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制备沸石-A/壳聚糖杂化复合材料及其生物活性和抗菌活性。

Preparation of zeolite-A/chitosan hybrid composites and their bioactivities and antimicrobial activities.

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemistry and Chemical Engineering, Nanjing University of Technology, Nanjing 210009, PR China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2013 Oct;33(7):3652-60. doi: 10.1016/j.msec.2013.04.055. Epub 2013 May 4.

Abstract

Zeolite-A/chitosan hybrid composites with zeolite contents of 20-55 wt.% were prepared by in situ transformation of silica/chitosan mixtures in a sodium aluminate alkaline solution through impregnation-gelation-hydrothermal synthesis. The products were characterized by X-ray diffraction, diffuse reflectance infrared Fourier transform spectroscopy, scanning electron microscopy, thermogravimetric analysis, and mercury penetration porosimetry. Their in vitro bioactivities were examined using as-synthesized and Ca(2+)-exchanged hybrid composites in simulated body fluid (SBF) for hydroxyapatite (HAP) growth. Their antimicrobial activities for Escherichia coli (E. coli) in trypticase soy broth (TSB) were evaluated using Ag(+)-exchanged hybrid composites. The zeolite-A/chitosan hybrid composites could be prepared as various shapes, including cylinders, plates and thin films. They possessed macropores with pore sizes ranging from 100 to 300 μm and showed compressive mechanical strength as high as 3.2 MPa when the zeolite content was 35 wt.%. Fast growth on the Ca(2+)-exchanged hybrid composites was observed with the highest weight gain of 51.4% in 30 days. The 35 wt.% Ag(+)-exchanged hybrid composite showed the highest antimicrobial activity, which could reduce the 9×10(6) CFU mL(-1)E. coli concentration to zero within 4h of incubation time with the Ag(+)-exchanged hybrid composite amount of 0.4 g L(-1). The bioactivity and antimicrobial activity could be combined by ion-exchanging the composites first with Ca(2+) and then with Ag(+). These zeolite-A/chitosan hybrid composites have potential applications on tissue engineering and antimicrobial food packaging.

摘要

沸石-A/壳聚糖复合纤维通过在偏铝酸钠碱性溶液中混合二氧化硅/壳聚糖原位转化,然后经过浸渍-凝胶-水热合成制备,沸石含量为 20-55wt%。通过 X 射线衍射、漫反射红外傅里叶变换光谱、扫描电子显微镜、热重分析和压汞孔隙率法对产物进行了表征。使用合成的和 Ca(2+)交换的杂化复合材料在模拟体液(SBF)中检查了它们的体外生物活性,以促进羟基磷灰石(HAP)的生长。使用 Ag(+)交换的杂化复合材料在胰蛋白酶大豆肉汤(TSB)中评估了它们对大肠杆菌(E. coli)的抗菌活性。沸石-A/壳聚糖复合纤维可以制备成各种形状,包括圆柱体、平板和薄膜。它们具有孔径为 100-300μm 的大孔,当沸石含量为 35wt%时,表现出高达 3.2MPa 的抗压机械强度。在 30 天内观察到 Ca(2+)交换的杂化复合材料的快速生长,重量增加率最高为 51.4%。35wt%Ag(+)交换的杂化复合材料显示出最高的抗菌活性,在 0.4g/L(-1)Ag(+)交换的杂化复合材料用量下,在 4 小时的孵育时间内,可以将 9×10(6)CFU/mL(-1)E. coli 浓度降低到零。可以通过首先用 Ca(2+)离子交换复合材料,然后用 Ag(+)离子交换来结合生物活性和抗菌活性。这些沸石-A/壳聚糖复合纤维在组织工程和抗菌食品包装方面具有潜在的应用。

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