Dobreva Lili, Atanasova Nikoleta, Donchev Petar, Krumova Ekaterina, Abrashev Radoslav, Karakirova Yordanka, Mladenova Ralitsa, Tolchkov Vladimir, Ralchev Nikola, Dishliyska Vladislava, Danova Svetla
The Stephan Angeloff Institute of Microbiology, Bulgarian Academy of Sciences, 26 Acad. G. Bonchev Str., 1113 Sofia, Bulgaria.
Institute of Catalysis, Bulgarian Academy of Sciences, 11 Acad. G. Bonchev Str., 1113 Sofia, Bulgaria.
Microorganisms. 2024 Sep 19;12(9):1910. doi: 10.3390/microorganisms12091910.
species are widely recognized for their probiotic potential, focusing on their mechanisms of health benefits and protection. Here we conducted an in vitro investigation of the probiotic potential with a role in microbiome homeostasis of four strains: L6 and F53, 1, and 611. A broad spectrum of antibacterial and antifungal activity was determined. The strain-specific inhibition of , , , , and saprophytic/toxigenic fungi makes them promising as protective cultures. DPPH (2,2-diphenyl-1-picrylhydrazyl) and ABTS (2,2'-azino-bis-(3-ethylbenzothiazoline-6-sulfonic) acid) measurements showed that tested samples had strain-specific capacity for scavenging of radicals. The molecular base for the antioxidant potential of two lyophilized forms of active strains was investigated by electron paramagnetic resonance spectroscopy. The MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide) assay, with fractions of the most active postbiotics obtained by SEC-FPLC (fast protein liquid chromatography) analysis, showed a wide variety of effects on the growth of a K562 myeloid leukemia cell line. The IC (half-maximal inhibitory concentration) of 1 was determined to be 46.15 mg/mL. The proven in vitro functionality of the selected lactobacilli make them suitable for development of target probiotics with specific beneficial effects expected in vivo. Further investigations on produced postbiotics and safety have to be completed before they can be considered as scientifically proven probiotic strains.
这些菌种因其益生菌潜力而被广泛认可,重点在于它们的健康益处和保护机制。在此,我们对四株菌株(L6、F53、1和611)在微生物群稳态中发挥作用的益生菌潜力进行了体外研究。测定了其广泛的抗菌和抗真菌活性。对[具体菌种]、[具体菌种]、[具体菌种]、[具体菌种]以及腐生/产毒真菌的菌株特异性抑制作用使其有望成为保护性培养物。二苯基苦味酰基自由基(DPPH,2,2 - 二苯基 - 1 - 苦基肼)和2,2'-联氮 - 双 -(3 - 乙基苯并噻唑啉 - 6 - 磺酸)(ABTS)测定表明,测试样品具有菌株特异性的自由基清除能力。通过电子顺磁共振光谱研究了两种冻干形式的活性菌株抗氧化潜力的分子基础。采用快速蛋白质液相色谱(SEC - FPLC)分析获得的最具活性的后生元组分进行的噻唑蓝(MTT,3 -(4,5 - 二甲基噻唑 - 2 - 基)- 2,5 - 二苯基四氮唑溴盐)测定,显示对K562髓系白血病细胞系的生长有多种影响。菌株1的半数抑制浓度(IC)测定为46.15 mg/mL。所选乳酸杆菌已证实的体外功能使其适合开发具有体内预期特定有益效果的目标益生菌。在它们被视为经科学验证的益生菌菌株之前,必须完成对所产生的后生元和安全性的进一步研究。