• 제목/요약/키워드: Milk human, microbiota

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A2유형 우유의 특성과 기능 (A Study on the Features and Functions of A2 Milk)

  • 김언태;주성용;이승준;엄준식;임동현;최하영;이유리;임새하;박상훈;김상범;김명후;허태영
    • Journal of Dairy Science and Biotechnology
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    • 제42권2호
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    • pp.23-34
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    • 2024
  • Milk, which is often referred to as a healthy beverage, is the first food encountered at birth. During digestion, A1-type milk often leads to digestive disorders due to increased levels of 𝛽-casomorphin-7. It also tends to induce inflammatory responses in the gut immune system by altering the gut microbiota and triggering conditions such as diabetes and respiratory hypersensitivity. In contrast, A2-type milk is gaining attention because of fewer associated problems than A1 milk and its unique functional benefits. However, information on the efficacy of A2 milk relies primarily on limited clinical and animal trial data, and substantiating its efficacy and functional superiority remains a challenge. Therefore, various studies, including research on the distinctive efficacy and functions of A2 milk compared with conventional A1 milk and investigations into the mechanisms underlying its effects on human health following consumption, are necessary in the future.

유제품 섭취와 당뇨 예방 (Dairy Products Intake and Managing Diabetes)

  • 김민경;최아리;한기성;정석근;오미화;김동훈;함준상
    • Journal of Dairy Science and Biotechnology
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    • 제29권1호
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    • pp.17-22
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    • 2011
  • Milk intake is widely recommended for healthy diet, not only for bone growth and maintenance, but also as a protein, calcium and magnesium sources as part of an adequate diet. Many research suggest that milk and dairy products are associated with a lower risk of type 2 diabetes mellitus (T2DM). Milk and dairy products are low Glycemic index (GI) and Glycemic load (GL) foods. The GI and GL are useful tools to choose foods to help control blood glucose levels in people with diabetes. The GI and GL of milk are 32~42 and 4~5, respectively, and which are about 1/2 and 1/5 of boiled rice. The mechanisms underlying the effects of dairy on T2DM development includes the calcium and vitamin D content in dairy foods and the possible positive effect of high milk and calcium intake on weight control. The role of dairy products on reducing the risk of diabetes can be inferred from the reports that lower serum IGF-1 levels were positively associated with diabetes and the girls with low milk intake had significantly lower IGF-1. Accumulating data from both patients and animal models suggest that microbial ecosystems associated with the human body, especially the gut microbiota, may be associated with several important diseases, such as inflammatory bowel disease, obesity, diabetes and cardiovascular disease. It was thought that fermented milk containing lots of probiotics can be useful for controling blood glucose levels and preventing complication of diabetes, but sucrose in commercial yogurt should be substituted. There are some reports of oligosaccharide, xylitol, and stevia as a potentially useful sweetener in the diabetic diet.

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Genomic Characterization and Safety Assessment of Bifidobacterium breve BS2-PB3 as Functional Food

  • Kristin Talia Marbun;Marcelia Sugata;Jonathan Suciono Purnomo;Dikson;Samuel Owen Mudana;Tan Tjie Jan;Juandy Jo
    • Journal of Microbiology and Biotechnology
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    • 제34권4호
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    • pp.871-879
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    • 2024
  • Our group had isolated Bifidobacterium breve strain BS2-PB3 from human breast milk. In this study, we sequenced the whole genome of B. breve BS2-PB3, and with a focus on its safety profile, various probiotic characteristics (presence of antibiotic resistance genes, virulence factors, and mobile elements) were then determined through bioinformatic analyses. The antibiotic resistance profile of B. breve BS2-PB3 was also evaluated. The whole genome of B. breve BS2-PB3 consisted of 2,268,931 base pairs with a G-C content of 58.89% and 2,108 coding regions. The average nucleotide identity and whole-genome phylogenetic analyses supported the classification of B. breve BS2-PB3. According to our in silico assessment, B. breve BS2-PB3 possesses antioxidant and immunomodulation properties in addition to various genes related to the probiotic properties of heat, cold, and acid stress, bile tolerance, and adhesion. Antibiotic susceptibility was evaluated using the Kirby-Bauer disk-diffusion test, in which the minimum inhibitory concentrations for selected antibiotics were subsequently tested using the Epsilometer test. B. breve BS2-PB3 only exhibited selected resistance phenotypes, i.e., to mupirocin (minimum inhibitory concentration/MIC >1,024 ㎍/ml), sulfamethoxazole (MIC>1,024 ㎍/ml), and oxacillin (MIC >3 ㎍/ml). The resistance genes against those antibiotics, i.e., ileS, mupB, sul4, mecC and ramA, were detected within its genome as well. While no virulence factor was detected, four insertion sequences were identified within the genome but were located away from the identified antibiotic resistance genes. In conclusion, B. breve BS2-PB3 demonstrated a sufficient safety profile, making it a promising candidate for further development as a potential functional food.