MAMI aims to characterize maternal microbes to be transferred to neonates and determine their function in infant health programming.
Recent reports suggest that early microbial colonization has an important role for in promoting health. This may contribute to reduce the risk of chronic diseases such as obesity, allergies and inflammatory conditions. Advances in understanding host-microbe interactions imply that maternal microbiota plays a crucial role on health programming. This process begins in utero and it is modulated by mode of delivery and diet. The investigator's previous data has shown that i) specific shifts in milk microbial composition are associated with lactation time and mode of delivery, ii) milk microbes drive the infant microbiota composition; iii) maternal microbiota dysbiosis may be transferred to the infant. However, factors defining maternal microbiota and its biological role upon infant's health are not yet fully understood. Hence, this project aims to characterize maternal microbes to be transferred to neonates and determine their function in infant health programming. The specific aims are:(1) understanding how the maternal microbiome is influenced by host and environmental factors;(2) characterizing the microbial core and bioactive compounds transmitted to the offspring mainly via breastfeeding and their key roles in the microbial modulation and host response;(3) understanding the interactions among breast milk bioactive compounds and their role in infant health;(4) shedding light on how maternal microbes influence the infant immune system. Results obtained will demonstrate the interaction between infant nutrition, microbes and host response in early life and its key role in health programming, enabling new applications in the field of personalized nutrition \& medicine.
Study Type
OBSERVATIONAL
Enrollment
250
Fundacion Investigacion Sanitaria INCLIVA
Valencia, Spain
Hospital Universitario y Politecnico la Fe
Valencia, Spain
Microbiota composition
Dominant microbial species maternal and infant samples (using qPCR and sequencing -approaches analysis
Time frame: from birth to 24 month
Maternal diet
Maternal diet (FFQ) during gestation and 12 month post-partum
Time frame: from birth to12 month
Maternal BMI
To check Body Mass Index (kg/cm2)
Time frame: pre-gestational
Maternal weight
To check Weight gain over pregnancy (kg) and weight during lactation
Time frame: pre-gestational and from birth to 12 months post-partum
To identify maternal factors affecting microbiota: antibiotics
antibiotics treatment during gestation (number of treatments)
Time frame: pre-gestational
To identify the impact of mode of delivery
Mode of delivery type: Vaginal/C-section (elective or non-elective)
Time frame: Birth
Infant weight
Infant weight (kg)
Time frame: from birth to 24 month
Infant height
Infant height (cm)
Time frame: from birth to 24 month
Infant Diet
Exclusive breastfeeding time (months), breastfeeding duration and time of introduction of complementary food
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Time frame: from bith to 24 month
Fecal short-chain fatty acids
Determine the relationship between fecal microbiota composition and fecal short chain fatty acids
Time frame: from birth to 24 month