壳聚糖或壳聚糖纳米颗粒膜以桑花青素提取物为活性食用膜对鲤鱼鱼片冷藏品质的影响

Kadhim H. Abdul Sayed, Alaa G. Al-Hasimi, Kareema M. Ziadan
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引用次数: 0

摘要

以虾壳为原料提取壳聚糖和壳聚糖纳米颗粒,以桑葚花青素提取物为原料提取稻壳CMC和CMC纳米颗粒,制备生物活性膜和纳米生物活性膜。结果表明:包覆活性壳聚糖纳米膜(T4)和活性CMC纳米膜(T8)的鱼片PH值增幅最小,分别为6.50和6.53;功能纳米聚合物膜的包裹可以延缓脂质氧化,降低TBA值的升高。第9天T4处理最低,为1.95 mg /kg, T8次之,为2.05 mg /kg。过氧化值方面,T4和T8处理差异有统计学意义,分别为4.73和4.94 (mEq O2 / kg)。使用活性纳米生物膜的食品包装减少了食品与外界环境之间的水分传递。对照处理T0为60.14%。包膜样品的含水率最高,T4、T3、T8和T7处理的含水率在71.03 ~ 72.16之间差异显著,与对照样品(3天)和其他包膜样品(6天)相比,包膜样品的储存期延长至9天。
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Influence of chitosan or chitosan nanoparticles film with Mulberry anthocyanin extract as active edibile film on the quality of carp fillets during cold storage
The current study aimed to prepare Bioactive films and Nano Bioactive films from chitosan and chitosan nanoparticles extracted from shrimp shells and CMC and CMC nanoparticles extracted from rice husks to which anthocyanin extracts were added from Mulberry. The results showed The lowest increase in PH values ​​was for fish fillets coated with active chitosan nanoparticles films (T4) and active CMC nanoparticles films (T8) were 6.50 and 6.53, respectively. And wrapped with functional nanopolymer films led to a delay in lipid oxidation and a decrease in the rise in TBA values. On the ninth day, the lowest values ​​were for T4 treatment, 1.95, followed by T8, 2.05 mg Malone Aldehyde/kg. As for the peroxide values, the two treatments, T4 and T8, recorded statistically significant differences, They were 4.73 and 4.94 (mEq O2 / kg), respectively. And food packaging with active nano biofilms reduced moisture transfer between food and the external environment. The control treatment T0 was 60.14%. As for the wrapped models, the highest moisture content was recorded with significant differences for treatments T4, T3, T8, and T7 ranging between 71.03- 72.16 and resulting in prolonging the storage period to 9 days compared to the control sample (3) days and the other coated samples (6) days.
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