M'hir Sana, Ayed Lamia, De Pasquale Ilaria, Fanizza Elisabetta, Tlais Ali Zein Alabiden, Comparelli Roberto, Verni Michela, Latronico Rosanna, Gobbetti Marco, Di Cagno Raffaella, Filannino Pasquale
Laboratory of Microbial Ecology and Technology (LETMi), National Institute of Applied Sciences and Technology (INSAT), University of Carthage, BP 676, Tunis 1080, Tunisia.
Department of Animal Biotechnology, Higher Institute of Biotechnology of Beja, University of Jendouba, BP 382, Beja 9000, Tunisia.
Antioxidants (Basel). 2024 Mar 11;13(3):335. doi: 10.3390/antiox13030335.
Different types of milk are used in the production of milk kefir, but little information is available on the release of potentially antioxidant exopolysaccharides (EPS). The aim of this study was to investigate whether the microbial dynamics and EPS release are dependent on the milk substrate. In our study, the inoculated microbial consortium was driven differently by each type of milk (cow, ewe, and goat). This was evident in the sugar consumption, organic acid production, free amino release, and EPS production. The amount and the composition of the secreted EPS varied depending on the milk type, with implications for the structure and functional properties of the EPS. The low EPS yield in ewe's milk was associated with a higher lactic acid production and thus with the use of carbon sources oriented towards energy production. Depending on the milk used as substrate, the EPS showed different monosaccharide and FT-IR profiles, microstructures, and surface morphologies. These differences affected the antiradical properties and reducing power of the EPS. In particular, EPS extracted from cow's milk had a higher antioxidant activity than other milk types, and the antioxidant activity was concentration dependent.
不同类型的牛奶被用于开菲尔粒奶的生产,但关于潜在抗氧化胞外多糖(EPS)释放的信息很少。本研究的目的是调查微生物动态和EPS释放是否依赖于牛奶底物。在我们的研究中,接种的微生物群落因每种类型的牛奶(牛奶、羊奶和山羊奶)而有不同的变化。这在糖消耗、有机酸产生、游离氨基酸释放和EPS产生方面很明显。分泌的EPS的数量和组成因牛奶类型而异,这对EPS的结构和功能特性有影响。羊奶中EPS产量低与较高的乳酸产生有关,因此与用于能量产生的碳源利用有关。根据用作底物的牛奶不同,EPS显示出不同的单糖和傅里叶变换红外光谱(FT-IR)图谱、微观结构和表面形态。这些差异影响了EPS的抗自由基性能和还原能力。特别是,从牛奶中提取的EPS比其他类型的牛奶具有更高的抗氧化活性,并且抗氧化活性是浓度依赖性的。