Department of Biomedical Science, College of Life Science, CHA University, 3F, Yatap Acecore, 502 Yatap-dong Bundang-gu, Seongam-si, Republic of Korea.
Department of Biomedical Science, College of Life Science, CHA University, 3F, Yatap Acecore, 502 Yatap-dong Bundang-gu, Seongam-si, Republic of Korea.
Carbohydr Polym. 2015 May 20;122:265-75. doi: 10.1016/j.carbpol.2014.12.073. Epub 2015 Jan 14.
Specific vehicles are necessary for safe and efficient gene transfection into cells. Nano-type hydrogels (nanogel) comprising carboxymethylcellulose (CMC) complexed with branched type cationic poly(ethleneimine) (bPEI) were used as gene delivery vehicles. When complexes of CMC and bPEI were used in vitro, CMC showed nano-gel type properties, as shown by the results of a viscosity test, and bPEI showed low cytotoxicity comparing to bPEI alone. Together, these properties are shown to maintain high gene transfection efficiency. In viability experiments using three types of adult stem cells, cell viability varied depending on the branch form of PEI and whether or not it is in a complex with CMC. The gene delivery efficacy showed that the CMC nanogel complexed with bPEI (CMC-bPEI) showed more uptaking and gene transfection ability in hMSCs comparing to bPEI alone. In osteogenesis, the CMC-bPEI complexed with OSX pDNA showed more easy internalization than bPEI alone complexed with OSX pDNA in hMSCs. Specific genes and proteins related in osteogenic differentiation were expressed in hMSCs when the CMC-bPEI complexed with OSX pDNA was used.
需要特定的载体才能将基因有效地转染到细胞中。包含羧甲基纤维素(CMC)与支链型阳离子聚(乙撑亚胺)(bPEI)复合的纳米水凝胶(纳米凝胶)被用作基因传递载体。当 CMC 和 bPEI 的复合物在体外使用时,CMC 表现出纳米凝胶特性,如粘度测试结果所示,与单独的 bPEI 相比,bPEI 表现出低细胞毒性。这些特性共同维持了高基因转染效率。在使用三种类型的成体干细胞的存活实验中,细胞存活率取决于 PEI 的分支形式以及它是否与 CMC 复合。基因传递效率表明,与单独的 bPEI 相比,与 bPEI 复合的 CMC 纳米凝胶(CMC-bPEI)在 hMSCs 中具有更高的摄取和基因转染能力。在成骨作用中,与 OSX pDNA 复合的 CMC-bPEI 在 hMSCs 中比单独的 bPEI 与 OSX pDNA 复合更容易内化。当使用与 OSX pDNA 复合的 CMC-bPEI 时,hMSCs 中表达了与成骨分化相关的特定基因和蛋白质。