Leska Aleksandra, Nowak Adriana, Rosicka-Kaczmarek Justyna, Ryngajłło Małgorzata, Czarnecka-Chrebelska Karolina Henryka
Department of Environmental Biotechnology, Faculty of Biotechnology and Food Sciences, Lodz University of Technology, Wolczanska 171/173, 90-530 Lodz, Poland.
Institute of Food Technology and Analysis, Faculty of Biotechnology and Food Sciences, Lodz University of Technology, Stefanowskiego 2/22, 90-537 Lodz, Poland.
Animals (Basel). 2023 Mar 15;13(6):1059. doi: 10.3390/ani13061059.
Lactic acid bacteria (LAB) are widely used probiotics and offer promising prospects for increasing the viability of honeybees. Thus, the probiotic potential of 10 LAB strains was determined, which in our previous studies showed the most potent protective abilities. In the current study, we investigated various properties of probiotic candidates. The tested LAB strains varied in susceptibility to tested antibiotics. Isolates showed high viability in sugar syrups and gastrointestinal conditions. None of the LAB strains exhibited β-hemolytic activity, mutual antagonism, mucin degradation, hydrogen peroxide production capacity, or bile salt hydrolase (BSH) activity. Additionally, the cytotoxicity of LAB cell-free supernatants (CFS) was assessed, as well as the effect of CFS from 14/1 on the cytotoxicity of coumaphos and chlorpyrifos in the Caco-2 cell line. The viability of Caco-2 cells reached up to 89.81% in the presence of the highest concentration of CFS. Furthermore, LAB metabolites decreased the cytotoxicity of insecticides (up to 19.32%) thus demonstrating cytoprotective activity. All tested LAB strains produced lactic, acetic, and malonic acids. This research allowed the selection of the most effective LAB strains, in terms of probiosis, for future in vivo studies aimed at developing an ecologically protective biopreparation for honeybees.
乳酸菌(LAB)是广泛使用的益生菌,在提高蜜蜂的生存能力方面具有广阔前景。因此,我们测定了10株乳酸菌菌株的益生菌潜力,这些菌株在我们之前的研究中显示出最强的保护能力。在本研究中,我们调查了益生菌候选菌株的各种特性。测试的乳酸菌菌株对测试抗生素的敏感性各不相同。分离株在糖浆和胃肠道条件下显示出高生存能力。没有一株乳酸菌菌株表现出β-溶血活性、相互拮抗作用、粘蛋白降解能力、过氧化氢产生能力或胆汁盐水解酶(BSH)活性。此外,我们评估了乳酸菌无细胞上清液(CFS)的细胞毒性,以及14/1菌株的CFS对Caco-2细胞系中蝇毒磷和毒死蜱细胞毒性的影响。在最高浓度的CFS存在下,Caco-2细胞的存活率高达89.81%。此外,乳酸菌代谢产物降低了杀虫剂的细胞毒性(高达19.32%),从而证明了其细胞保护活性。所有测试的乳酸菌菌株都产生了乳酸、乙酸和丙二酸。这项研究有助于选择在益生菌方面最有效的乳酸菌菌株,用于未来旨在开发一种对蜜蜂具有生态保护作用的生物制剂的体内研究。