Anex vivoovulation system enables the discovery of novel ovulatory pathways and nonhormonal contraceptive candidates

Author:

Zhang Jiyang1234,Goods Brittany A5,Pattarawat Pawat12,Wang Yingzheng12,Haining Tessa6,Zhang Qiang78,Shalek Alex K691011,Duncan Francesca E34,Woodruff Teresa K12,Xiao Shuo12

Affiliation:

1. Department of Pharmacology and Toxicology , Ernest Mario School of Pharmacy, Environmental and Occupational Health Sciences Institute (EOHSI), , Piscataway, NJ , USA

2. Rutgers University , Ernest Mario School of Pharmacy, Environmental and Occupational Health Sciences Institute (EOHSI), , Piscataway, NJ , USA

3. Department of Obstetrics and Gynecology , Feinberg School of Medicine, , Chicago, IL , USA

4. Northwestern University , Feinberg School of Medicine, , Chicago, IL , USA

5. Thayer School of Engineering, Dartmouth College , Hanover, NH , USA

6. The Ragon Institute of MGH, MIT and Harvard , Cambridge, MA , USA

7. Gangarosa Department of Environmental Health , Rollins School of Public Health, , Atlanta, GA , USA

8. Emory University , Rollins School of Public Health, , Atlanta, GA , USA

9. The Institute for Medical Science and Engineering , Department of Chemistry, , Cambridge, MA , USA

10. Koch Institute for Integrative Cancer Research, MIT , Department of Chemistry, , Cambridge, MA , USA

11. Broad Institute of MIT and Harvard , Cambridge, MA , USA

12. Department of Obstetrics and Gynecology, Michigan State University , East Lansing, MI , USA

Abstract

AbstractOvulation is an integral part of women’s menstrual cycle and fertility. Understanding the mechanisms of ovulation has broad implications for the treatment of anovulatory diseases and the development of novel contraceptives. Now, few studies have developed effective models that both faithfully recapitulate the hallmarks of ovulation and possess scalability. We established a three-dimensional encapsulated in vitro follicle growth (eIVFG) system that recapitulates folliculogenesis and produces follicles that undergo ovulation in a controlled manner. Here, we determined whether ex vivo ovulation preserves molecular signatures of ovulation and demonstrated its use in discovering novel ovulatory pathways and nonhormonal contraceptive candidates through a high-throughput ovulation screening. Mature murine follicles from eIVFG were induced to ovulate ex vivo using human chorionic gonadotropin and collected at 0, 1, 4, and 8 hours post-induction. Phenotypic analyses confirmed key ovulatory events, including cumulus expansion, oocyte maturation, follicle rupture, and luteinization. Single-follicle RNA-sequencing analysis revealed the preservation of ovulatory genes and dynamic transcriptomic profiles and signaling. Soft clustering identified distinct gene expression patterns and new pathways that may critically regulate ovulation. We further used this ex vivo ovulation system to screen 21 compounds targeting established and newly identified ovulatory pathways. We discovered that proprotein convertases activate gelatinases to sustain follicle rupture and do not regulate luteinization and progesterone secretion. Together, our ex vivo ovulation system preserves molecular signatures of ovulation, presenting a new powerful tool for studying ovulation and anovulatory diseases as well as for establishing a high-throughput ovulation screening to identify novel nonhormonal contraceptives for women.

Funder

Bill and Melinda Gates Foundation

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,General Medicine,Reproductive Medicine

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