Grigas Juozas, Ruzauskas Modestas, Pautienius Arnoldas, Bartkiene Elena, Lele Vita, Starkute Vytaute, Zavistanaviciute Paulina, Zokaityte Egle, Bernatoniene Jurga, Ivanauskas Liudas, Jakstas Valdas, Stankevicius Arunas
Laboratory of Immunology, Department of Anatomy and Physiology, Lithuanian University of Health Sciences, Tilzes Str. 18, LT-47181 Kaunas, Lithuania.
Institute of Microbiology and Virology, Lithuanian University of Health Sciences, Tilzes Str. 18, LT-47181 Kaunas, Lithuania.
Foods. 2021 Jun 7;10(6):1313. doi: 10.3390/foods10061313.
Dietary components, such as lactic acid bacteria (LAB), bovine colostrum, apple production by-products, and essential oils, can favorably alter the host immune system and gut microbiota, however, their cumulative effect as multicomponent nutraceutical supplement has not been investigated. Therefore, the present study is the first one to evaluate a combination of LAB, bovine colostrum, dehydrated apple pomace, and essential oils for their immunomodulatory and prebiotic properties in the swine model. This study shows that supplementary feeding of pigs using multicomponent nutraceutical resulted in a statistically significant decrease in proportions of T cytotoxic and double-positive (CD4CD8) cells within the CD3 cell population at 28 DPI, compared to the beginning of the experiment (0DPI). Conversely, a statistically significant increase in proportions of B cells (accompanied by an increase in IgG concentration) and macrophage/monocyte cells within viable cell population at 28 DPI, compared to the beginning of the experiments, was observed. Furthermore, changes in the bacterial composition of gut microbiota in pigs fed with multicomponent nutraceutical changed significantly, with a 1.78 times higher number of probiotic strains (, ) at the end of the experiment, compared to control group animals. This study shows a positive effect of the nutraceutical formula used on the changes of gut microbiota by facilitating an increase in probiotic bacteria strains and possible anti-inflammatory properties.
膳食成分,如乳酸菌(LAB)、牛初乳、苹果生产副产品和精油,可有利地改变宿主免疫系统和肠道微生物群,然而,它们作为多成分营养补充剂的累积效应尚未得到研究。因此,本研究首次评估了乳酸菌、牛初乳、脱水苹果渣和精油组合在猪模型中的免疫调节和益生元特性。本研究表明,与实验开始时(0 DPI)相比,在28 DPI时,使用多成分营养补充剂对猪进行补充喂养导致CD3细胞群中细胞毒性T细胞和双阳性(CD4CD8)细胞的比例在统计学上显著降低。相反,与实验开始时相比,在28 DPI时,活细胞群中B细胞比例(伴随着IgG浓度增加)和巨噬细胞/单核细胞比例在统计学上显著增加。此外,喂食多成分营养补充剂的猪肠道微生物群的细菌组成发生了显著变化,与对照组动物相比,在实验结束时益生菌菌株数量增加了1.78倍(,)。本研究表明,所使用的营养补充剂配方通过促进益生菌菌株的增加和可能的抗炎特性,对肠道微生物群的变化具有积极影响。