Horse serum potentiates cellular viability and improves indomethacin-induced adipogenesis in equine subcutaneous adipose-derived stem cells (ASCs).

IF 2.8 Q1 VETERINARY SCIENCES International Journal of Veterinary Science and Medicine Pub Date : 2023-08-29 eCollection Date: 2023-01-01 DOI:10.1080/23144599.2023.2248805
Valeria Petrova, Penka Yonkova, Galina Simeonova, Ekaterina Vachkova
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Abstract

Subcutaneous fat tissue is an accessible and abundant source of multipotent stem cells for cell therapy in regenerative medicine. Successful trilineage differentiation is required to define the stemness features of the obtained mesenchymal cells, and adipogenesis is a part of it. Since indomethacin is bound to serum albumin, replacing foetal bovine serum (FBS) with horse serum (HS) in adipogenic induction protocols would suppress its cytotoxic effect and reveal a better adipogenic potential in equine MSCs. The equine subcutaneous adipose-derived stem cells (ASCs) were separately induced in adipogenesis by three different concentrations of 3-isobutyl-1-methylxanthine, IBMX (0.5 mM; 0.25 mM and 0.1 mM) and indomethacin (0.1 mM; 0.05 mM and 0.02 mM) for 48 h. In contrast to the IBMX, indomethacin in all concentrations caused dramatic cellular detachment. Further, the same induction concentrations were used in FBS and HS conditions for adipogenic induction. The MTT assay revealed that the culture media supplemented with HS raised cellular vitality by about 35% compared to those cultured in FBS. Based on those results, an adipogenic cocktail containing indomethacin (0.05 mM) and IBMX (0.5 mM), supplemented with HS and FBS, respectively, was applied for 18 days. The adiponectin gene expression was significantly up-regulated in HS-supplemented media since established changes in PPAR-gamma were insignificant. The tri-lineage differentiation was successful, and a cross-sectional area of adipocytes was performed. The albumin concentration was higher in HS than in FBS. In conclusion, our study revealed that HS is an appropriate supplement in induced adipogenesis since it probably suppresses the indomethacin-related cytotoxic effect and increases adipogenic ability in equine subcutaneous ASCs.

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马血清增强细胞活力,改善吲哚美辛诱导的马皮下脂肪来源干细胞(ASC)的脂肪生成。
皮下脂肪组织是再生医学中可获得和丰富的多能干细胞来源,用于细胞治疗。成功的三线分化需要确定所获得的间充质细胞的干性特征,而脂肪生成是其中的一部分。由于吲哚美辛与血清白蛋白结合,在脂肪诱导方案中用马血清(HS)代替胎牛血清(FBS)将抑制其细胞毒作用,并在马间充质干细胞中显示出更好的脂肪生成潜力。用三种不同浓度的3-异丁基-1-甲基黄嘌呤、IBMX(0.5 mM;0.25 mM和0.1 mM)和吲哚美辛(0.1 mM;0.05 mM和0.02 mM)48 h.与IBMX相比,所有浓度的吲哚美辛都会引起显著的细胞分离。此外,在FBS和HS条件下使用相同的诱导浓度进行脂肪生成诱导。MTT分析显示,与在FBS中培养的培养基相比,补充HS的培养基提高了约35%的细胞活力。基于这些结果,含有吲哚美辛(0.05 mM)和IBMX(0.5 mM),分别补充HS和FBS,施用18 天。脂联素基因表达在补充HS的培养基中显著上调,因为PPAR-gamma的既定变化不显著。三系分化是成功的,并进行了脂肪细胞的横截面积。HS组的白蛋白浓度高于FBS组。总之,我们的研究表明,HS是诱导脂肪生成的合适补充剂,因为它可能抑制吲哚美辛相关的细胞毒性作用,并增加马皮下ASCs的脂肪生成能力。
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CiteScore
4.80
自引率
0.00%
发文量
12
审稿时长
24 weeks
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