Pahal Suman, Gakhar Ruchi, Raichur Ashok M, Varma Manoj M
Centre for Nano Science and Engineering, Indian Institute of Science, Bangalore 560012, India.
Department of Engineering Physics, University of Wisconsin, Madison, WI 53706, USA.
IET Nanobiotechnol. 2017 Dec;11(8):903-908. doi: 10.1049/iet-nbt.2017.0007.
The synergistic relationship between structure and the bulk properties of polyelectrolyte multilayer (PEM) films has generated tremendous interest in their application for loading and release of bioactive species. Layer-by-layer assembly is the simplest, cost effective process for fabrication of such PEMs films, leading to one of the most widely accepted platforms for incorporating biological molecules with nanometre precision. The bulk reservoir properties of PEM films render them a potential candidate for applications such as biosensing, drug delivery and tissue engineering. Various biomolecules such as proteins, DNA, RNA or other desired molecules can be incorporated into the PEM stack via electrostatic interactions and various other secondary interactions such as hydrophobic interactions. The location and availability of the biological molecules within the PEM stack mediates its applicability in various fields of biomedical engineering such as programmed drug delivery. The development of advanced technologies for biomedical applications using PEM films has seen rapid progress recently. This review briefly summarises the recent successes of PEM being utilised for diverse bio-applications.
聚电解质多层(PEM)膜的结构与整体性质之间的协同关系,使其在生物活性物质的负载和释放应用方面引起了极大的关注。逐层组装是制备此类PEM膜最简单且经济高效的方法,这使其成为以纳米精度整合生物分子的最广泛接受的平台之一。PEM膜的整体储库性质使其成为生物传感、药物递送和组织工程等应用的潜在候选者。各种生物分子,如蛋白质、DNA、RNA或其他所需分子,可以通过静电相互作用以及各种其他次级相互作用(如疏水相互作用)整合到PEM堆叠中。生物分子在PEM堆叠中的位置和可用性介导了其在生物医学工程各个领域(如程序性药物递送)中的适用性。最近,使用PEM膜的生物医学应用先进技术取得了快速进展。本综述简要总结了PEM在各种生物应用中最近取得的成功。