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经柠檬酸处理提高载药量的玉米淀粉颗粒。

Corn starch granules with enhanced load-carrying capacity via citric acid treatment.

机构信息

School of Food Science, University of Idaho, P.O. Box 442312, Moscow, Idaho 83844, USA.

出版信息

Carbohydr Polym. 2013 Jan 2;91(1):39-47. doi: 10.1016/j.carbpol.2012.07.049. Epub 2012 Jul 28.

Abstract

This research investigated conditions by which maize starch granule porosity and load-carrying capacity (LCC) might be enhanced via treatment with varying citric acid concentrations (0.5-1.5 M), temperatures (40-60 °C), and lengths of treatment (1-8 h). At the lowest temperatures (40 and 50 °C), citric acid treatment induced minimal physicochemical changes to granules. In contrast, both aqueous and oil LCCs of starches treated at 60 °C (0.5 M citric acid, 2 h) were almost doubled (15.69 and 14.48 mL/10 g starch, respectively), recovering 92% of the granular starch after treatment. Such treatment increased starch hydration capacity (0.97-1.91) and reduced gelatinization enthalpy (10.6-7.4 J/g). More severe treatment conditions adversely impacted aqueous LCC (due to excessive granule swelling), but improved oil absorption. The basis for LCC enhancement by citric acid treatment was ascribed to leaching of starch material from granules and partial disruption of the granule crystalline structure, as opposed to starch hydrolysis or chemical substitution.

摘要

本研究通过用不同浓度的柠檬酸(0.5-1.5 M)、温度(40-60°C)和处理时间(1-8 小时)处理玉米淀粉颗粒,考察了提高其孔隙率和承载能力(LCC)的条件。在最低温度(40 和 50°C)下,柠檬酸处理对颗粒的物理化学性质影响最小。相比之下,在 60°C(0.5 M 柠檬酸,2 小时)下处理的淀粉的水相和油相 LCC 几乎都增加了一倍(分别为 15.69 和 14.48 mL/10 g 淀粉,分别为 92%)。这种处理提高了淀粉的水合能力(0.97-1.91)并降低了糊化焓(10.6-7.4 J/g)。更严重的处理条件会对水相 LCC 产生不利影响(由于颗粒过度膨胀),但会提高油吸收能力。柠檬酸处理提高 LCC 的基础是淀粉物质从颗粒中浸出以及颗粒结晶结构的部分破坏,而不是淀粉水解或化学取代。

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