Enhanced cell survival in prepubertal testicular tissue cryopreserved with membrane lipids and antioxidants rich cryopreservation medium.

IF 3.2 3区 生物学 Q3 CELL BIOLOGY
Reyon Dcunha, Anjana Aravind, Smitha Bhaskar, Sadhana Mutalik, Srinivas Mutalik, Sneha Guruprasad Kalthur, Anujith Kumar, Padmaraj Hegde, Satish Kumar Adiga, Yulian Zhao, Nagarajan Kannan, Thottethodi Subrahmanya Keshava Prasad, Guruprasad Kalthur
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Abstract

The present study explores the advantages of enriching the freezing medium with membrane lipids and antioxidants in improving the outcome of prepubertal testicular tissue cryopreservation. For the study, testicular tissue from Swiss albino mice of prepubertal age group (2 weeks) was cryopreserved by slow freezing method either in control freezing medium (CFM; containing DMSO and FBS in DMEM/F12) or test freezing medium (TFM; containing soy lecithin, phosphatidylserine, phosphatidylethanolamine, cholesterol, vitamin C, sodium selenite, DMSO and FBS in DMEM/F12 medium) and stored in liquid nitrogen for at least one week. The tissues were thawed and enzymatically digested to assess viability, DNA damage, and oxidative stress in the testicular cells. The results indicate that TFM significantly mitigated freeze-thaw-induced cell death, DNA damage, and lipid peroxidation compared to tissue cryopreserved in CFM. Further, a decrease in Cyt C, Caspase-3, and an increase in Gpx4 mRNA transcripts were observed in tissues frozen with TFM. Spermatogonial germ cells (SGCs) collected from tissues frozen with TFM exhibited higher cell survival and superior DNA integrity compared to those frozen in CFM. Proteomic analysis revealed that SGCs experienced a lower degree of freeze-thaw-induced damage when cryopreserved in TFM, as evident from an increase in the level of proteins involved in mitigating the heat stress response, transcriptional and translational machinery. These results emphasize the beneficial role of membrane lipids and antioxidants in enhancing the cryosurvival of prepubertal testicular tissue offering a significant stride towards improving the clinical outcome of prepubertal testicular tissue cryopreservation.

用富含膜脂和抗氧化剂的冷冻保存介质冷冻保存青春期前睾丸组织,可提高细胞存活率。
本研究探讨了富含膜脂和抗氧化剂的冷冻培养基在改善青春期前睾丸组织冷冻保存效果方面的优势。研究采用缓慢冷冻法,在对照冷冻培养基(CFM;含二甲基亚砜和 FBS 的 DMEM/F12 培养基)或试验冷冻培养基(TFM;含大豆卵磷脂、磷脂酰丝氨酸、磷脂酰乙醇胺、胆固醇、维生素 C、亚硒酸钠、二甲基亚砜和 FBS 的 DMEM/F12 培养基)中冷冻保存青春期前年龄组(2 周)瑞士白化小鼠的睾丸组织,并在液氮中保存至少一周。解冻组织并进行酶解,以评估睾丸细胞的活力、DNA 损伤和氧化应激。结果表明,与在 CFM 中冷冻保存的组织相比,TFM 能明显减轻冻融诱导的细胞死亡、DNA 损伤和脂质过氧化反应。此外,在用 TFM 冷冻的组织中还观察到 Cyt C、Caspase-3 的减少和 Gpx4 mRNA 转录物的增加。与在 CFM 中冷冻的组织相比,从 TFM 冷冻的组织中收集的精原生殖细胞(SGCs)表现出更高的细胞存活率和更好的 DNA 完整性。蛋白质组分析表明,在 TFM 中冷冻保存的 SGCs 遭受的冻融诱导损伤程度较低,这一点从参与减轻热应激反应、转录和翻译机制的蛋白质水平的增加中可见一斑。这些结果强调了膜脂和抗氧化剂在提高青春期前睾丸组织冷冻存活率方面的有益作用,为改善青春期前睾丸组织冷冻保存的临床效果迈出了重要一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cell and Tissue Research
Cell and Tissue Research 生物-细胞生物学
CiteScore
7.00
自引率
2.80%
发文量
142
审稿时长
1 months
期刊介绍: The journal publishes regular articles and reviews in the areas of molecular, cell, and supracellular biology. In particular, the journal intends to provide a forum for publishing data that analyze the supracellular, integrative actions of gene products and their impact on the formation of tissue structure and function. Submission of papers with an emphasis on structure-function relationships as revealed by recombinant molecular technologies is especially encouraged. Areas of research with a long-standing tradition of publishing in Cell & Tissue Research include: - neurobiology - neuroendocrinology - endocrinology - reproductive biology - skeletal and immune systems - development - stem cells - muscle biology.
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