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接触时间和 pH 值依赖性低分子量壳聚糖涂层表面的黏附性和内聚性。

Contact time- and pH-dependent adhesion and cohesion of low molecular weight chitosan coated surfaces.

机构信息

School of Interdisciplinary Bioscience and Bioengineering, Pohang University of Science and Technology (POSTECH), Pohang 790-784, South Korea.

Department of Chemical Engineering, University of California at Santa Barbara, CA 93106, USA.

出版信息

Carbohydr Polym. 2015 Mar 6;117:887-894. doi: 10.1016/j.carbpol.2014.10.033. Epub 2014 Nov 5.

Abstract

Low molecular weight chitosan (LMW chitosan, ∼5 kDa) potentially has many desirable biomedical applications such as anti-microbial, anti-tumor, and anti-diabetes. Unlike high molecular weight chitosan, LMW chitosan is easily dissolvable in aqueous solutions even at neutral and basic pH, but its dissolution mechanism is not well understood. Here, we measured adhesion and cohesion of molecularly thin LMW chitosan films in aqueous solutions in different buffer pHs (from 3.0 to 8.5) using a surface forces apparatus (SFA). Interestingly, significantly lower adhesion force was measured for LMW chitosan films compared to the high molecular weight chitosan (∼150 kDa) films. Not only the strength of adhesion is lower, but also the critical contact time where adhesion starts to increase with contact time is longer. The results from both the SFA and atomic force microscopy (AFM) indicate that, in physiological and basic conditions, the low cohesion of LMW chitosan due to the stiffness of the chain which cause strong electrostatic correlation energy penalty when they are aggregated. Here, we propose the reduction in cohesion for shorter chitosan (LMW chitosan) as an explanation of its high solubility of LMW chitosan in physiological pHs.

摘要

低分子量壳聚糖(LMW 壳聚糖,5 kDa)具有许多理想的生物医学应用,如抗微生物、抗肿瘤和抗糖尿病。与高分子量壳聚糖不同,LMW 壳聚糖在中性和碱性 pH 下甚至很容易溶解于水溶液中,但它的溶解机制尚不清楚。在这里,我们使用表面力仪(SFA)在不同缓冲 pH 值(3.0 至 8.5)下测量了分子薄的 LMW 壳聚糖薄膜在水溶液中的粘附和内聚。有趣的是,与高分子量壳聚糖(150 kDa)薄膜相比,LMW 壳聚糖薄膜的粘附力明显较低。不仅粘附力较弱,而且开始随接触时间增加的临界接触时间也较长。来自 SFA 和原子力显微镜(AFM)的结果表明,在生理和碱性条件下,由于链的刚性,LMW 壳聚糖的内聚能较低,导致链在聚集时会产生强烈的静电相关能量损耗。在这里,我们提出了短链壳聚糖(LMW 壳聚糖)的内聚能降低,以解释其在生理 pH 值下的高溶解度。

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