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通过使用基于磷灰石的复合层进行表面介导的基因转移实现区域特异性细胞刺激。

Area-specific cell stimulation via surface-mediated gene transfer using apatite-based composite layers.

作者信息

Yazaki Yushin, Oyane Ayako, Sogo Yu, Ito Atsuo, Yamazaki Atsushi, Tsurushima Hideo

机构信息

Department of Resources and Environmental Engineering, Waseda University, 3-4-1 Okubo, Shinjuku, Tokyo 169-8555, Japan.

Nanomaterials Research Institute, National Institute of Advanced Industrial Science and Technology, Central 4, 1-1-1 Higashi, Tsukuba, Ibaraki 305-8562, Japan.

出版信息

Int J Mol Sci. 2015 Apr 14;16(4):8294-309. doi: 10.3390/ijms16048294.

Abstract

Surface-mediated gene transfer systems using biocompatible calcium phosphate (CaP)-based composite layers have attracted attention as a tool for controlling cell behaviors. In the present study we aimed to demonstrate the potential of CaP-based composite layers to mediate area-specific dual gene transfer and to stimulate cells on an area-by-area basis in the same well. For this purpose we prepared two pairs of DNA-fibronectin-apatite composite (DF-Ap) layers using a pair of reporter genes and pair of differentiation factor genes. The results of the area-specific dual gene transfer successfully demonstrated that the cells cultured on a pair of DF-Ap layers that were adjacently placed in the same well showed specific gene expression patterns depending on the gene that was immobilized in the underlying layer. Moreover, preliminary real-time PCR results indicated that multipotential C3H10T1/2 cells may have a potential to change into different types of cells depending on the differentiation factor gene that was immobilized in the underlying layer, even in the same well. Because DF-Ap layers have a potential to mediate area-specific cell stimulation on their surfaces, they could be useful in tissue engineering applications.

摘要

使用基于生物相容性磷酸钙(CaP)的复合层的表面介导基因转移系统作为一种控制细胞行为的工具已引起关注。在本研究中,我们旨在证明基于CaP的复合层介导区域特异性双基因转移以及在同一孔中逐个区域刺激细胞的潜力。为此,我们使用一对报告基因和一对分化因子基因制备了两对DNA-纤连蛋白-磷灰石复合物(DF-Ap)层。区域特异性双基因转移的结果成功表明,在同一孔中相邻放置的一对DF-Ap层上培养的细胞根据固定在下层的基因显示出特定的基因表达模式。此外,初步的实时PCR结果表明,即使在同一孔中,多能C3H10T1/2细胞也可能有潜力根据固定在下层的分化因子基因转变为不同类型的细胞。由于DF-Ap层有潜力在其表面介导区域特异性细胞刺激,它们在组织工程应用中可能会很有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acf5/4425081/177732b2690f/ijms-16-08294-g001.jpg

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