Phadnis Smruti M, Joglekar Mugdha V, Venkateshan Vijayalakshmi, Ghaskadbi Surendra M, Hardikar Anandwardhan A, Bhonde Ramesh R
Division of Animal Sciences, Agharkar Research Institute, Pune, 41004 India.
In Vitro Cell Dev Biol Anim. 2006 Nov-Dec;42(10):283-6. doi: 10.1290/0512087.1.
Fetal calf serum (FCS) is conventionally used for animal cell cultures due to its inherent growth-promoting activities. However animal welfare issues and stringent requirements for human transplantation studies demand a suitable alternative for FCS. With this view, we studied the effect of FCS, human AB serum (ABS), and human umbilical cord blood serum (UCBS) on murine islets of Langerhans and human bone marrow-derived mesenchymal-like cells (hBMCs). We found that there was no difference in morphology and functionality of mouse islets cultured in any of these three different serum supplements as indicated by insulin immunostaining. A comparative analysis of hBMCs maintained in each of these three different serum supplements demonstrated that UCBS supplemented media better supported proliferation of hBMCs. Moreover, a modification of adipogenic differentiation protocol using UCBS indicates that it can be used as a supplement to support differentiation of hBMCs into adipocytes. Our results demonstrate that UCBS not only is suitable for maintenance of murine pancreatic islets, but also supports attachment, propagation, and differentiation of hBMCs in vitro. We conclude that UCBS can serve as a better serum supplement for growth, maintenance, and differentiation of hBMCs, making it a more suitable supplement in cell systems that have therapeutic potential in human transplantation programs.
胎牛血清(FCS)因其固有的促生长活性,传统上用于动物细胞培养。然而,动物福利问题以及对人类移植研究的严格要求,需要一种合适的FCS替代品。基于此观点,我们研究了FCS、人AB血清(ABS)和人脐带血血清(UCBS)对小鼠胰岛和人骨髓来源的间充质样细胞(hBMCs)的影响。我们发现,通过胰岛素免疫染色表明,在这三种不同血清补充剂中培养的小鼠胰岛,其形态和功能没有差异。对在这三种不同血清补充剂中培养的hBMCs进行的比较分析表明,添加UCBS的培养基能更好地支持hBMCs的增殖。此外,使用UCBS对脂肪生成分化方案进行的改良表明,它可用作支持hBMCs分化为脂肪细胞的补充剂。我们的结果表明,UCBS不仅适用于维持小鼠胰岛,还能支持hBMCs在体外的附着、增殖和分化。我们得出结论,UCBS可作为hBMCs生长、维持和分化的更好血清补充剂,使其成为在人类移植计划中具有治疗潜力的细胞系统中更合适的补充剂。