Gut microbiota are an important component of the human organism, contributing to metabolism and believed to play a role in the maintenance of health. Preterm babies are exposed to different early life interventions than full-term ones. They are exposed to prolonged courses of antibiotics and often fed parenterally, with delayed or limited enteral nutrition intake. The aim of this research was to assess how early life interventions (type of parenteral nutrition, type of milk, mode of delivery) and other factors (gestational age at birth, postnatal age, sex of the baby) affect the development of gut microbiota and the consequent metabolic impact in preterm babies. Two thousand stool and urine samples were collected from 160 babies. Gut...
The intestinal microbiota is an important contributor to the health of preterm infants, and may be d...
Preterm birth interrupts the natural, intrauterine growth path of infants that occurs during the thi...
Gut microbiota can influence cell differentiation, metabolism, and immune function and is key for th...
The intestinal microbiota is an important contributor to the health of preterm infants, and may be d...
Functioning of the gastrointestinal tract, and of the microbiota residing therein, is of significanc...
The nutritional requirements of preterm infants are unique and challenging to meet in neonatal care,...
Gut microbiota plays a key role in multiple aspects of human health and disease, particularly in ear...
The intestinal microbiota is an important contributor to the health of preterm infants, and may be d...
The intestinal microbiota is an important contributor to the health of preterm infants, and may be d...
Background: The gut is the most extensively studied niche of the human microbiome. The aim of this s...
Microbial colonization of the infant gut is essential for the development of the intestine and the i...
<p>Colonization of the infant gut is believed to be critically important for a healthy growth as it ...
<p>Colonization of the infant gut is believed to be critically important for a healthy growth as it ...
The nascent gut microbiota at birth is established in concert with numerous developmental parameters...
The intestinal microbiota is an important contributor to the health of preterm infants, and may be d...
The intestinal microbiota is an important contributor to the health of preterm infants, and may be d...
Preterm birth interrupts the natural, intrauterine growth path of infants that occurs during the thi...
Gut microbiota can influence cell differentiation, metabolism, and immune function and is key for th...
The intestinal microbiota is an important contributor to the health of preterm infants, and may be d...
Functioning of the gastrointestinal tract, and of the microbiota residing therein, is of significanc...
The nutritional requirements of preterm infants are unique and challenging to meet in neonatal care,...
Gut microbiota plays a key role in multiple aspects of human health and disease, particularly in ear...
The intestinal microbiota is an important contributor to the health of preterm infants, and may be d...
The intestinal microbiota is an important contributor to the health of preterm infants, and may be d...
Background: The gut is the most extensively studied niche of the human microbiome. The aim of this s...
Microbial colonization of the infant gut is essential for the development of the intestine and the i...
<p>Colonization of the infant gut is believed to be critically important for a healthy growth as it ...
<p>Colonization of the infant gut is believed to be critically important for a healthy growth as it ...
The nascent gut microbiota at birth is established in concert with numerous developmental parameters...
The intestinal microbiota is an important contributor to the health of preterm infants, and may be d...
The intestinal microbiota is an important contributor to the health of preterm infants, and may be d...
Preterm birth interrupts the natural, intrauterine growth path of infants that occurs during the thi...
Gut microbiota can influence cell differentiation, metabolism, and immune function and is key for th...