Comparison of Steroidogenic and Ovulation-Inducing Effects of Orthosteric and Allosteric Agonists of Luteinizing Hormone/Chorionic Gonadotropin Receptor in Immature Female Rats.
Kira V DerkachIvan A LebedevIrina Yu MorinaAndrey A BakhtyukovAlena S PechalnovaViktor N SorokoumovVeronica S KuznetsovaIrina V RomanovaAlexander O ShpakovPublished in: International journal of molecular sciences (2023)
Gonadotropins, including human chorionic gonadotropin (hCG), are used to induce ovulation, but they have a number of side effects, including ovarian hyperstimulation syndrome (OHSS). A possible alternative is allosteric luteinizing hormone (LH)/hCG receptor agonists, including the compound TP4/2 we developed, which remains active when administered orally. The aim was to study the effectiveness of TP4/2 (orally, 40 mg/kg) as an ovulation inducer in FSH-stimulated immature female rats, compared with hCG (s.c., 15 IU/rat). TP4/2 stimulated progesterone production and corpus luteum formation; time-dependently increased the ovarian expression of steroidogenic genes ( Star , Cyp11a1 , Cyp17a1 ) and genes involved in ovulation regulation ( Adamts-1 , Cox-2 , Egr-1 , Mt-1 ); and increased the content of metalloproteinase ADAMTS-1 in the ovaries. These effects were similar to those of hCG, although in some cases they were less pronounced. TP4/2, in contrast to hCG, maintained normal LH levels and increased the ovarian expression of the LH/hCG receptor gene, indicating preservation of ovarian sensitivity to LH, and did not cause a sustained increase in expression of vascular endothelial growth factor-A involved in OHSS. Thus, TP4/2 is an effective ovulation inducer that, unlike hCG, has a lower risk of OHSS and ovarian LH resistance due to its moderate stimulating effect on steroidogenesis.
Keyphrases
- polycystic ovary syndrome
- poor prognosis
- vascular endothelial growth factor
- binding protein
- endothelial cells
- genome wide
- systematic review
- randomized controlled trial
- insulin resistance
- dna methylation
- oxidative stress
- long non coding rna
- metabolic syndrome
- copy number
- gene expression
- adipose tissue
- skeletal muscle
- clinical evaluation