Clinical Trials Logo

Clinical Trial Summary

Fertilization failure is a common problem in assisted reproductive Technology (ART). The main reason for fertilization failure of conventional IVF fertilization is sperm penetration failure, and the main reason of ICSI is insufficient oocyte activation. Artificial assisted activation may provide an effective technique to rescue fertilization failure. In this study, standard ICSI procedures were applied to save fertilization failure of unfertilized mature oocytes in IVF cycles. The unfertilized mature oocytes after ICSI were activated by calcium ion, or injected with calcium chloride/activated with mechanical stimulated and then transfer to calcium ion to improve fertilization. In this study, different artificial assisted activation methods were used to save the fertilization failure and assess its effective and subsequent embryo development potential.


Clinical Trial Description

A variety of mechanical, electrical, and chemical methods has been used to trigger the calcium oscillations to activate oocytes. Mechanical and chemical activation are the most commonly used methods for artificial oocyte activation, which can mimic calcium oscillations saving fertilization failure.

Control group, a single spermatozoon was injected into the failed fertilization MII oocyte in conventional IVF cycle. What to do when ICSI fails? The investigators collected the unfertilized MII oocytes and divided them into 3 groups to perform different activation methods, including chemical calcium ionophore activation (experiment group 1), CaCl2 injected combined with calcium ionophore activation (experiment group 2), and mechanical stimulation combined with calcium ionophore activation (experiment group 3). Calcium ionophore A23187 (Sigma) was used for assisted activation. The final solution was 10 μmol/L. The oocytes were exposed to the calcium ionophore A23187 for 10 min at 37°C in 5% CO2. The oocytes were checked for pronucleus formation at 16-20 hours after activation. Fertilized oocytes were cultured in vitro for 3-5 days, the developmental potential of the activated embryos were observed.

This study want to explore the effective of different artificial assisted activation methods, to improve the fertilization outcome of unfertilized oocytes after ICSI or IVF. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT04523103
Study type Interventional
Source Tang-Du Hospital
Contact Wang Ming, Master
Phone 8613259809290
Email wangmingbio@snnu.edu.cn
Status Not yet recruiting
Phase N/A
Start date November 1, 2020
Completion date September 30, 2021

See also
  Status Clinical Trial Phase
Completed NCT01558141 - Follicular Flushing N/A
Not yet recruiting NCT04519918 - Clinical Application of Artificial Oocyte Activation Technique (AOA) in ART N/A
Recruiting NCT03810001 - Mechanical Stimulation Improve the Fertilization in ICSI Cycle N/A
Completed NCT00340587 - Human Sperm Binding to Transgenic Mouse Eggs
Completed NCT00598208 - A Phase 2, Trial to Investigate the Dose-Response Relationship of a Single Injection of Org 36286 (Corifollitropin Alfa) to Initiate Multiple Follicular Growth in a Controlled Ovarian (Study 38826)(P06055)(COMPLETED) Phase 2
Completed NCT02913781 - Polar Body Removal Before ICSI for Oocyte Activation in Previous Fertilization Failure Cases N/A
Recruiting NCT04537481 - Lipidic Differences of Sperm Between Normal and Low Fertilization Patients N/A
Completed NCT01223118 - Evaluation of the Impact of Vitrification on Oocytes N/A