Fattahi Nadia, Gorgannezhad Lena, Masoule Shabnam Farkhonde, Babanejad Niloofar, Ramazani Ali, Raoufi Mohammad, Sharifikolouei Elham, Foroumadi Alireza, Khoobi Mehdi
Drug Design and Development Research Center, The Institute of Pharmaceutical Sciences (TIPS), Tehran University of Medical Sciences, Tehran 1417614411, Iran; Department of Chemistry, Faculty of Science, University of Zanjan, Zanjan 45371-38791, Iran.
Queensland Micro- and Nanotechnology Centre, Nathan Campus, Griffith University, 170 Kessels Road, Brisbane, QLD 4111, Australia.
Adv Colloid Interface Sci. 2024 Mar;325:103119. doi: 10.1016/j.cis.2024.103119. Epub 2024 Feb 27.
Cationic polymers have recently attracted considerable interest as research breakthroughs for various industrial and biomedical applications. They are particularly interesting due to their highly positive charges, acceptable physicochemical properties, and ability to undergo further modifications, making them attractive candidates for biomedical applications. Polyethyleneimines (PEIs), as the most extensively utilized polymers, are one of the valuable and prominent classes of polycations. Owing to their flexible polymeric chains, broad molecular weight (MW) distribution, and repetitive structural units, their customization for functional composites is more feasible. The specific beneficial attributes of PEIs could be introduced by purposeful functionalization or modification, long service life, biocompatibility, and distinct geometry. Therefore, PEIs have significant potential in biotechnology, medicine, and bioscience. In this review, we present the advances in PEI-based nanomaterials, their transfection efficiency, and their toxicity over the past few years. Furthermore, the potential and suitability of PEIs for various applications are highlighted and discussed in detail. This review aims to inspire readers to investigate innovative approaches for the design and development of next-generation PEI-based nanomaterials possessing cutting-edge functionalities and appealing characteristics.
阳离子聚合物最近作为各种工业和生物医学应用的研究突破引起了相当大的关注。由于其高度正电荷、可接受的物理化学性质以及进行进一步修饰的能力,它们特别引人关注,使其成为生物医学应用的有吸引力的候选者。聚乙烯亚胺(PEIs)作为使用最广泛的聚合物,是一类有价值且突出的聚阳离子。由于其灵活的聚合物链、宽分子量(MW)分布和重复的结构单元,它们用于功能复合材料的定制更可行。PEIs的特定有益特性可以通过有目的的功能化或修饰、长使用寿命、生物相容性和独特的几何形状来引入。因此,PEIs在生物技术、医学和生物科学中具有巨大潜力。在这篇综述中,我们展示了过去几年基于PEI的纳米材料的进展、它们的转染效率及其毒性。此外,还详细强调和讨论了PEIs在各种应用中的潜力和适用性。这篇综述旨在激发读者研究创新方法,以设计和开发具有前沿功能和吸引人特性的下一代基于PEI的纳米材料。