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Published on: August 2, 2017
Leptin and its Receptors in Human Placenta of Small, Adequate, and Large for Gestational Age Newborns
Maria-Luisa Lazo-de-la-Vega-Monroy1, Martha I González-Domínguez1, Silvio Zaina1
1Health Sciences Division, Medical Sciences Department, University of Guanajuato, Campus Leon, Mexico, 20 de Enero 929 Col, Obregon, Leon Guanajuato, Mexico.
Insights
Placental leptin and its receptors are expressed differently in newborns of small, adequate, and large for gestational age. This suggests a role for placental leptin in regulating fetal growth and birth weight.
Area of Science:
- Reproductive Biology
- Endocrinology
- Perinatal Medicine
Background:
- Fetal growth regulation is critical for preventing chronic metabolic diseases.
- Leptin is implicated in placental and fetal growth, but its mechanisms are unclear.
Purpose of the Study:
- To analyze leptin concentrations in placenta, cord blood, and maternal blood of SGA, AGA, and LGA newborns.
- To assess placental leptin receptor (LEPRa and LEPRb) protein expression in relation to birth weight categories.
Main Methods:
- Cross-sectional comparative study of 60 healthy mother-newborn pairs (20 SGA, 20 AGA, 20 LGA).
- Leptin levels measured by ELISA in placental, maternal, and cord blood.
- Placental LEPRa and LEPRb protein expression analyzed by Western Blot.
Main Results:
- Cord leptin was higher in LGA and lower in SGA newborns.
- Placental leptin was higher in SGA newborns and inversely correlated with placental weight.
- Placental LEPRa and LEPRb expression were lower in SGA newborns; LEPRa correlated positively with placental and birth weight.
Conclusions:
- Differential expression of placental leptin and its receptors (LEPRa, LEPRb) is observed in SGA, AGA, and LGA newborns.
- Placental leptin and LEPR protein expression may significantly influence placental growth and, consequently, birth weight.
Abstract:
Alterations in birth weight impact postnatal outcome and adult metabolic health. Therefore, fetal growth regulation is crucial for preventing chronic metabolic diseases. Leptin has been suggested to play an important role in placental and fetal growth, albeit its specific mechanisms of action have not been elucidated. The aim of this study was to analyze leptin concentrations in placenta, cord blood, and maternal blood of SGA, AGA, and LGA (small, adequate and large for gestational age, respectively) newborns, as well as placental leptin receptor (LEPRa and LEPRb) protein expression. We performed a cross-sectional comparative study in 3 groups of healthy mothers and their term newborns at delivery (SGA, AGA, and LGA, n=20 per group). Placental, maternal blood, and cord blood leptin content were measured by ELISA. Placental LEPRa and LEPRb protein expression were determined by Western Blot. Maternal leptin concentrations correlated positively with maternal weight before and at the end of gestation, without differences between groups. Cord leptin is higher in LGA and lower in SGA, whereas placental leptin is higher in SGA. Placental leptin was inversely correlated with placental weight, independently from maternal weight and gestational age. Both LEPRa and LEPRb expression are lower in SGA, while LEPRa positively correlated with placental weight and birthweight. The current findings indicate that placental leptin and its receptors are differentially expressed in SGA, AGA, and LGA newborns. We suggest that placental leptin and LEPR protein expression may influence placental growth and thus, birth weight.
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