Department of Life Sciences, Via Licio Giorgieri 5, University of Trieste, I-34127 Trieste, Italy.
Department of Medical, Surgical, and Health Sciences, Piazza dell'Ospitale 1, University of Trieste, I-34127 Trieste, Italy.
Int J Biol Macromol. 2018 Jan;106:656-660. doi: 10.1016/j.ijbiomac.2017.08.059. Epub 2017 Aug 13.
The effect of transient cross-links has been explored on a lactose-modified chitosan, which previously had shown interesting biological features. The presence of galactose side chains and of the polyol spacer resulted particularly appealing for the reticulation by borate ions. The interaction between chitlac and borax was investigated by means of B NMR while rheology pointed to a marked non-linear behavior depending on the amount of borax added to the system. The presence of limited amount of cross-linking ion led to dilatant behavior when the steady flow curve was measured. In addition, strain stiffening was noticed on elastic response upon exceeding a critical stress, indicating a transient nature in the formation of the cross-links. The non-linear response of chitlac in the presence of borax compared surprisingly well with the one showed by proteins composing the natural ECM pointing at a possible role of mechanotransduction in the biological significance of the modified chitosan.
已研究了瞬态交联对先前表现出有趣生物学特性的乳糖修饰壳聚糖的影响。半乳糖侧链和多元醇间隔基的存在特别适合通过硼酸离子进行交联。通过 B NMR 研究了 chitlac 和硼砂之间的相互作用,而流变学表明,取决于添加到系统中的硼砂量,存在明显的非线性行为。当测量稳态流动曲线时,存在有限量的交联离子会导致膨胀行为。此外,超过临界应力时会注意到弹性响应的应变硬化,表明交联的形成具有瞬态性质。在硼砂存在下,chitlac 的非线性响应与构成天然 ECM 的蛋白质的响应惊人地吻合,这表明机械转导在修饰壳聚糖的生物学意义中可能发挥作用。