scholarly journals Structures and Metabolic Properties of Bovine Milk Oligosaccharides and Their Potential in the Development of Novel Therapeutics

2019 ◽  
Vol 6 ◽  
Author(s):  
Randall C. Robinson
Nutrients ◽  
2018 ◽  
Vol 10 (10) ◽  
pp. 1489 ◽  
Author(s):  
Karina Obelitz-Ryom ◽  
Amalie Rendboe ◽  
Duc Nguyen ◽  
Silvia Rudloff ◽  
Anne Brandt ◽  
...  

Oligosaccharides support gut development and bacterial colonization in term infants, but it is unknown if they benefit preterm infants. Using preterm pigs, we investigated effects of bovine milk supplements enriched with oligosaccharides to improve gut development and colonization. Caesarean-delivered preterm pigs (n = 57) were reared for 19 days. The pigs were fed bovine milk supplemented with an oligosaccharide-enriched whey containing sialyllactose, or a heterogeneous oligosaccharide ingredient. To evaluate the influence of artificial rearing, near-term, vaginally born pigs raised by their sow (n = 12) were compared with artificially reared, caesarean-delivered near-term pigs (n = 14). In preterm pigs, the clinical outcome, gut function, gut microbiota, and systemic immunity were similar among dietary treatments. Natural rearing increased growth rates, gut functions, colon short chain fatty acid concentrations and bacterial diversity, relative to artificial rearing. In conclusion, supplements with bovine milk oligosaccharides were well tolerated, but did not improve gut maturation or clinical outcomes in artificially reared preterm piglets. Immaturity at birth, coupled with artificial rearing, may render the neonate unresponsive to the gut-protective effects of milk oligosaccharides. Whether bovine milk oligosaccharides may affect other endpoints (e.g., brain functions) in conditions of immaturity remains to be investigated.


2017 ◽  
Vol 6 ◽  
Author(s):  
Jennifer T. Smilowitz ◽  
Danielle G. Lemay ◽  
Karen M. Kalanetra ◽  
Elizabeth L. Chin ◽  
Angela M. Zivkovic ◽  
...  

AbstractMechanistic research suggests a unique evolutionary relationship between complex milk oligosaccharides and cognate bifidobacteria enriched in breast-fed infants. Bovine milk oligosaccharides (BMO) were recently identified as structurally and functionally similar to human milk oligosaccharides. The present single-blind three-way crossover study is the first to determine the safety and tolerability of BMO consumption by healthy human participants (n 12) and its effects on faecal microbiota and microbial metabolism. Participants consumed each supplement (placebo-control; low- and high-BMO doses) for eleven consecutive days, followed by a 2-week washout period prior to initiating the next supplement arm. Low and high BMO doses were consumed as 25 and 35 % of each individual's daily fibre intake, respectively. Safety and tolerability were measured using standardised questionnaires on gut and stomach discomfort and stool consistency. Faecal extracts were profiled for bacterial populations by next-generation sequencing (NGS) and bifidobacteria presence was confirmed using quantitative PCR. Urine was analysed for changes in microbial metabolism using nuclear magnetic resonance spectroscopy (1H-NMR). Consumption of both the low and high BMO doses was well tolerated and did not change stool consistency from baseline. Multivariate analysis of the NGS results demonstrated no change in faecal microbiota phyla among the placebo-control and BMO supplement groups. In conclusion, BMO supplementation was well tolerated in healthy adults and has the potential to shift faecal microbiota toward beneficial strains as part of a synbiotic treatment with probiotic cultures that selectively metabolise oligosaccharides.


2019 ◽  
Vol 9 (1) ◽  
Author(s):  
Randall C. Robinson ◽  
Nina A. Poulsen ◽  
Emeline Colet ◽  
Chloe Duchene ◽  
Lotte Bach Larsen ◽  
...  

2018 ◽  
Vol 216 ◽  
pp. 27-35 ◽  
Author(s):  
Juliana M.L.N. de Moura Bell ◽  
Joshua L. Cohen ◽  
Leticia F.M.C. de Aquino ◽  
Hyeyoung Lee ◽  
Vitor L. de Melo Silva ◽  
...  

2021 ◽  
Vol 114 ◽  
pp. 104917
Author(s):  
Anne Vuholm Sunds ◽  
Apichaya Bunyatratchata ◽  
Randall Robinson ◽  
Maria Glantz ◽  
Marie Paulsson ◽  
...  

2018 ◽  
Vol 81 ◽  
pp. 87-94 ◽  
Author(s):  
Joseph Thomas Ryan ◽  
Helen Slattery ◽  
Rita M. Hickey ◽  
Mariarosaria Marotta

2019 ◽  
Vol 18 (8) ◽  
pp. 3086-3098 ◽  
Author(s):  
Louise M. A. Jakobsen ◽  
Ulrik K. Sundekilde ◽  
Henrik J. Andersen ◽  
Dennis S. Nielsen ◽  
Hanne C. Bertram

Nutrients ◽  
2020 ◽  
Vol 12 (4) ◽  
pp. 1030 ◽  
Author(s):  
Marcia H. Monaco ◽  
Dae Hee Kim ◽  
Rit B. Gurung ◽  
Sharon M. Donovan

Oligosaccharides are complex, non-digestible glycans found in large abundance in human milk. The abundance and the profile of bovine milk oligosaccharides and bovine milk based in infant formula differ from those in human milk. Recently, some human milk oligosaccharides (HMOs) have been supplemented to infant formula, however, not all forms have been available in large scale. The objective of the study was to investigate the dose-dependent effects of an enzymatically-synthesized 6′-sialyllactose (6′-SL) sodium salt supplemented to swine milk replacer on growth, hematological parameters, and organ microscopic assessment in our pre-clinical neonatal pig model. Two-day-old male and female pigs (n = 47) were provided one of four experimental diets for 21 days. Diets were formulated to contain 0 (CON), 300 (LOW), 600 (MOD), or 1200 (HIGH) mg/L of 6′-SL sodium salt. On days 8 and 22, samples were collected for hematological and histological analyses. Supplemental 6′-SL sodium salt at all doses supported growth and development comparable to those observed in control animals. In addition, serum chemistries, hematology, and organ microscopic structure were unaffected by 6′-SL (p > 0.05). Thus, addition of enzymatically-synthesized 6′-SL to a milk replacer formula supported growth and clinical outcomes similar to the control formula in the neonatal piglet.


2020 ◽  
Vol 79 ◽  
pp. 108340 ◽  
Author(s):  
Samuel T. Westreich ◽  
Jaime Salcedo ◽  
Blythe Durbin-Johnson ◽  
Jennifer T. Smilowitz ◽  
Ian Korf ◽  
...  

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