Lactobacillus plantarum strain maintains growth of infant mice during chronic undernutrition

Штамм Lactobacillus plantarum поддерживает рост детёнышей мышей при хронической недоедании
Martin Schwarzer, Dagmar Šrůtková, Hubert Vidal, François Leulier, Maria Elena Martino, Jennifer Rieusset, Kassem Makki, Gilles Storelli, Irma Machuca‐Gayet, Petra Hermanová, Séverine Balmand, Tomáš Hudcovic, Abdelaziz Heddi, Hana Kozáková
2016-02-19

Lactobacillus plantarumgrowth hormone resistancegut microbiota transplantationinfant undernutritionliver signaling pathways
Microbiota and infant development Malnutrition in children is a persistent challenge that is not always remedied by improvements in nutrition. This is because a characteristic community of gut microbes seems to mediate some of the pathology. Human gut microbes can be transplanted effectively into germ-free mice to recapitulate their associated phenotypes. Using this model, Blanton et al. found that the microbiota of healthy children relieved the harmful effects on growth caused by the microbiota of malnourished children. In infant mammals, chronic undernutrition results in growth hormone resistance and stunting. In mice, Schwarzer et al. showed that strains of Lactobacillus plantarum in the gut microbiota sustained growth hormone activity via signaling pathways in the liver, thus overcoming growth hormone resistance. Together these studies reveal that specific beneficial microbes could potentially be exploited to resolve undernutrition syndromes. Science , this issue p. 10.1126/science.aad3311 , p. 854
1
Chronic undernutrition in infant mammals causes growth hormone resistance and stunting.
2
Microbiota from healthy children alleviated growth impairments caused by microbiota from malnourished children in the mouse model.
3
Specific beneficial gut microbes could potentially be used to treat or resolve undernutrition syndromes.
4
Strains of Lactobacillus plantarum sustained growth hormone activity in infant mice by signaling through liver pathways, overcoming growth hormone resistance.
5
Transplanting human gut microbiota into germ-free mice reproduces associated growth phenotypes from donor children.

Lactobacillus plantarum strain in the gut microbiota of infant mice

Ability of the L. plantarum strain to maintain/sustain growth of infant mice during chronic undernutrition by preserving growth hormone activity via liver signaling pathways

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2016-02-19
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Authors
Martin Schwarzer
Dagmar Šrůtková
Hubert Vidal
François Leulier
Maria Elena Martino
Jennifer Rieusset
Kassem Makki
Gilles Storelli
Irma Machuca‐Gayet
Petra Hermanová
Séverine Balmand
Tomáš Hudcovic
Abdelaziz Heddi
Hana Kozáková
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