Department of Chemistry and Biochemistry, University of San Diego, 5998 Alcala Park, San Diego, CA 92110, United States.
Department of Chemistry and Biochemistry, University of San Diego, 5998 Alcala Park, San Diego, CA 92110, United States.
Carbohydr Res. 2014 Jan 13;383:82-8. doi: 10.1016/j.carres.2013.11.010. Epub 2013 Nov 22.
The preparation and characterization of amylose-small molecule complexes is a heavily researched area. There are few reports, however, that compare complexation efficiencies across a matrix of different amylose hosts and guests. We present herein a detailed account of using microwave irradiation to prepare amylose-small molecule complexes in water. Microwave heating reduced the time required to prepare these amylose complexes from hours to minutes. We characterized not only the quantity of complex for each amylose-guest pairing but also the loading of small molecule guest in that complex. Amylose-1-naphthol complexes were found to have the highest loading density compared with other hydrophobic guests studied; in the case of 1-naphthol, there was a linear dependence of guest loading on amylose molecular weight. In addition, complexes featuring 1-naphthol were the most ordered as judged by powder X-ray diffraction (XRD) and differential scanning calorimetry. Further, powder XRD analysis of the microwave-prepared complexes revealed that many contained mixtures of V-form (single helix) and B-form (double helical) amylose. Lastly, untreated Hylon VII complexed the widest variety of small molecules with the overall greatest efficiency.
直链淀粉-小分子复合物的制备和特性研究是一个热门领域。然而,很少有报道比较不同直链淀粉主体和客体之间的络合效率。本文详细介绍了使用微波辐射在水中制备直链淀粉-小分子复合物的方法。微波加热将制备这些直链淀粉复合物的时间从数小时缩短至数分钟。我们不仅对每个直链淀粉-客体配对的复合物数量进行了表征,还对复合物中小分子客体的负载量进行了表征。与研究的其他疏水性客体相比,直链淀粉-1-萘酚复合物的负载密度最高;对于 1-萘酚,客体负载量与直链淀粉分子量呈线性关系。此外,根据粉末 X 射线衍射(XRD)和差示扫描量热法判断,具有 1-萘酚的复合物具有最高的有序性。此外,微波制备的复合物的粉末 XRD 分析表明,许多复合物含有 V 型(单螺旋)和 B 型(双螺旋)直链淀粉的混合物。最后,未经处理的 Hylon VII 与最多种类的小分子复合,整体效率最高。