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Understanding the Biomedical Effects of the Self-Assembled Tetrahedral DNA Nanostructure on Living Cells

机译:了解自组装四面体DNA纳米结构对活细胞的生物医学效应

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Recently, much attention has been paid to DNA again due to the successful synthesis of DNA-based nanostructures that can enter cells via endocytosis and thus have great potential in biomedical fields. However, the impacts of DNA nanostructures on life activities of a living cell are unknown. Herein, the promotion effect of tetrahedral DNA nanostructure (TDN) on cell growth and the underlying molecular mechanisms are reported. Upon exposure to TDN, cell proliferation is significantly enhanced, accompanied by up-regulation of cyclin-dependent kinase like-1 gene, changes in cell cycle distribution, and up-regulation of the Wnt/beta-catenin signaling related proteins (beta-catenin, Lef 1 and cyclin D). In contrast, single-stranded DNA (ssDNA) shows no such functions. Furthermore, TDN is able to reverse the inhibition effect of DKK1, a specific inhibitor for Wnt/beta-catenin pathway. Hence, the Wnt/fi-tatenin pathway is the target for TDN to promote cell proliferation. The findings allow TDN to be a novel functional nanomaterial that has great potential in tissue repair and regeneration medicine.
机译:最近,由于成功合成了可以通过内吞作用进入细胞的基于DNA的纳米结构,因此再次引起了人们对DNA的广泛关注,因此在生物医学领域具有巨大的潜力。但是,DNA纳米结构对活细胞生命活动的影响尚不清楚。在此,报道了四面体DNA纳米结构(TDN)对细胞生长的促进作用及其潜在的分子机理。暴露于TDN后,细胞增殖显着增强,并伴随着细胞周期蛋白依赖性激酶样1基因的上调,细胞周期分布的变化以及Wnt /β-catenin信号相关蛋白(β-catenin)的上调,Lef 1和cyclin D)。相反,单链DNA(ssDNA)没有显示这种功能。此外,TDN能够逆转DKK1的抑制作用,DKK1是Wnt /β-catenin途径的特异性抑制剂。因此,Wnt / fi-tatenin途径是TDN促进细胞增殖的目标。这些发现使TDN成为一种新型的功能纳米材料,在组织修复和再生医学中具有巨大的潜力。

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