Chua Ruiming, Ghosh Sujoy
Program in Cardiovascular and Metabolic Diseases, Duke-NUS Medical School, Singapore.
Laboratory of Computational Biology, Pennington Biomedical Research Center, LA, USA.
bioRxiv. 2023 Dec 15:2023.12.14.571780. doi: 10.1101/2023.12.14.571780.
Adipocyte cultures are a mainstay of metabolic disease research, yet loss-of-function studies in differentiating adipocytes is complicated by the refractoriness of lipid-containing adipocytes to standard siRNA transfections. Alternative methods, such as electroporation or adenovirus/lentivirus-based delivery systems are complex, expensive and often accompanied with unacceptable levels of cell death. To address this problem, we have tested two commercially available siRNA delivery systems in this study using a multi-parameter optimization approach. Our results identified a uniform siRNA transfection protocol that can be applied to human and mouse adipocyte cultures throughout the time course of differentiation, beginning with pre-differentiated cells and continuing up to lipid-accumulated differentiated adipocytes. Our findings allow for efficient transfection of human and mouse adipocyte cultures using standard and readily available methodologies, and should help significantly expand the scope of gene manipulation studies in these cell types.
脂肪细胞培养是代谢疾病研究的主要手段,然而,在分化中的脂肪细胞中进行功能丧失研究却因含脂脂肪细胞对标准小干扰RNA(siRNA)转染的难治性而变得复杂。诸如电穿孔或基于腺病毒/慢病毒的递送系统等替代方法复杂、昂贵,且常常伴随着不可接受的细胞死亡水平。为了解决这个问题,我们在本研究中使用多参数优化方法测试了两种市售的siRNA递送系统。我们的结果确定了一种统一的siRNA转染方案,该方案可应用于人类和小鼠脂肪细胞培养的整个分化过程,从预分化细胞开始,一直到脂质积累的分化脂肪细胞。我们的发现使得使用标准且易于获得的方法对人类和小鼠脂肪细胞培养进行高效转染成为可能,并且应该有助于显著扩大这些细胞类型中基因操作研究的范围。