Evidence map›Paper›PMID 42709836›Full record

ArticleReproduction & fertility2026

Mouse oocyte phenotypes differ in blastocyst response to resveratrol and vitamin B12.

Hyung Min Kim, Kyungmi Juhn, Eunhye Jung, Hyejeong Park, Juhee Jin, Jinho Lim, Hyejun Lee, Jeong Yoon

Abstract read
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Article in Reproduction & fertility, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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2 · The registry

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4 · The record

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5 · Who and what money

Authors and funding

8 authors.

Hyung Min KimKai Health , Seoul, Republic of Korea.
Kyungmi JuhnMaria Fertility Research Institute , Hanam, Republic of Korea.
Eunhye JungMaria Fertility Research Institute , Hanam, Republic of Korea.
Hyejeong ParkMaria Fertility Research Institute , Hanam, Republic of Korea.
Juhee JinMaria Fertility Research Institute , Hanam, Republic of Korea.
Jinho LimMaria Medical Foundation , Seoul, Republic of Korea.
Hyejun LeeKai Health , Seoul, Republic of Korea.
Jeong YoonMaria Fertility Research Institute , Hanam, Republic of Korea.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

abstractThis experimental laboratory study examined whether associations between culture condition and blastocyst formation differed across radiomics-defined oocyte clusters and age groups. Mouse oocytes (n = 2,061) were assigned to control or five supplementation groups: resveratrol (0.1, 0.5, 1.0 μM) and vitamin B12 (50, 200 pM). The primary outcome was blastocyst formation across morphological clusters and age subgroups. Three clusters with distinct baseline blastocyst formation rates were identified: Cluster 1, 28.2% (44/156); Cluster 2, 42.4% (156/368); and Cluster 3, 34.9% (105/301). Cluster 2 comprised the largest and most spherical oocytes with heterogeneous cytoplasmic texture. Cluster 3 represented the smallest, brightest phenotype with the most uniform intensity profile, whereas Cluster 1 showed intermediate size, irregular contours, and high internal contrast. Associations between culture condition and blastocyst formation differed across radiomics-defined clusters. In Cluster 1, blastocyst formation increased from 28.2 to 45.1% with resveratrol 1.0 μM and to 48.7% with vitamin B12 200 pM. In Cluster 3, blastocyst formation increased from 34.9 to 60.4% with vitamin B12 50 pM and to 50.0% with resveratrol 0.1 μM. Cluster 2 showed a non-significant increase from 42.4 to 57.9% with resveratrol 0.5 μM. Older oocytes exhibited lower developmental competence than younger oocytes. Selecting the best performing medium for each cluster-age combination increased overall blastocyst formation from 36.97% (305/825) to 56.00% (126/225). These findings indicate associations among radiomics-defined clusters, culture conditions, and blastocyst formation. Prospective cluster-stratified studies are required to determine whether cluster-guided culture-condition selection improves developmental outcomes. LAY SUMMARY: Not all eggs have the same ability to develop into embryos, and they may respond differently to the conditions in which they are cultured. In this study, we analysed images of more than 2,000 mouse eggs to determine whether features visible in the images could identify groups of eggs with different developmental potential. We first used eggs grown under standard culture conditions to define three groups based on their image characteristics. We then examined how eggs in these groups developed under standard conditions or with different amounts of resveratrol, an antioxidant, or vitamin B12 added to the special fluid used to support embryo development. The three groups differed in their rates of development to the blastocyst stage, an early stage of embryo development, and the relationship between culture condition and blastocyst development also varied between groups and between younger and older mice. These findings suggest that egg image characteristics may help us understand why eggs respond differently to their culture environment. However, further prospective experiments are needed before these findings can be used to guide culture conditions.

Indexed as

BlastocystOocytesResveratrolVitamin B 12AnimalsEmbryo Culture TechniquesEmbryonic DevelopmentFemaleMicePhenotypeResveratrolVitamin B 12blastocyst formationoocyte morphologyradiomicsresveratrolvitamin B12

Identifiers

PMID42709836
PMCPMC13615864

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.