Dept. of Agricultural Biotechnology, Seoul National Univ., Seoul, 08826, Republic of Korea.
Dept. of Food Science and Technology, Seoul National Univ. of Science and Technology, Seoul, 01811, Republic of Korea.
J Food Sci. 2019 Jun;84(6):1362-1370. doi: 10.1111/1750-3841.14647. Epub 2019 May 24.
In this study, starch-lipid complexes were prepared using normal corn starch (NC) and amylosucrase-modified waxy corn starch (ASWC) with myristic acid (C14:0) and palmitic acid (C16:0). The amylosucrase modification elongated branch chains in waxy corn starch leading to an increase of apparent amylose content (29.7%) similar to that of NC (29.0%). The X-ray diffraction of starch-lipid complexes revealed a V-type pattern, a clear indication of complex formation. The ability of the ASWC to complex with fatty acids was greater than that of NC. Interestingly, the changes in relative crystallinity, thermal parameters, and digestion properties according to the complexation showed opposite patterns in NC and ASWC. This study found that the structure of ASWC contributes to the formation of starch-fatty acid complexes and suggested that the ASWC can be preferred over NC in a delivery system. PRACTICAL APPLICATION: Amylopectin has been considered to be incapable of forming complexes with fatty acids due to its short chain length and steric hindrance. Through this study, an appropriate enzymatic modification of the molecular structures of waxy starches could make a complexation of waxy starches with fatty acids possible. The findings of this study suggest a promising perspective for utilization of waxy starch as a carrier material of lipophilic molecules.
在这项研究中,使用普通玉米淀粉(NC)和支链淀粉酶修饰的蜡质玉米淀粉(ASWC)与肉豆蔻酸(C14:0)和棕榈酸(C16:0)制备淀粉-脂质复合物。支链淀粉酶修饰使蜡质玉米淀粉中的支链延长,导致表观直链淀粉含量(29.7%)增加,类似于 NC(29.0%)。淀粉-脂质复合物的 X 射线衍射显示出 V 型图案,这清楚地表明了复合物的形成。ASWC 与脂肪酸的复合能力大于 NC。有趣的是,根据复合物形成的相对结晶度、热参数和消化特性的变化,NC 和 ASWC 呈现出相反的模式。本研究发现,ASWC 的结构有助于淀粉-脂肪酸复合物的形成,并表明 ASWC 在递药系统中可以优先于 NC。
由于支链淀粉的短链长度和空间位阻,一直认为其不能与脂肪酸形成复合物。通过这项研究,对蜡质淀粉的分子结构进行适当的酶修饰,使得蜡质淀粉与脂肪酸的复合成为可能。这项研究的结果为利用蜡质淀粉作为亲脂性分子的载体材料提供了有前途的前景。