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作 者:Ayesha Sardar Khalid Taskeen Niaz Bina Zarif Saima Shabbir Tayyaba Noor Ramla Shahid Muhammad Imran
机构地区:[1]Department of Biosciences,Faculty of Sciences,COMSATS University Islamabad,Park Road,Islamabad,45550,Pakistan [2]Department of Materials Science and Engineering,Institute of Space Technology,Islamabad,44000,Pakistan [3]School of Chemical and Materials Engineering (SCME),National University of Science and Technology (NUST),Islamabad,Pakistan
出 处:《Food Bioscience》2022年第3期371-382,共12页食品生物科学(英文)
基 金:grateful to Higher Education Commission(HEC),Pakistan for funding under the National Research Program for Universities(NRPU)Vide Grant No.5378.
摘 要:Milk fat globule membrane (MFGM) phospholipids-based nanostructures were developed and their functionalization with rhamnolipids (RLs) was carried out to enhance the preservation of cheese against resistant foodborne pathogens i.e.,Listeria monocytogenes and Escherichia coli .Void (without nisin) and nisin-loaded RLs functionalized MFGM nanostructures (RLs-MFGM-NS) were fabricated by ultrasonication-assisted self-assembly method.Cubic morphology of void and loaded RLs-MFGM-NS and pristine MFGM nanostructures (MFGM-NS) was observed under scanning electron microscopy (SEM),which indicated uniform size ranging from 43 nm (void RLs-MFGM-NS) to 194 nm (loaded RLs-MFGM-NS).FTIR analyses confirmed the electrostatic interaction,predominantly H-bonding and linkage of carboxyl ester group of MFGM with C–H group in RLs after functionalization of NS.Furthermore,quantitative antimicrobial assay on cheese slices confirmed the broad-spectrum potential of intrinsically active nanostructures (due to RLs) having synergistic activity with nisin against L.monocytogenes and E.coli .Hence,nisin-loaded RLs-MFGM-NS can be applied as promising bioactive additives for sustained preservation of cheese.
关 键 词:RHAMNOLIPIDS Nisin MFGM Functionalized nanostructures Foodborne pathogens
分 类 号:TS202.3[轻工技术与工程—食品科学]
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