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制备及性能表征温敏性壳聚糖/羧甲基纤维素/松三糖纳米复合水凝胶。

Preparation and characterization of thermosensitive chitosan/carboxymethylcellulose/scleroglucan nanocomposite hydrogels.

机构信息

Akdeniz University, Faculty of Science, Department of Chemistry, Antalya, Turkey.

Akdeniz University, Faculty of Science, Department of Chemistry, Antalya, Turkey.

出版信息

Int J Biol Macromol. 2020 Nov 1;162:781-797. doi: 10.1016/j.ijbiomac.2020.06.087. Epub 2020 Jun 15.

DOI:10.1016/j.ijbiomac.2020.06.087
PMID:32553980
Abstract

The development of thermosensitive smart hydrogels with suitable thermosensitivity is of great importance for various biomedical and pharmaceutical applications. In this study, thermosensitive chitosan/carboxymethylcellulose/scleroglucan/montmorillonite (CHT/CMC/SGL/MMT) nanocomposite hydrogels were prepared for biomedical and pharmaceutical usages and characterized by using rheology, FTIR, SEM, EDX, TEM, XRD, TGA and swelling measurements. Exfoliated distribution of MMT in the network structure of hydrogels proved by XRD and TEM analyses caused a decrease in the pore size of hydrogels. Phase transition temperature of thermosensitive hydrogels was determined precisely by rheological measurements. In the presence of 5% MMT within hydrogel matrix, the gelling temperature of Sample 9 exhibited a decrease from 32.0 °C to 25.3 °C. It was found from TGA that among the CHT/CMC/SGL/MMT hydrogel materials the hydrogel system containing 5% MMT showed the highest decomposition temperature (175 °C). Furthermore, all hydrogel materials exhibited non-Fickian swelling behavior in distilled water and basic medium. The addition of MMT into the hydrogel matrix caused a significant decrease in the swelling amount of thermosensitive hydrogels. The results of this study indicate that thermosensitive CHT/CMC/SGL/MMT hydrogel materials may have potential applications in drug delivery, wound dressing and tissue engineering.

摘要

具有合适温敏性的温敏智能水凝胶的发展对于各种生物医学和药物应用非常重要。在这项研究中,为了生物医学和药物应用,制备了温敏性壳聚糖/羧甲基纤维素/结冷胶/蒙脱土(CHT/CMC/SGL/MMT)纳米复合水凝胶,并通过流变学、FTIR、SEM、EDX、TEM、XRD、TGA 和溶胀测量对其进行了表征。XRD 和 TEM 分析表明,MMT 在水凝胶网络结构中的剥离分布导致水凝胶的孔径减小。通过流变学测量精确地确定了温敏水凝胶的相转变温度。在水凝胶基质中存在 5%MMT 的情况下,样品 9 的胶凝温度从 32.0°C 降低到 25.3°C。TGA 表明,在 CHT/CMC/SGL/MMT 水凝胶材料中,含有 5%MMT 的水凝胶体系具有最高的分解温度(175°C)。此外,所有水凝胶材料在蒸馏水和碱性介质中均表现出非菲克扩散的溶胀行为。将 MMT 加入水凝胶基质中会导致温敏水凝胶的溶胀量显著减少。这项研究的结果表明,温敏性 CHT/CMC/SGL/MMT 水凝胶材料可能在药物输送、伤口敷料和组织工程中有潜在的应用。

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