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基于聚离子复合粒子的多糖复合膜的制备与表征

Fabrication and Characterization of Polysaccharide Composite Films from Polyion Complex Particles.

作者信息

Yamazaki Makoto, Iijima Kazutoshi

机构信息

Department of Chemistry, Chemical Engineering and Life Science, College of Engineering Science, Yokohama National University, Tokiwadai 79-5, Hodogaya-ku, Yokohama 240-8501, Japan.

Faculty of Engineering, Yokohama National University, Tokiwadai 79-5, Hodogaya-ku, Yokohama 240-8501, Japan.

出版信息

Polymers (Basel). 2020 Feb 13;12(2):435. doi: 10.3390/polym12020435.

Abstract

Biomaterials made of natural polysaccharides have attracted much attention due to the fact of their excellent properties, such as high biocompatibility and biodegradability, and their specific biological functions based on their chemical structures. This study demonstrates that polysaccharide composite films can be fabricated from polyion complexes (PICs) with their particles used as building components. Dispersion of PIC particles prepared by mixing, centrifugation, and re-dispersion of dilute solutions of cationic and anionic polysaccharides were cast, dried, and formed into films several micrometers thick. These films were homogenous and water insoluble. It was revealed that the component anionic polysaccharides affected the film's properties such as the swelling behavior and mechanical characteristics. Adhesion of NIH3T3 cells (integrin: high, CD44: lack or weak) and A549 cells (integrin: high, CD44: high) to the composite films were examined. Both NIH3T3 and A549 cells adhered to heparin/chitosan (HEP/CHI) film because HEP has an affinity for integrin through fibronectin. However, A549 cells adhered to chondroitin sulfate (CS)/CHI and hyaluronic acid (HYA)/CHI films, whereas NIH3T3 cells did not, because both CS and HYA have affinity for CD44. These results indicated that the biological functions of anionic polysaccharides were maintained on the surface of the composite films. It was also possible to fabricate films composed of three kinds of polysaccharides: one cationic polysaccharide and two kinds of anionic polysaccharides. These results show that the properties of films composed of three kinds of polysaccharides may be controllable depending on the anionic polysaccharide composition rates.

摘要

由天然多糖制成的生物材料因其优异的性能,如高生物相容性和生物降解性,以及基于其化学结构的特定生物学功能而备受关注。本研究表明,聚离子复合物(PICs)及其颗粒可作为构建组件用于制备多糖复合膜。通过将阳离子和阴离子多糖的稀溶液混合、离心和再分散制备的PIC颗粒分散体被浇铸、干燥,形成几微米厚的薄膜。这些薄膜均匀且不溶于水。研究发现,组分阴离子多糖会影响薄膜的性能,如溶胀行为和机械特性。检测了NIH3T3细胞(整合素:高,CD44:缺乏或弱)和A549细胞(整合素:高,CD44:高)对复合膜的粘附情况。NIH3T3细胞和A549细胞均能粘附于肝素/壳聚糖(HEP/CHI)膜,因为HEP通过纤连蛋白对整合素有亲和力。然而,A549细胞能粘附于硫酸软骨素(CS)/CHI膜和透明质酸(HYA)/CHI膜,而NIH3T3细胞不能,因为CS和HYA对CD44均有亲和力。这些结果表明,阴离子多糖的生物学功能在复合膜表面得以保留。还可以制备由三种多糖组成的薄膜:一种阳离子多糖和两种阴离子多糖。这些结果表明,由三种多糖组成的薄膜的性能可能取决于阴离子多糖的组成比例而得以控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64fa/7077694/e1b01c9162a7/polymers-12-00435-g001.jpg

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