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image: A Complex Disorder

A Complex Disorder

By , , and | November 1, 2015

Factors that likely contribute to obesity include disruptions to intercellular signaling, increased inflammation, and changes to the gut microbiome.  

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image: Microbiome Meals

Microbiome Meals

By | October 1, 2015

Researchers identify a handful of genes that help bacteria in the mouse gut adapt to dietary changes.

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image: Microbiome Teams Up Against <em>C. diff</em>

Microbiome Teams Up Against C. diff

By | July 14, 2015

Researchers build a mathematical model that can predict whether a mouse will be infected by Clostridium difficile based on the microbes found in its GI tract.

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image: The Sum of Our Parts

The Sum of Our Parts

By and | July 1, 2015

Putting the microbiome front and center in health care, in preventive strategies, and in health-risk assessments could stem the epidemic of noncommunicable diseases.

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image: Circadian Clock Transplant

Circadian Clock Transplant

By | June 12, 2015

Scientists establish a functional circadian rhythm in bacteria that don’t possess one naturally.

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image: Maturation of the Infant Microbiome

Maturation of the Infant Microbiome

By | May 13, 2015

Gut microbial communities from breastfed babies are slow to resemble adults’ microbiota.

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image: How a Popular Probiotic Works

How a Popular Probiotic Works

By | April 16, 2015

Eating a type of bacterium encourages the activity of other gut microbes, according to a small study.

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image: Mother’s Genes Influence Baby’s Bacteria

Mother’s Genes Influence Baby’s Bacteria

By | April 13, 2015

A breast milk-associated gene mutation impacts the establishment of a newborn’s gut microbiome, a study suggests.

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image: Quorum-Sensing Molecule Modifies Gut Microbiota

Quorum-Sensing Molecule Modifies Gut Microbiota

By | March 19, 2015

Increasing the abundance of a chemical some microbes use to communicate with one another can help reinstate beneficial bacterial populations in the guts of antibiotic-treated mice. 

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image: B Cell Bosses

B Cell Bosses

By | February 1, 2015

Gut bacteria in mice spur regulatory B cells to differentiate and release an anti-inflammatory cytokine.

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