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混合壳聚糖生物吸附剂:表面和微孔区域的可调吸附

Hybrid Chitosan Biosorbents: Tunable Adsorption at Surface and Micropore Domains.

作者信息

Udoetok Inimfon A, Mohamed Mohamed H, Wilson Lee D

机构信息

Department of Chemistry, University of Saskatchewan, 110 Science Place, Saskatoon, SK S7N 5C9, Canada.

出版信息

Biomimetics (Basel). 2024 Nov 24;9(12):725. doi: 10.3390/biomimetics9120725.

Abstract

Herein, we report a study that provides new insight on the knowledge gaps that relate to the role of biopolymer structure and adsorption properties for chitosan adsorbents that are cross-linked with glutaraldehyde. The systematic modification of chitosan cross-linked with glutaraldehyde (CG) and its quaternized forms (QCG) was studied in relation to the reaction conditions: mole ratios of reactants and pH conditions. Complementary adsorbent characterization employed C NMR/FTIR spectroscopy, TGA and DSC, point-zero-charge (PZC), solvent swelling, and sorption studies using selected dye probes. The spectral and thermal techniques provide complementary evidence that affirm the key role of cross-linker content and quaternization on variation of the physicochemical properties of chitosan. The PZC results reveal a neutral surface charge for the modified materials between pH 6.0 to 6.3 ± 0.3, as compared with pH 8.7 ± 0.4 for pristine chitosan. Solvent swelling in water decreased with greater cross-linking, while the QCG materials had greater swelling over CG materials due to enhanced hydration. The adsorption results reveal variable dye uptake properties according to the cross-linker content. Similarly, surface versus micropore adsorption was demonstrated, according to the nature and ionization state of the dye for the modified adsorbents, where the CG and QCG materials had tunable sorption properties that exceeded that of unmodified chitosan. A key step in tuning the structure and surface chemical properties of cross-linked chitosan involves pH control during synthesis. The facile tunability of the physicochemical properties of the modified biopolymers reported herein means that they possess features of biomimetics that are relevant to advanced drug delivery, antimicrobial materials for wound healing, biosensors, and biosorbents for biomedical applications.

摘要

在此,我们报告一项研究,该研究为与戊二醛交联的壳聚糖吸附剂的生物聚合物结构和吸附特性的作用相关的知识空白提供了新的见解。研究了与反应条件(反应物的摩尔比和pH条件)相关的戊二醛交联壳聚糖(CG)及其季铵化形式(QCG)的系统改性。采用¹³C NMR/FTIR光谱、TGA和DSC、零电荷点(PZC)、溶剂溶胀以及使用选定染料探针的吸附研究对吸附剂进行了补充表征。光谱和热分析技术提供了补充证据,证实了交联剂含量和季铵化对壳聚糖物理化学性质变化的关键作用。PZC结果显示,改性材料在pH 6.0至6.3±0.3之间呈中性表面电荷,而原始壳聚糖的pH值为8.7±0.4。随着交联程度的增加,在水中的溶剂溶胀减小,而由于水合作用增强,QCG材料比CG材料具有更大的溶胀。吸附结果表明,根据交联剂含量,染料的吸附性能各不相同。同样,根据改性吸附剂上染料的性质和电离状态,证明了表面吸附与微孔吸附的差异,其中CG和QCG材料具有可调节的吸附性能,超过了未改性的壳聚糖。调节交联壳聚糖结构和表面化学性质的一个关键步骤是在合成过程中控制pH值。本文报道的改性生物聚合物物理化学性质的简便可调性意味着它们具有与先进药物递送、伤口愈合抗菌材料、生物传感器以及生物医学应用生物吸附剂相关的仿生学特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7aa/11673820/8476ba23b3f0/biomimetics-09-00725-g001.jpg

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