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用提取物生物合成的氧化锌纳米颗粒在保持去皮虾品质方面的应用

Application of ZnO Nanoparticles Phycosynthesized with Extract for Preserving Peeled Shrimp Quality.

作者信息

Alsaggaf Mohammed S, Diab Amany M, ElSaied Basant E F, Tayel Ahmed A, Moussa Shaaban H

机构信息

Department of Biology, College of Science and Humanitarian Studies, Shaqra University, Qwaieah 11971, Saudi Arabia.

Department of Aquaculture, Faculty of Aquatic and Fisheries Sciences, Kafrelsheikh University, Kafrelsheikh 33516, Egypt.

出版信息

Nanomaterials (Basel). 2021 Feb 3;11(2):385. doi: 10.3390/nano11020385.

Abstract

Zinc oxide nanoparticles (ZnONPs) were the targets of numerous biological syntheses to attain their precious values in various biomedical fields. The phycosynthesis of ZnONPs were innovatively investigated using cell-free extract of the macroalgae, . The phycosynthesized -zinc oxide nanoparticles (UFD-ZnONPs) had 77.81 nm mean size, with flower and sphere shapes and positive zeta potential. The UFD-ZnONPs infra-red analysis indicated their basic components' cross-linkage. The antibacterial potentialities of UFD-ZnONPs were confirmed, qualitatively and quantitatively, against foodborne microorganisms ( plus ); the bactericidal action was higher for UFD-ZnONPs than the annealed phycosynthesized ZnONPs. The scanning micrographs of and cells treated with UFD-ZnONPs indicated the severe action of nanoparticles to destroy bacterial cells in time-dependent manners. Peeled shrimps () were biopreservated through refrigerated storage (4 °C) with UFD-ZnONPs based solution for six days. The microbial examination of UFD-ZnONPs -treated shrimps displayed decrease in microbial loads throughout the storage days. Moreover, the UFD-ZnONPs-treated shrimps showed acceptable sensorial attributes (appearance, odor, color and texture) compared to untreated shrimps. UFD-ZnONPs nanocomposite concentration of 3% and 5% could be remarkably suggested as efficient procedure for shrimps' biopreservation during refrigerated storage regarding sensorial quality and microbial profile of product.

摘要

氧化锌纳米颗粒(ZnONPs)是众多生物合成的目标,以在各种生物医学领域实现其宝贵价值。利用大型藻类的无细胞提取物对ZnONPs的藻类合成进行了创新性研究。藻类合成的 - 氧化锌纳米颗粒(UFD-ZnONPs)平均尺寸为77.81纳米,具有花状和球状形状以及正的zeta电位。UFD-ZnONPs的红外分析表明了其基本成分的交联。定性和定量地证实了UFD-ZnONPs对食源微生物(加 )的抗菌潜力;UFD-ZnONPs的杀菌作用比退火的藻类合成ZnONPs更高。用UFD-ZnONPs处理的 和 细胞的扫描显微照片表明纳米颗粒以时间依赖性方式严重破坏细菌细胞。去皮虾( )用基于UFD-ZnONPs的溶液在冷藏(4°C)下生物保存六天。对UFD-ZnONPs处理的虾的微生物检测显示在整个储存期间微生物负荷下降。此外,与未处理的虾相比,UFD-ZnONPs处理的虾表现出可接受的感官属性(外观、气味、颜色和质地)。就产品的感官质量和微生物特征而言,3%和5%的UFD-ZnONPs纳米复合材料浓度可作为冷藏储存期间虾生物保存的有效方法。

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