Bifidobacterium infantis treatment promotes weight gain in Bangladeshi infants with severe acute malnutrition

双歧杆菌 粪便 医学 生理学 肠道菌群 体重增加 长双歧杆菌 营养不良 安慰剂 内科学 胃肠病学 免疫学 生物 体重 微生物学 乳酸菌 细菌 遗传学 替代医学 病理
作者
Michael J. Barratt,Sharika Nuzhat,Kazi Ahsan,Steven A. Frese,Aleksandr A. Arzamasov,Shafiqul Alam Sarker,M. Munirul Islam,Parag Palit,Md Ridwan Islam,Martin L. Hibberd,Swetha Nakshatri,Carrie A. Cowardin,Janaki L. Guruge,Alexandra Byrne,Siddarth Venkatesh,Vinaik Sundaresan,Bethany M. Henrick,Rebbeca M. Duar,Ryan Mitchell,Giorgio Casaburi,Johann Prambs,Robin L. Flannery,Mustafa Mahfuz,Dmitry A. Rodionov,Andrei L. Osterman,David J. Kyle,Tahmeed Ahmed,Jeffrey I. Gordon
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:14 (640) 被引量:93
标识
DOI:10.1126/scitranslmed.abk1107
摘要

Disrupted development of the gut microbiota is a contributing cause of childhood malnutrition. Bifidobacterium longum subspecies infantis is a prominent early colonizer of the infant gut that consumes human milk oligosaccharides (HMOs). We found that the absolute abundance of Bifidobacterium infantis is lower in 3- to 24-month-old Bangladeshi infants with severe acute malnutrition (SAM) compared to their healthy age-matched counterparts. A single-blind, placebo-controlled trial (SYNERGIE) was conducted in 2- to 6-month-old Bangladeshi infants with SAM. A commercial U.S. donor–derived B. infantis strain (EVC001) was administered daily with or without the HMO lacto- N -neotetraose for 28 days. This intervention increased fecal B. infantis abundance in infants with SAM, although to levels still 10- to 100-fold lower than in untreated healthy controls. EVC001 treatment promoted weight gain that was associated with reduced intestinal inflammation markers in infants with SAM. We cultured fecal B. infantis strains from Bangladeshi infants and colonized gnotobiotic mice with these cultured strains. The gnotobiotic mice were fed a diet representative of that consumed by 6-month-old Bangladeshi infants, with or without HMO supplementation. One B. infantis strain, Bg_2D9, expressing two gene clusters involved in uptake and utilization of N -glycans and plant-derived polysaccharides, exhibited superior fitness over EVC001. The fitness advantage of Bg_2D9 was confirmed in a gnotobiotic mouse model of mother-to-infant gut microbiota transmission where dams received a pretreatment fecal community from a SAM infant in the SYNERGIE trial. Whether Bg_2D9 is superior to EVC001 for treating malnourished infants who consume a diet with limited breastmilk requires further clinical testing.
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