencias Biológicas, Universidad Andrés Bello, Av. República 330, Santiago 8370186, Chile.
Molecules. 2018 Apr 21;23(4):969. doi: 10.3390/molecules23040969.
Amphiphilic Janus dendrimers (JDs) are repetitively branched molecules with hydrophilic and hydrophobic components that self-assemble in water to form a variety of morphologies, including vesicles analogous to liposomes with potential pharmaceutical and medical application. To date, the self-assembly of JDs has not been fully investigated thus it is important to gain insight into its mechanism and dependence on JDs’ molecular structure. In this study, the aggregation behavior in water of a second-generation bis-MPA JD was evaluated using experimental and computational methods. Dispersions of JDs in water were carried out using the thin-film hydration and ethanol injection methods. Resulting assemblies were characterized by dynamic light scattering, confocal microscopy, and atomic force microscopy. Furthermore, a coarse-grained molecular dynamics (CG-MD) simulation was performed to study the mechanism of JDs aggregation. The obtaining of assemblies in water with no interdigitated bilayers was confirmed by the experimental characterization and CG-MD simulation. Assemblies with dendrimersome characteristics were obtained using the ethanol injection method. The results of this study establish a relationship between the molecular structure of the JD and the properties of its aggregates in water. Thus, our findings could be relevant for the design of novel JDs with tailored assemblies suitable for drug delivery systems.
两亲性 Janus 树状大分子 (JD) 是具有亲水性和疏水性成分的重复支化分子,在水中自组装形成各种形态,包括类似于脂质体的囊泡,具有潜在的药物和医学应用。迄今为止,JD 的自组装尚未得到充分研究,因此深入了解其机制及其对 JD 分子结构的依赖性非常重要。在这项研究中,使用实验和计算方法评估了第二代双-MPA JD 在水中的聚集行为。使用薄膜水合和乙醇注入方法在水中进行 JD 分散。使用动态光散射、共焦显微镜和原子力显微镜对所得组装体进行了表征。此外,进行了粗粒度分子动力学 (CG-MD) 模拟以研究 JD 聚集的机制。实验表征和 CG-MD 模拟证实了在水中获得无交错双层的组装体。使用乙醇注入法获得具有树状大分子特征的组装体。这项研究的结果确立了 JD 的分子结构与其在水中的聚集物性质之间的关系。因此,我们的发现可能与设计具有适合药物传递系统的定制组装体的新型 JD 有关。