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基于聚乙烯亚胺的材料及其在生物医学、生物技术和生物材料方面的最新进展。

Recent advancements in polyethyleneimine-based materials and their biomedical, biotechnology, and biomaterial applications.

机构信息

Guangdong Provincial Public Laboratory of Analysis and Testing Technology, China National Analytical Center, Guangzhou 510070, China.

出版信息

J Mater Chem B. 2020 Apr 21;8(15):2951-2973. doi: 10.1039/c9tb02271f. Epub 2020 Mar 11.

Abstract

Cationic polymers, known for their highly positive charges, have historically dominated the materials used in bioengineering. However, the demand for intelligent systems with high efficiency, bio-mimetic and tunable features is increasing. Artificial composites that mimic biorecognition and periodic structures may propel the development of advanced materials with outstanding properties. Polyethyleneimines (PEIs) constitute a valuable class of polycations because they have repetitive structural units, a wide molecular weight range and flexible polymeric chains, which facilitate customization of functional composites. Specific advantageous features could be introduced by purposeful modification or functionalization, such as specificity and sensitivity, distinct geometry, biocompatibility, and long service life. Thus, PEIs have been rapidly used in a wide range of applications in the fields of biomedicine, biotechnology and biomaterials science. This article provides an overview of recent advancements in the fabrication of PEI-based materials and corresponding applications in gene and drug delivery, bio-inhibitors, bio-separation, bioimaging, cell culture, and production of antibacterial and self-healing materials. The effects of molecular weight, topological structure, positive charges and hydrophilic properties on the performance of PEIs have been illustrated in detail. Finally, current technological limitations, research challenges, and future aspects are also discussed.

摘要

阳离子聚合物以其高正电荷而闻名,历来在生物工程中占据主导地位。然而,对具有高效率、仿生和可调特性的智能系统的需求正在增加。仿生识别和周期性结构的人工复合材料可能会推动具有优异性能的先进材料的发展。聚乙烯亚胺(PEI)是一类有价值的聚阳离子,因为它们具有重复的结构单元、较宽的分子量范围和灵活的聚合物链,便于定制功能复合材料。通过有针对性的修饰或官能化,可以引入特定的有利特征,如特异性和敏感性、独特的几何形状、生物相容性和长使用寿命。因此,PEI 已在生物医学、生物技术和生物材料科学等领域的广泛应用中得到了迅速应用。本文综述了基于 PEI 的材料的最新进展及其在基因和药物传递、生物抑制剂、生物分离、生物成像、细胞培养以及抗菌和自修复材料生产中的应用。详细说明了分子量、拓扑结构、正电荷和亲水性对 PEI 性能的影响。最后,还讨论了当前的技术限制、研究挑战和未来的发展方向。

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