The direct and indirect effects of kisspeptin-54 on granulosa lutein cell function
File(s)Owens et al Human Reproduction 2017.pdf (1.51 MB)
Accepted version
OA Location
Author(s)
Type
Journal Article
Abstract
STUDY QUESTION
What are the in vivo and in vitro actions of kisspeptin-54 on the expression of genes involved in ovarian reproductive function, steroidogenesis and ovarian hyperstimulation syndrome (OHSS) in granulosa lutein (GL) cells when compared with traditional triggers of oocyte maturation?
SUMMARY ANSWER
The use of kisspeptin-54 as an oocyte maturation trigger augmented expression of genes involved in ovarian steroidogenesis in human GL cells including, FSH receptor (FSHR), LH/hCG receptor (LHCGR), steroid acute regulatory protein (STAR), aromatase, estrogen receptors alpha and beta (ESR1, ESR2), 3-beta-hydroxysteroid dehydrogenase type 2 (3BHSD2) and inhibin A (INHBA), when compared to traditional maturation triggers, but did not alter markers of OHSS.
WHAT IS KNOWN ALREADY
hCG is the most widely used trigger of oocyte maturation, but is associated with an increased risk of OHSS. The use of GnRH agonists to trigger oocyte maturation is a safer alternative to hCG. More recently, kisspeptin-54 has emerged as a novel therapeutic option that safely triggers oocyte maturation even in women at high risk of OHSS. Kisspeptin indirectly stimulates gonadotropin secretion by acting on hypothalamic GnRH neurons. Kisspeptin and its receptor are also expressed in the human ovary, but there is limited data on the direct action of kisspeptin on the ovary.
STUDY DESIGN SIZE, DURATION
Forty-eight women undergoing IVF treatment for infertility consented to kisspeptin-54 triggering and/or granulosa cell collection and were included in the study. Twelve women received hCG, 12 received GnRH agonist and 24 received kisspeptin-54 to trigger oocyte maturation. In the kisspeptin-54 group, 12 received one injection of kisseptin-54 (9.6 nmol/kg) and 12 received two injections of kisspeptin-54 at a 10 h interval (9.6 nmol/kg × 2).
PARTICIPANTS/MATERIALS, SETTING, METHODS
Follicular fluid was aspirated and pooled from follicles during the retrieval of oocytes for IVF/ICSI. GL cells were isolated and either RNA extracted immediately or cultured in vitro ± kisspeptin or hCG.
MAIN RESULTS AND THE ROLE OF CHANCE
GL cells from women who had received kisspeptin-54 had a 14-fold and 8-fold higher gene expression of FSHR and a 2-fold (ns) and 2.5-fold (P < 0.05) higher expression of LHCGR than GL cells from women who had received hCG or GnRH agonist, respectively. CYP19A1 expression was 3.6-fold (P < 0.05) and 4.5-fold (P < 0.05) higher, STAR expression was 3.4-fold (P < 0.01) and 1.8-fold (P < 0.05) higher, HSD3B2 expression was 7.5- (P < 0.01) and 2.5-fold higher (P < 0.05), INHBA was 2.5-fold (P < 0.01) and 2.5-fold (P < 0.01) higher in GL cells from women who had received kisspeptin-54 than hCG or GnRHa, respectively. ESR1 (P < 0.05) and ESR2 (P < 0.05) both showed 3-fold higher expression in cells from kisspeptin treated than GnRHa treated women. Markers of vascular permeability and oocyte growth factors were unchanged (VEGFA, SERPINF1, CDH5, amphiregulin, epiregulin). Gene expression of kisspeptin receptor was unchanged. Whereas treating GL cells in vitro with hCG induced steroidogenic gene expression, kisspeptin-54 had no significant direct effects on either OHSS genes or steroidogenic genes.
LIMITATIONS REASONS FOR CAUTION
Most women in the study had PCOS, which may limit applicability to other patient groups. For the analysis of the in vitro effects of kisspeptin-54, it is important to note that GL cells had already been exposed in vivo to an alternate maturation trigger.
WIDER IMPLICATIONS OF THE FINDINGS
The profile of serum gonadotropins seen with kisspeptin administration compared to other triggers more closely resemble that of the natural cycle as compared with hCG. Thus, kisspeptin could potentially permit an ovarian environment augmented for steroidogenesis, in particular progesterone synthesis, which is required for embryo implantation.
STUDY FUNDING/COMPETING INTEREST(S)
Dr Owens is supported by an Imperial College London PhD Scholarship. Dr Abbara is supported by an National Institute of Health Research Academic Clinical Lectureship. The authors do not have any conflict of interest to declare.
What are the in vivo and in vitro actions of kisspeptin-54 on the expression of genes involved in ovarian reproductive function, steroidogenesis and ovarian hyperstimulation syndrome (OHSS) in granulosa lutein (GL) cells when compared with traditional triggers of oocyte maturation?
SUMMARY ANSWER
The use of kisspeptin-54 as an oocyte maturation trigger augmented expression of genes involved in ovarian steroidogenesis in human GL cells including, FSH receptor (FSHR), LH/hCG receptor (LHCGR), steroid acute regulatory protein (STAR), aromatase, estrogen receptors alpha and beta (ESR1, ESR2), 3-beta-hydroxysteroid dehydrogenase type 2 (3BHSD2) and inhibin A (INHBA), when compared to traditional maturation triggers, but did not alter markers of OHSS.
WHAT IS KNOWN ALREADY
hCG is the most widely used trigger of oocyte maturation, but is associated with an increased risk of OHSS. The use of GnRH agonists to trigger oocyte maturation is a safer alternative to hCG. More recently, kisspeptin-54 has emerged as a novel therapeutic option that safely triggers oocyte maturation even in women at high risk of OHSS. Kisspeptin indirectly stimulates gonadotropin secretion by acting on hypothalamic GnRH neurons. Kisspeptin and its receptor are also expressed in the human ovary, but there is limited data on the direct action of kisspeptin on the ovary.
