C-kit signaling promotes human pre-implantation 3PN embryonic development and blastocyst formation
Autor: | Zhi-Hui Huang, Li-Ping Wu, Xing-Wu Wu, Cai-Lin Xin, Zhi-Qin Zhang, Yang Zou, Qiongfang Wu, Xiao-Ju Wan, Jun Tan |
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Rok vydání: | 2019 |
Předmět: |
Adult
0301 basic medicine MAPK/ERK pathway Cell signaling lcsh:QH471-489 Biology lcsh:Gynecology and obstetrics Embryo Culture Techniques Andrology 03 medical and health sciences 0302 clinical medicine Endocrinology Pregnancy C-kit medicine Animals Humans lcsh:Reproduction Embryo Implantation Blastocyst lcsh:RG1-991 Mice Inbred ICR 030219 obstetrics & reproductive medicine Pronucleus Research ETV5 Embryogenesis Gene Expression Regulation Developmental Obstetrics and Gynecology Embryo culture Embryo In vitro culture Embryo Transfer Blastula DNA-Binding Proteins Proto-Oncogene Proteins c-kit 030104 developmental biology medicine.anatomical_structure Reproductive Medicine IVF Embryonic development embryonic structures Female Signal Transduction Transcription Factors Developmental Biology |
Zdroj: | Reproductive Biology and Endocrinology, Vol 17, Iss 1, Pp 1-10 (2019) Reproductive Biology and Endocrinology : RB&E |
ISSN: | 1477-7827 |
DOI: | 10.1186/s12958-019-0521-8 |
Popis: | Background Although in vitro culture system has been optimized in the past few decades, the problem of few or no high quality embryos has been still not completely solved. Accordingly, fully understanding the regulatory mechanism of pre-implantation embryonic development would be beneficial to further optimize the in vitro embryo culture system. Recent studies have found the expression of c-kit in mouse embryo and its promotion effects on mouse embryonic development. However, it is unclear the expression, the role and the related molecular regulatory mechanism of c-kit in human pre-implantation embryo development. Therefore, the present study is to determine whether c-kit is expressed in human pre-implantation embryos, and to investigate the possible regulatory mechanism of c-kit signaling in the process of embryonic development. Methods The present study includes human immature oocytes and three pronucleus (3PN) embryos collected from 768 women (28–32 ages) undergoing IVF, and normal 2PN embryos collected from ICR mice. Samples were distributed randomly into three different experimental groups: SCF group: G-1™ (medium for culture of embryos from the pro-nucleate stage to day 3) or G-2™ (medium for culture of embryos from day3 to blastocyst stage) + HSA (Human serum album) solution + rhSCF; SCF + imanitib (c-kit inhibitor) group: G-1™ or G-2™ + HSA solution + rhSCF + imanitib; SCF + U0126 (MEK/ERK inhibitor) group: G-1™ or G-2™ + HSA solution + rhSCF + U0126; Control group: G-1™ or G-2™ + HSA solution + PBS; The rate of good quality embryos at day 3, blastulation at day 6 and good quality blastulation at day 6 were analysis. RT-PCR, western blot and immunofluorescence staining were applied to detect the target genes and proteins in samples collected from human or mice, respectively. Results c-kit was expressed ubiquitously in all human immature oocytes, 3PN embryos and 3PN blastocysts. In the experiment of human 3PN embryos, compared with other groups, SCF group showed obviously higher rate of good quality at day 3, better rate of blastocyst formation at day 6 and higher rate of good quality blastocyst formation at day 6. Furthermore, we observed a higher ETV5 expression in SCF group than that in other groups. Similar results were also found in animal experiment. Interestingly, we also found a higher phosphorylation level of MEK/ERK signal molecule in mice embryos from SCF group than those from other groups. Moreover, inhibition of MEK/ERK signaling would remarkably impeded the mice embryonic development, which might be due to the reduced ETV5 expression. Conclusions The present study firstly revealed that c-kit signaling might promote the human pre-implantation embryonic development and blastocyst formation by up-regulating the expression of ETV5 via MEK/ERK pathway. Our findings provide a new idea for optimizing the in vitro embryo culture condition during ART program, which is beneficial to obtain high quality embryos for infertile patients. |
Databáze: | OpenAIRE |
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