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聚(L-赖氨酸)与阴离子多糖的紧密聚电解质复合物

Compact Polyelectrolyte Complexes of Poly(l-Lysine) and Anionic Polysaccharides.

作者信息

Yu Jaehak, Tavsanli Burak, Tamminga Micah J, Gillies Elizabeth R

机构信息

Department of Chemistry, The University of Western Ontario, 1151 Richmond St., London, Ontario N6A 5B7, Canada.

Department of Chemical and Biochemical Engineering, The University of Western Ontario, 1151 Richmond St., London, Ontario N6A 5B9, Canada.

出版信息

Biomacromolecules. 2024 Aug 12;25(8):5160-5168. doi: 10.1021/acs.biomac.4c00547. Epub 2024 Jul 23.

Abstract

Compact polyelectrolyte complexes (CoPECs) can exhibit mechanical properties similar to those of biological tissues and other interesting properties, such as self-healing. To date, a variety of CoPECs prepared from synthetic polyelectrolytes have been investigated, but there are very few examples based entirely on biopolymers. We describe here an investigation of CoPECs based on poly(l-lysine) (PLL) with sodium hyaluronate (HA) and alginate (Alg). A 2:1 ratio of cation:anion and 0.25 M NaBr was beneficial for the formation of viscoelastic PLL-HA CoPECs, with the favorable ratio attributed to the spacing of carboxylates on HA being one every two saccharide units. In contrast, 1.0 M NaBr and a 1:1 ratio were better for PLL-Alg CoPECs. Both CoPECs swelled or retained a constant volume when immersed in hypertonic media, but contracted in hypotonic media. The loading of molecules into the PLL-HA (2:1) CoPECs was investigated. Higher loadings were achieved for anionic molecules compared to cations, presumably due to the excess cationic binding sites on the networks. The times required for full release of the molecules ranged from less than 2 h for neutral paracetamol to about 48 h for crystal violet and diclofenac.

摘要

致密聚电解质复合物(CoPECs)可展现出与生物组织相似的机械性能以及其他有趣的特性,比如自愈性。迄今为止,人们已经研究了多种由合成聚电解质制备的CoPECs,但完全基于生物聚合物的例子却非常少。我们在此描述了一项基于聚(L-赖氨酸)(PLL)与透明质酸钠(HA)和海藻酸盐(Alg)的CoPECs的研究。阳离子与阴离子2:1的比例以及0.25 M的溴化钠有利于形成粘弹性的PLL-HA CoPECs,这种有利比例归因于HA上羧酸盐的间距为每两个糖单元一个。相比之下,1.0 M的溴化钠和1:1的比例对PLL-Alg CoPECs更有利。当浸入高渗介质中时,两种CoPECs都会膨胀或保持恒定体积,但在低渗介质中会收缩。研究了分子在PLL-HA(2:1)CoPECs中的负载情况。与阳离子相比,阴离子分子的负载量更高,这可能是由于网络上存在过量的阳离子结合位点。分子完全释放所需的时间从中性的扑热息痛不到2小时到结晶紫和双氯芬酸约48小时不等。

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