DOAJ Open Access 2026

Cold Shock Protein B as an Alternative to DMSO for Oocyte Vitrification

Xinhai Wang Jing Guo Kaiyan Zhang Yi Fang Hongyu Liu +4 lainnya

Abstrak

Dimethyl sulfoxide (DMSO) is widely utilized in the vitrification of oocytes, but DMSO exhibits concentration-dependent toxicity, which can compromise oocyte developmental potential by disrupting key cellular processes. This study reports the first successful use of cold shock protein B (CspB protein) as a substitute for DMSO in vitrification solutions for oocyte vitrification. Combining dynamics simulations and experimental validation, we demonstrated CspB’s ability to inhibit ice crystallization and recrystallization by stabilizing its position at the ice–water interface and reducing ice formation rates. Recombinant CspB was successfully expressed and shown to bind to the oolemma. In vitrification solutions, CspB (1–2 mg/mL) effectively reduced ice crystal size and enabled a significant reduction or complete replacement of DMSO. This strategy markedly improved the post-thaw survival rates of both mouse and bovine metaphase II (MII) oocytes. Furthermore, oocytes vitrified with an optimized formulation (15% ethylene glycol + 2 mg/mL CspB) exhibited developmental competence (cleavage and blastocyst rates), oxidative stress markers (ROS, GSH), mitochondrial function (membrane potential and content), and apoptosis levels (Caspase-3/9) comparable to those treated with a standard DMSO-containing system. Transcriptomic analysis revealed that CspB’s cryoprotection involves the modulation of the mTOR signaling pathway. This role was functionally confirmed, as activation of mTOR abolished CspB’s beneficial effects, reinstating oxidative damage, mitochondrial dysfunction, and apoptosis. Thus, the CspB protein replaces DMSO with direct ice crystal formation suppression and mTOR-mediated oxidative stress regulation. This study offers a protein-based alternative to conventional permeable cryoprotectants. This approach holds promise for improving reproductive biotechnologies across species.

Topik & Kata Kunci

Penulis (9)

X

Xinhai Wang

J

Jing Guo

K

Kaiyan Zhang

Y

Yi Fang

H

Hongyu Liu

H

He Ding

Y

Yang Lyu

X

Xin Ma

W

Wenfa Lyu

Format Sitasi

Wang, X., Guo, J., Zhang, K., Fang, Y., Liu, H., Ding, H. et al. (2026). Cold Shock Protein B as an Alternative to DMSO for Oocyte Vitrification. https://doi.org/10.3390/antiox15010107

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Informasi Jurnal
Tahun Terbit
2026
Sumber Database
DOAJ
DOI
10.3390/antiox15010107
Akses
Open Access ✓