Kisspeptin Is a Novel Regulator of Human Fetal Adrenocortical Development and Function: A Finding With Important Implications for the Human Fetoplacental Unit
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Author(s)
Type
Journal Article
Abstract
Context
The human fetal adrenal (HFA) is an integral component of the fetoplacental unit and important for the maintenance of pregnancy. Low kisspeptin levels during pregnancy are associated with miscarriage, and kisspeptin and its receptor are expressed in the HFA. However, the role of kisspeptin in fetal adrenal function remains unknown.
Objective
To determine the role of kisspeptin in the developing HFA.
Design
Experiments using H295R and primary HFA cells as in vitro models of the fetal adrenal. Association of plasma kisspeptin levels with HFA size in a longitudinal clinical study.
Setting
Academic research center and tertiary fetal medicine unit.
Participants
Thirty-three healthy pregnant women were recruited at their 12-week routine antenatal ultrasound scan.
Main Outcome Measures
The spatiotemporal expression of Kiss1R in the HFA. The production of dehydroepiandrosterone sulfate (DHEAS) from HFA cells after kisspeptin treatment, alone or in combination with adrenocorticotropic hormone or corticotropin-releasing hormone. Fetal adrenal volume (FAV) and kisspeptin levels at four antenatal visits (∼20, 28, 34, and 38 weeks’ gestation).
Results
Expression of Kiss1R was present in the HFA from 8 weeks after conception to term and was shown in the inner fetal zone. Kisspeptin significantly increased DHEAS production in H295R and second-trimester HFA cells. Serial measurements of kisspeptin confirmed a correlation with FAV growth in the second trimester, independent of sex or estimated fetal weight.
Conclusions
Kisspeptin plays a key role in the regulation of the HFA and thus the fetoplacental unit, particularly in the second trimester of pregnancy.
The human fetal adrenal (HFA) is an integral component of the fetoplacental unit and important for the maintenance of pregnancy. Low kisspeptin levels during pregnancy are associated with miscarriage, and kisspeptin and its receptor are expressed in the HFA. However, the role of kisspeptin in fetal adrenal function remains unknown.
Objective
To determine the role of kisspeptin in the developing HFA.
Design
Experiments using H295R and primary HFA cells as in vitro models of the fetal adrenal. Association of plasma kisspeptin levels with HFA size in a longitudinal clinical study.
Setting
Academic research center and tertiary fetal medicine unit.
Participants
Thirty-three healthy pregnant women were recruited at their 12-week routine antenatal ultrasound scan.
Main Outcome Measures
The spatiotemporal expression of Kiss1R in the HFA. The production of dehydroepiandrosterone sulfate (DHEAS) from HFA cells after kisspeptin treatment, alone or in combination with adrenocorticotropic hormone or corticotropin-releasing hormone. Fetal adrenal volume (FAV) and kisspeptin levels at four antenatal visits (∼20, 28, 34, and 38 weeks’ gestation).
Results
Expression of Kiss1R was present in the HFA from 8 weeks after conception to term and was shown in the inner fetal zone. Kisspeptin significantly increased DHEAS production in H295R and second-trimester HFA cells. Serial measurements of kisspeptin confirmed a correlation with FAV growth in the second trimester, independent of sex or estimated fetal weight.
Conclusions
Kisspeptin plays a key role in the regulation of the HFA and thus the fetoplacental unit, particularly in the second trimester of pregnancy.
Date Issued
2017-06-21
Date Acceptance
2017-06-15
Citation
Journal of Clinical Endocrinology and Metabolism, 2017, 102 (9), pp.3349-3359
ISSN
0021-972X
Publisher
Oxford University Press (OUP)
Start Page
3349
End Page
3359
Journal / Book Title
Journal of Clinical Endocrinology and Metabolism
Volume
102
Issue
9
Copyright Statement
This article has been published under the terms of the Creative Commons Attribution License (CC BY; https://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. Copyright for this article is retained by the author(s).
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Subjects
Science & Technology
Life Sciences & Biomedicine
Endocrinology & Metabolism
PROTEIN-COUPLED RECEPTOR
ADRENAL-GLAND VOLUME
DEHYDROEPIANDROSTERONE-SULFATE
3-DIMENSIONAL ULTRASOUND
PRETERM BIRTH
HORMONE
CELLS
PREGNANCY
WOMEN
GPR54
Publication Status
Published