INRAE, UR BIA, F-44316 Nantes, France.
Molecules. 2020 Sep 25;25(19):4420. doi: 10.3390/molecules25194420.
The preparation of microcapsules composed by natural materials have received great attention, as they represent promising systems for the fabrication of micro-containers for controlled loading and release of active compounds, and for other applications. Using polysaccharides as the main materials is receiving increasing interest, as they constitute the main components of the plant cell wall, which represent an ideal platform to mimic for creating biocompatible systems with specific responsive properties. Several researchers have recently described methods for the preparation of microcapsules with various sizes and properties using cell wall polysaccharide nanomaterials. Researchers have focused mostly in using cellulose nanomaterials as structural components in a bio-mimetic approach, as cellulose constitutes the main structural component of the plant cell wall. In this review, we describe the microcapsules systems presented in the literature, focusing on the works where polysaccharide nanomaterials were used as the main structural components. We present the methods and the principles behind the preparation of these systems, and the interactions involved in stabilizing the structures. We show the specific and stimuli-responsive properties of the reported microcapsules, and we describe how these characteristics can be exploited for specific applications.
由天然材料组成的微胶囊的制备受到了极大的关注,因为它们是制造用于控制活性化合物负载和释放的微容器的有前途的系统,并且具有其他应用。使用多糖作为主要材料越来越受到关注,因为它们是植物细胞壁的主要成分,这为创建具有特定响应特性的生物相容性系统提供了理想的模拟平台。最近,几位研究人员已经描述了使用细胞壁多糖纳米材料制备各种尺寸和性能的微胶囊的方法。研究人员主要集中在使用纤维素纳米材料作为仿生方法中的结构组件,因为纤维素构成了植物细胞壁的主要结构成分。在本文综述中,我们描述了文献中提出的微胶囊系统,重点介绍了将多糖纳米材料用作主要结构组件的工作。我们介绍了制备这些系统的方法和原理,以及稳定结构所涉及的相互作用。我们展示了所报道的微胶囊的特定和刺激响应特性,并描述了如何利用这些特性进行特定应用。