首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Selection of a practical assay for the determination of the entire range of acetyl content in chitin and chitosan: UV spectrophotometry with phosphoric acid as solvent.
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Selection of a practical assay for the determination of the entire range of acetyl content in chitin and chitosan: UV spectrophotometry with phosphoric acid as solvent.

机译:选择用于测定甲壳质和壳聚糖中乙酰基含量整个范围的实用测定法:以磷酸为溶剂的紫外分光光度法。

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摘要

The rapidly expanding use of chitomaterials in biomedical applications demands accurate and precise analytical methods to determine physico-chemical characteristics, especially the acetyl content of the sample. The analytical methods available for the determination of the acetyl content of the biomaterials are quite different in efficiency, accuracy and precision. Out of 22 analytical methods reviewed, XRD, DSC, FTIR (KBr pellet), solid state (13)C CP/MAS NMR, and acid hydrolysis-HPLC and the spectrophotometry assay using phosphoric acid as solvent (PUV) were selected in this study. The validity and applicability of these methods were investigated with a wide range of chitin and chitosan samples varying acetyl content, preparation methods, and sources. The XRD, DSC, and FTIR (KBr pellet) methods showed poor accuracy with the samples of diverse preparations and sources. The PUV method was modified and accuracy of the method was examined against absolute methods: solid state (13)C CP/MAS NMR and acid hydrolysis-HPLC methods. The correlations between these three methods were >0.9. Therefore, the PUV method was selected as the most generally acceptable method based on its accuracy, reliability, simplicity, and instrument availability.
机译:在生物医学应用中,表壳材料的迅速扩展使用要求精确和精确的分析方法来确定理化特性,尤其是样品的乙酰基含量。用于确定生物材料中乙酰基含量的分析方法在效率,准确性和精确度方面存在很大差异。在本研究的22种分析方法中,选择了XRD,DSC,FTIR(KBr沉淀),固态(13)C CP / MAS NMR和酸水解HPLC以及使用磷酸作为溶剂(PUV)的分光光度法。这些方法的有效性和适用性是通过大量不同乙酰基含量的甲壳质和壳聚糖样品,制备方法和来源进行研究的。 XRD,DSC和FTIR(KBr颗粒)方法在各种制备物和来源的样品中显示出较差的准确性。修改了PUV方法,并对照绝对方法(固态(13)C CP / MAS NMR和酸水解-HPLC方法)检查​​了该方法的准确性。这三种方法之间的相关性> 0.9。因此,基于PUV方法的准确性,可靠性,简便性和仪器可用性,它被选为最普遍接受的方法。

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