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合成抗氧化剂对高温高湿条件下储存的酒糟蛋白饲料和玉米酒糟油脂质过氧化的影响

Impact of synthetic antioxidants on lipid peroxidation of distiller's dried grains with solubles and distiller's corn oil stored under high temperature and humidity conditions.

作者信息

Hanson A R, Urriola P E, Johnston L J, Shurson G C

出版信息

J Anim Sci. 2015 Aug;93(8):4070-8. doi: 10.2527/jas.2015-9041.

Abstract

This experiment evaluated the effect of antioxidants, oil content in distiller's dried grains with solubles (DDGS), quality of distiller's corn oil, and storage time on lipid peroxidation. A source of low-oil DDGS (LO-DDGS; 5.0% ether extract [EE], as-fed basis), high-oil DDGS (HO-DDGS; 13.0% EE, as-fed basis), and 2 sources of distiller's corn oil (DCO; 1.20, 0.08, and 0.48% moisture, insoluble impurities, and unsaponifiables [MIU], respectively [DCO-1], and 1.20, 0.01, and 0.10% MIU, respectively [DCO-2]) were obtained. Each of the 4 ingredients was divided into 18 representative subsamples (approximately 908 g for DDGS or 2 kg of DCO). Six subsamples of each ingredient were mixed with either no supplemental antioxidants (CON), Rendox-CQ (REN; 1,000 mg/kg EE; Kemin, Industries, Des Moines, IA), or Santoquin-Q4T (SAN; 1,500 mg/kg EE; Novus International, St. Louis, MO). Each mixture ( = 72) was split into thirds, and 1 portion was immediately frozen at -20°C (d 0). Two portions were stored under hot (38.6 ± 0.1°C) and humid conditions (94.0 ± 0.3% relative humidity) for 14 or 28 d. The MIXED procedure of SAS was used to evaluate the effects of ingredient, antioxidant, storage time, and interactions, with d-0 values used as a covariate. From d 14 to 28, peroxide value (PV), -anisidine value (AnV), and thiobarbituric acid reactive substances (TBARS) of DCO and DDGS increased by 3- to 4-fold ( < 0.05). Over the entire storage period, PV of DCO-1 and HO-DDGS (12.3 ± 0.3 and 12.6 ± 0.3 mEq O/kg oil, respectively) exceeded ( < 0.05) that of DCO-2 and LO-DDGS (9.6 ± 0.3 and 9.3 ± 0.3 mEq O/kg oil, respectively). Adding REN or SAN ( < 0.05) reduced TBARS and AnV relative to CON (TBARS = 11.0 ± 0.2 mg malondialdehyde Eq/kg oil and AnV = 6.5 ± 0.2) over the entire period (mean of d 14 and 28), but TBARS and AnV did not differ ( > 0.05) between antioxidants (TBARS = 6.1 ± 0.2 and 5.9 ± 0.2 mg malondialdehyde Eq/kg oil, respectively, and AnV = 1.9 ± 0.2 and 1.8 ± 0.2 for REN and SAN, respectively). The PV on d 14 and 28 and overall was less ( < 0.05) when either antioxidant was added relative to CON (16.0 mEq O/kg) and was greater for ingredients treated with SAN ( < 0.05) compared with REN (8.8 ± 0.2 and 8.0 ± 0.2 mEq O/kg oil for SAN and REN, respectively). In summary, antioxidants reduced peroxidation of DDGS and DCO by approximately 50% during 28 d of storage at 38.6°C and 94.0% relative humidity, but neither antioxidant completely stabilized the ingredients.

摘要

本实验评估了抗氧化剂、含可溶物的干酒糟(DDGS)中的油脂含量、玉米酒糟油的品质以及储存时间对脂质过氧化的影响。获取了低油DDGS(LO-DDGS;以风干基础计,醚提取物[EE]含量为5.0%)、高油DDGS(HO-DDGS;以风干基础计,EE含量为13.0%)以及两种玉米酒糟油(DCO)来源(分别为[DCO-1]:水分、不溶性杂质和不皂化物[MIU]含量分别为1.20%、0.08%和0.48%;[DCO-2]:MIU含量分别为1.20%、0.01%和0.10%)。将这4种成分中的每一种均分成18个代表性子样本(DDGS约908克或DCO 2千克)。每种成分选取6个子样本,分别不添加抗氧化剂(CON)、添加Rendox-CQ(REN;1000毫克/千克EE;Kemin公司,得梅因,爱荷华州)或Santoquin-Q4T(SAN;1500毫克/千克EE;诺伟司国际公司,圣路易斯,密苏里州)。将每种混合物(n = 72)分成三等份,其中一份立即在-20°C下冷冻(第0天)。另外两份在高温(38.6±0.1°C)和高湿条件(相对湿度94.0±0.3%)下储存14天或28天。使用SAS的MIXED程序评估成分、抗氧化剂、储存时间及其相互作用的影响,以第0天的值作为协变量。从第14天到第28天,DCO和DDGS的过氧化值(PV)、对茴香胺值(AnV)和硫代巴比妥酸反应性物质(TBARS)增加了3至4倍(P<0.05)。在整个储存期内,DCO-1和HO-DDGS的PV(分别为12.3±0.3和12.6±0.3毫当量氧/千克油)超过(P<0.05)DCO-2和LO-DDGS的PV(分别为9.6±0.3和9.3±0.3毫当量氧/千克油)。在整个期间(第14天和第28天的平均值),添加REN或SAN(P<0.05)相对于CON可降低TBARS和AnV(TBARS = 11.0±0.2毫克丙二醛当量/千克油,AnV = 6.5±0.2),但两种抗氧化剂之间的TBARS和AnV无差异(P>0.05)(REN和SAN的TBARS分别为6.1±0.2和5.9±0.2毫克丙二醛当量/千克油,AnV分别为1.9±0.2和1.8±0.2)。与CON(16.0毫当量氧/千克)相比,添加任何一种抗氧化剂后第14天和第28天以及总体的PV均较低(P<0.05),并且与REN相比,用SAN处理的成分的PV更高(P<0.05)(SAN和REN的PV分别为8.8±0.2和8.0±0.2毫当量氧/千克油)。总之,在38.6°C和94.0%相对湿度下储存28天期间,抗氧化剂使DDGS和DCO的过氧化反应降低了约50%,但两种抗氧化剂均未完全使这些成分稳定。

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