水牛(Bubalus bubalis)脂肪组织间充质干细胞的综合表征和冷冻保存优化

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-04-23 DOI:10.1016/j.cryobiol.2024.104896
Michelle Abraham , Sandeep Goel
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引用次数: 0

摘要

世界上一半以上的水牛(Bubalus bubalis)栖息在印度,水牛经常遇到传统治疗方法无法解决的健康问题,这促使人们探索替代治疗策略。干细胞疗法,特别是多能间充质/间质干细胞(MSCs)是一种很有前景的方法。这些细胞在治疗对传统疗法有抵抗力的家畜的各种疾病方面显示出显著疗效。源自脂肪组织的间充质干细胞(ADSCs)因其易获得性和强大的扩增潜力而备受关注。目前的研究全面描述了水牛 ADSCs(bADSCs)的特征,确认了它们作为间充质干细胞能够分化成多种细胞系的特性。值得注意的是,研究发现,由 10% 二甲基亚砜和 90% 胎牛血清组成的低温保护溶液最适合保存 bADSCs。这种低温保护溶液能保持解冻后的重要参数,包括活力、凋亡、衰老、细胞粘附性、粘附细胞活力、代谢和克隆效率、活性氧活性和三系分化潜能。这些发现为开发 bADSCs 冷冻储存系统奠定了基础。随后的研究工作重点是探索 bADSCs 在特定疾病模型和临床环境中的治疗潜力。这些研究成果可能会为创新和有效的治疗铺平道路,进一步加深我们对 bADSCs 再生能力的理解。
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Comprehensive characterisation and cryopreservation optimisation of buffalo (Bubalus bubalis) adipose tissue-derived mesenchymal stem cells

Over half of the world's buffalo (Bubalus bubalis) inhabit India, and buffaloes frequently encounter health challenges that resist conventional treatments, prompting the exploration of alternative therapeutic strategies. One promising approach is stem cell therapy, particularly multipotent mesenchymal/stromal stem cells (MSCs). These cells have shown significant efficacy in addressing various diseases in livestock that exhibit resistance to conventional therapies. Adipose tissue-derived MSCs (ADSCs) have garnered attention due to their accessibility and robust expansion potential. The current study comprehensively characterises buffalo ADSCs (bADSCs), confirming their identity as MSCs capable of differentiating into diverse cell lineages—the identified characteristics position bADSCs as promising candidates for applications in regenerative medicine, applicable in veterinary contexts. Notably, the study established that a cryoprotective solution comprising 10 % dimethyl sulfoxide and 90 % fetal bovine serum is optimal for preserving bADSCs. This cryoprotective solution maintains vital parameters, including viability, apoptosis, senescence, cell adherence, adherent cell viability, metabolic and clonogenic efficiency, and the activity of reactive oxygen species and trilineage differentiation potential following thawing. These findings lay the foundation for developing a cryo-banking system for bADSCs. Subsequent research efforts are focused on exploring the therapeutic potential of bADSCs in specific disease models and clinical settings. The outcomes of such investigations may pave the way for innovative and effective treatments, further enhancing our understanding of the regenerative capabilities of bADSCs.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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