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山羊和水牛脂肪间充质干细胞冷冻保存培养基的种属特异性优化

Species-specific optimisation of cryopreservation media for goat and buffalo adipose-derived mesenchymal stem cells.

作者信息

Abraham Michelle, Goel Sandeep

机构信息

Biotechnology Research and Innovation Council (BRIC), National Institute of Animal Biotechnology (NIAB), Hyderabad, Telangana, India.

Biotechnology Research and Innovation Council (BRIC), National Institute of Animal Biotechnology (NIAB), Hyderabad, Telangana, India; BRIC-Regional Centre for Biotechnology (RCB), Faridabad, Haryana, India.

出版信息

Cryobiology. 2025 Mar;118:105211. doi: 10.1016/j.cryobiol.2025.105211. Epub 2025 Feb 11.

Abstract

Adipose-derived mesenchymal stem cells (ADSCs) are promising for clinical and veterinary applications due to their ease of isolation, high yield, and multilineage differentiation potential. Effective cryopreservation is vital to ensure their availability for large-scale applications. This study evaluated cryopreservation strategies for goat (gADSCs) and buffalo (bADSCs) ADSCs, using combinations of intracellular (dimethyl sulfoxide, DMSO) and exocellular cryoprotectants, including fetal bovine serum (FBS), polyethylene glycol (PEG), trehalose, bovine serum albumin (BSA), and dextran. Post-thaw parameters such as viability, recovery, metabolic activity, clonogenicity, oxidative stress, apoptosis, and senescence were assessed. Results revealed species-specific differences in cryopreservation requirements. gADSCs were optimally preserved in a medium with 5 % DMSO, 3 % FBS, 2 % PEG, 3 % trehalose, and 2 % BSA, while bADSCs performed best in an FBS-free medium containing 5 % DMSO, 2 % PEG, 3 % trehalose, and 2 % BSA. DMSO-FBS formulations supported high recovery and metabolic activity but were associated with increased oxidative stress and apoptosis. Dextran-based cryomedia effectively preserved gADSCs but failed to maintain bADSC functionality. Biochemical composition analysis indicated significantly higher lipid content in bADSCs, likely influencing cryopreservation efficacy. These findings underscore the need for tailored cryopreservation strategies to address species-specific differences. Incorporating exocellular cryoprotectants reduced FBS dependency, minimised oxidative damage, and maintained functional attributes. This study highlights the potential for optimised, cost-effective biobanking solutions that accommodate species-specific requirements, advancing the use of ADSCs in veterinary and translational research.

摘要

脂肪来源的间充质干细胞(ADSCs)因其易于分离、产量高和多向分化潜能,在临床和兽医应用中具有广阔前景。有效的冷冻保存对于确保其大规模应用的可用性至关重要。本研究评估了山羊(gADSCs)和水牛(bADSCs)ADSCs的冷冻保存策略,使用了细胞内(二甲基亚砜,DMSO)和细胞外冷冻保护剂的组合,包括胎牛血清(FBS)、聚乙二醇(PEG)、海藻糖、牛血清白蛋白(BSA)和右旋糖酐。评估了复苏后的参数,如活力、回收率、代谢活性、克隆形成能力、氧化应激、凋亡和衰老。结果显示在冷冻保存要求方面存在物种特异性差异。gADSCs在含有5% DMSO、3% FBS、2% PEG、3%海藻糖和2% BSA的培养基中保存效果最佳,而bADSCs在不含FBS但含有5% DMSO、2% PEG、3%海藻糖和2% BSA的培养基中表现最佳。DMSO - FBS配方支持高回收率和代谢活性,但与氧化应激和凋亡增加有关。基于右旋糖酐的冷冻培养基有效地保存了gADSCs,但未能维持bADSCs的功能。生化成分分析表明bADSCs中的脂质含量显著更高,这可能影响冷冻保存效果。这些发现强调了需要定制冷冻保存策略以解决物种特异性差异。加入细胞外冷冻保护剂降低了对FBS的依赖性,将氧化损伤降至最低,并维持了功能特性。本研究突出了优化的、具有成本效益的生物样本库解决方案的潜力,该方案可适应物种特异性要求,推动ADSCs在兽医和转化研究中的应用。

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