Chen Po-Wen, Liu Zhen-Shu, Kuo Tai-Chen, Hsieh Min-Chi, Li Zhe-Wei
Department of Nursing, St. Mary's Junior College of Medicine, Nursing and Management, Yilan, Taiwan, Republic of China.
Department of Safety, Health and Environmental Engineering, Ming Chi University of Technology, New Taipei City, 24301, Taiwan, Republic of China.
Biometals. 2017 Apr;30(2):237-248. doi: 10.1007/s10534-017-9999-8. Epub 2017 Feb 9.
Bovine lactoferrin (bLf) is a natural iron-binding protein and it has been suggested to be a prebiotic agent, but this finding remains inconclusive. This study explores the prebiotic potential of bLf in 14 probiotics. Initially, bLf (1-32 mg/mL) treatment showed occasional and slight prebiotic activity in several probiotics only during the late experimental period (48, 78 h) at 37 °C. We subsequently supposed that bLf exerts stronger prebiotic effects when probiotic growth has been temperately retarded. Therefore, we incubated the probiotics at different temperatures, namely 37 °C, 28 °C, room temperature (approximately 22-24 °C), and 22 °C, to retard or inhibit their growth. As expected, bLf showed more favorable prebiotic activity in several probiotics when their growth was partially retarded at room temperature. Furthermore, at 22 °C, the growth of Bifidobacterium breve, Lactobacillus coryniformis, L. delbrueckii, L. acidophilus, B. angulatum, B. catenulatum, and L. paraplantarum were completely blocked. Notably, these probiotics started regrowing in the presence of bLf (1-32 mg/mL) in a significant and dose-dependent manner. Accordingly, bLf significantly increased the growth of Pediococcus pentosaceus, L. rhamnosus, and L. paracasei (BCRC 17483; a locally isolated strain) when their growth was retarded by incubation at 22 °C. In conclusion, bLf showed inconsistent prebiotic activity in the 14 probiotics at 37 °C, but revealed strong prebiotic activity in 10 probiotic strains at 22 °C. Therefore, this study enables determining additional roles of Lf in probiotic strains, which can facilitate developing novel combinational approaches by simultaneously using Lf and specific probiotics.
牛乳铁蛋白(bLf)是一种天然的铁结合蛋白,有人认为它是一种益生元制剂,但这一发现仍无定论。本研究探讨了bLf在14种益生菌中的益生元潜力。最初,bLf(1 - 32毫克/毫升)处理仅在37℃实验后期(48、78小时)对几种益生菌偶尔表现出轻微的益生元活性。我们随后推测,当益生菌生长受到适度抑制时,bLf会发挥更强的益生元作用。因此,我们将益生菌在不同温度下培养,即37℃、28℃、室温(约22 - 24℃)和22℃,以延缓或抑制其生长。正如预期的那样,当益生菌在室温下生长受到部分抑制时,bLf在几种益生菌中表现出更有利的益生元活性。此外,在22℃时,短双歧杆菌、棒状乳杆菌、德氏乳杆菌、嗜酸乳杆菌、角双歧杆菌、链状双歧杆菌和类植物乳杆菌的生长完全被阻断。值得注意的是,这些益生菌在存在bLf(1 - 32毫克/毫升)的情况下开始以显著的剂量依赖性方式重新生长。相应地,当戊糖片球菌、鼠李糖乳杆菌和副干酪乳杆菌(BCRC 17483;一种本地分离菌株)在22℃培养生长受到抑制时,bLf显著促进了它们的生长。总之,bLf在37℃时对14种益生菌的益生元活性不一致,但在22℃时对10种益生菌菌株表现出强大的益生元活性。因此,本研究有助于确定乳铁蛋白在益生菌菌株中的其他作用,这可以促进通过同时使用乳铁蛋白和特定益生菌来开发新的组合方法。