STUDY DESIGN SIZE, DURATION
Forty-eight women undergoing IVF treatment for infertility consented to kisspeptin-54 triggering and/or granulosa cell collection and were included in the study. Twelve women received hCG, 12 received GnRH agonist and 24 received kisspeptin-54 to trigger oocyte maturation. In the kisspeptin-54 group, 12 received one injection of kisseptin-54 (9.6 nmol/kg) and 12 received two injections of kisspeptin-54 at a 10 h interval (9.6 nmol/kg × 2).
PARTICIPANTS/MATERIALS, SETTING, METHODS
Follicular fluid was aspirated and pooled from follicles during the retrieval of oocytes for IVF/ICSI. GL cells were isolated and either RNA extracted immediately or cultured in vitro ± kisspeptin or hCG.
MAIN RESULTS AND THE ROLE OF CHANCE
GL cells from women who had received kisspeptin-54 had a 14-fold and 8-fold higher gene expression of FSHR and a 2-fold (ns) and 2.5-fold (P < 0.05) higher expression of LHCGR than GL cells from women who had received hCG or GnRH agonist, respectively. CYP19A1 expression was 3.6-fold (P < 0.05) and 4.5-fold (P < 0.05) higher, STAR expression was 3.4-fold (P < 0.01) and 1.8-fold (P < 0.05) higher, HSD3B2 expression was 7.5- (P < 0.01) and 2.5-fold higher (P < 0.05), INHBA was 2.5-fold (P < 0.01) and 2.5-fold (P < 0.01) higher in GL cells from women who had received kisspeptin-54 than hCG or GnRHa, respectively. ESR1 (P < 0.05) and ESR2 (P < 0.05) both showed 3-fold higher expression in cells from kisspeptin treated than GnRHa treated women. Markers of vascular permeability and oocyte growth factors were unchanged (VEGFA, SERPINF1, CDH5, amphiregulin, epiregulin). Gene expression of kisspeptin receptor was unchanged. Whereas treating GL cells in vitro with hCG induced steroidogenic gene expression, kisspeptin-54 had no significant direct effects on either OHSS genes or steroidogenic genes.
LIMITATIONS REASONS FOR CAUTION
Most women in the study had PCOS, which may limit applicability to other patient groups. For the analysis of the in vitro effects of kisspeptin-54, it is important to note that GL cells had already been exposed in vivo to an alternate maturation trigger.
WIDER IMPLICATIONS OF THE FINDINGS
The profile of serum gonadotropins seen with kisspeptin administration compared to other triggers more closely resemble that of the natural cycle as compared with hCG. Thus, kisspeptin could potentially permit an ovarian environment augmented for steroidogenesis, in particular progesterone synthesis, which is required for embryo implantation.
STUDY FUNDING/COMPETING INTEREST(S)
Dr Owens is supported by an Imperial College London PhD Scholarship. Dr Abbara is supported by an National Institute of Health Research Academic Clinical Lectureship. The authors do not have any conflict of interest to declare.
Date Issued
2018-02-01
Date Acceptance
2017-11-13
Citation
Human Reproduction, 2018, 33 (2), pp.292-302
ISSN
1460-2350
Publisher
Oxford University Press (OUP)
Start Page
292
End Page
302
Journal / Book Title
Human Reproduction
Volume
33
Issue
2
Copyright Statement
© The Author 2017. Published by Oxford University Press on behalf of the European Society of Human Reproduction and Embryology. All rights reserved. For Permissions, please e-mail: journals.permissions@oup.com. This is a pre-copy-editing, author-produced version of an article accepted for publication in Human Reproduction following peer review. The definitive publisher-authenticated version is available online at: https://academic.oup.com/humrep/article/33/2/292/4675060
Sponsor
National Institute for Health Research
Department of Health
Grant Number
CDF-2009-02-05
03/DHCS/03/G121/48
Subjects
Science & Technology
Life Sciences & Biomedicine
Obstetrics & Gynecology
Reproductive Biology
kisspeptin
maturation trigger
IVF
steroidogenesis
granulosa lutein cells
OVARIAN HYPERSTIMULATION SYNDROME
IN-VITRO FERTILIZATION
HUMAN CHORIONIC-GONADOTROPIN
ENDOTHELIAL GROWTH-FACTOR
RECEPTOR GENE-EXPRESSION
FINAL OOCYTE MATURATION
HORMONE AGONIST TRIGGER
ANTI-MULLERIAN HORMONE
MESSENGER-RNA LEVELS
GNRH AGONIST
IVF
granulosa lutein cells
kisspeptin
maturation trigger
steroidogenesis
Adult
Cells, Cultured
Chorionic Gonadotropin
Female
Gene Expression
Gonadotropin-Releasing Hormone
Humans
In Vitro Oocyte Maturation Techniques
Infertility
Kisspeptins
Luteal Cells
Ovarian Hyperstimulation Syndrome
Ovulation Induction
Pregnancy
Receptors, Gonadotropin
Receptors, Kisspeptin-1
Luteal Cells
Cells, Cultured
Humans
Infertility
Ovarian Hyperstimulation Syndrome
Chorionic Gonadotropin
Receptors, Gonadotropin
Ovulation Induction
Gene Expression
Pregnancy
Adult
Female
Gonadotropin-Releasing Hormone
Kisspeptins
In Vitro Oocyte Maturation Techniques
Receptors, Kisspeptin-1
16 Studies in Human Society
11 Medical and Health Sciences
Obstetrics & Reproductive Medicine
Publication Status
Published online
Date Publish Online
2017-12-01