低温保护剂
玻璃化
低温保存
保持生育能力
生物
配子
男科
胚胎冷冻保存
精子
卵母细胞冷冻保存
生育率
胚胎
植物
医学
人口
细胞生物学
环境卫生
作者
A.S. Vickram,C. Prasanth,Bharath Srinivasaiah,Deepika Rani,C M Mathan Muthu,B. Bhavani Sowndharya
出处
期刊:Cryo letters
[Cryo-Letters]
日期:2025-06-13
卷期号:46 (4): 213-230
标识
DOI:10.54680/fr25410110112
摘要
BACKGROUND: Cryopreservation has transformed fertility preservation by enabling the long-term storage of gametes and embryos. Although traditional procedures such as slow freezing and vitrification are routinely used, recent innovations and new cryoprotectants have had a significant impact on reproductive medicine outcomes. OBJECTIVE: This review examines advances in cryopreservation techniques, the influence of novel cryoprotectants, and the implications for gamete and embryo survival, viability, and clinical outcomes in fertility preservation. MATERIALS AND METHODS: We conducted a comprehensive review of the existing literature on classic and novel cryopreservation methods for sperm, oocytes, and embryos. Advances in vitrification methods, the invention of novel cryoprotectants, and comparative effectiveness and toxicity assessments were all evaluated. Clinical data on survival rates, implantation rates, and fertility preservation were thoroughly reviewed. RESULTS : Improvements in vitrification procedures have drastically enhanced oocyte survival and developmental potential, resolving some of the previously linked cryopreservation issues. Innovative ways to cryopreserve have enhanced sperm survival and motility after thawing. The focus of embryo cryopreservation has switched from traditional slow freezing to precise vitrification, resulting in higher survival rates and better clinical results. Novel cryoprotectants have shown promise in terms of reduced toxicity and improved cryosurvival while retaining biological integrity. Overall, these advances have had a positive impact on fertility preservation techniques and clinical success rates. CONCLUSION : Emerging cryopreservation methods, such as breakthroughs in vitrification protocols and the identification of new cryoprotectants, have significantly improved gamete and embryo storage efficiency. Such developments not only increase the longevity and quality of cryopreserved materials, but they also improve therapeutic outcomes in fertility preservation. Additional study and optimization are required to standardize these procedures for optimal use in a variety of patient populations.
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