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Updated: Apr 21, 2026

Evaluation of the Spindle Assembly Checkpoint Integrity in Mouse Oocytes
Published on: September 13, 2022
Exposing mouse oocytes to necrostatin 1 during in vitro maturation improves maturation, survival after vitrification,
Jun Woo Jo1, Jung Ryeol Lee2, Byung Chul Jee3
1Department of Obstetrics and Gynecology, Seoul National University Bundang Hospital, Seongnam, Korea Institute of Reproductive Medicine and Population, Medical Research Center, Seoul National University, Seoul, Korea.
Abstract:
Necrostatin 1 (Nec1) is widely used in disease models to examine the contribution of receptor-interacting protein kinase 1 in cell death. The biological actions of Nec1 are blocking necrotic cell death. The purpose of this study was to investigate whether adding Nec1 into in vitro maturation (IVM) media, followed by vitrification procedures, could enhance the survival and developmental competency of oocytes. Germinal vesicle oocytes were matured in IVM medium containing 2 different doses of Nec1 (0.5 and 1 μmol/L). After IVM, the oocytes were vitrified using a 2-step exposure to equilibrium and vitrification solutions. After warming, the rates of survival, fertilization, embryonic development up to blastocyst in vitro, morphology of spindle and chromosome, membrane integrity, mitochondria integrity, and several gene expressions were evaluated. The survival and developmental competency of oocytes were higher in the 1 μmol/L Nec1-treated group than control. The proportion with intact spindles/chromosomes and stable membranes was similar in all the groups. The mitochondrial integrity of all Nec1-treated groups showed a higher score with strong staining. The 1 μmol/L Nec1 showed significantly increased expressions of Mad2, Gdf9, and Bcl2. The Cirp level had a tendency to be downregulated in the 0.5 µmol/L Nec1 but upregulated in the 1 μmol/L Nec1, compared with the control. The Mtgenome expressions were significantly decreased in both Nec1 groups. The supplementation of 1 μmol/L Nec1 into the IVM medium could be beneficial for the survival and development of immature oocytes after vitrification.
Insights
Necrostatin 1 (Nec1) supplementation in vitro maturation (IVM) media enhances immature oocyte survival and developmental potential after vitrification. A 1 μmol/L dose improved oocyte quality and gene expression, indicating benefits for fertility treatments.
Area of Science:
- Reproductive Biology
- Cell Death Research
- Cryobiology
Background:
- Necrostatin 1 (Nec1) inhibits receptor-interacting protein kinase 1, a key mediator of necrotic cell death.
- Oocyte cryopreservation is crucial for fertility preservation, but survival and developmental competence post-vitrification remain challenges.
Purpose of the Study:
- To investigate the effect of Necrostatin 1 (Nec1) on immature oocyte survival and developmental competency following in vitro maturation (IVM) and vitrification.
- To determine optimal Nec1 dosage for improving oocyte quality and developmental potential.
Main Methods:
- Germinal vesicle oocytes underwent IVM in media supplemented with 0.5 or 1 μmol/L Nec1.
- Oocytes were vitrified and warmed, followed by assessment of survival, fertilization, and embryonic development.
- Spindle/chromosome and membrane integrity, mitochondrial integrity, and gene expression (Mad2, Gdf9, Bcl2, Cirp, Mtgenome) were evaluated.
Main Results:
- The 1 μmol/L Nec1 group showed significantly higher oocyte survival and developmental competence compared to controls.
- Mitochondrial integrity was improved in Nec1-treated groups.
- 1 μmol/L Nec1 upregulated Mad2, Gdf9, and Bcl2 expression, while decreasing Mtgenome expression.
Conclusions:
- Supplementing IVM media with 1 μmol/L Nec1 is beneficial for enhancing immature oocyte survival and developmental capacity after vitrification.
- Nec1 may improve oocyte quality through enhanced mitochondrial integrity and specific gene expression modulation.
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