Zabar Shiran, Shimoni Eyal, Bianco-Peled Havazelet
Department of Chemical Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel.
Macromol Biosci. 2008 Feb 11;8(2):163-70. doi: 10.1002/mabi.200700183.
The effect of recrystallization temperature on the lamellar structure of RSIII samples was studied using XRD and SAXS. The polymorph type could be manipulated in a controlled manner, independently of the plant source. In RSIII from corn starch and from high-amylose corn starch, retrogradation at a low temperature led to the formation of polymorph B with lamellas arranged in long-range periodicity, whereas retrogradation at a high temperature led to the formation of polymorphs A and V with no defined periodicity. The retrogradation temperature of wheat starch did not have a major effect on its nanostructure. For both polymorphs, the enzymatic degradation decreased as the degree of order within the crystal increased.
利用X射线衍射(XRD)和小角X射线散射(SAXS)研究了重结晶温度对RSIII样品层状结构的影响。多晶型类型可以以可控的方式进行调控,而与植物来源无关。在玉米淀粉和高直链玉米淀粉的RSIII中,低温下的老化导致形成具有长程周期性排列片层的B型多晶型,而高温下的老化导致形成无明确周期性的A型和V型多晶型。小麦淀粉的老化温度对其纳米结构没有重大影响。对于这两种多晶型,随着晶体内部有序度的增加,酶促降解作用降低。