Faculty of Pharmaceutical Sciences, Laboratory of Drug Delivery System, Setsunan University, Hirakata, Japan.
Laboratory for Molecular Delivery and Imaging Technology, RIKEN Center for Biosystems Dynamics Research, Kobe, Japan.
J Drug Target. 2021 Feb;29(2):217-224. doi: 10.1080/1061186X.2020.1830407. Epub 2020 Oct 8.
Guanine-rich oligonucleotide (GRO) can be developed as an effective anticancer agent owing to its high selectivity, affinity and antiproliferative activity in cancer cells. In this study, to increase the potency of GRO29A, a 29-mer GRO aptamer against nucleolin, an overexpressed protein in cancer cells, GRO29A was incorporated into three or six pods of polypod-like structured DNA (polypodna), tripodna or hexapodna, respectively. The polypod-like structured GROs, tri-G3, consisting of one tripodna and three GRO29A, or hexa-G1, hexa-G3 or hexa-G6, each of which comprises one hexapodna and one, three or six GRO29A, respectively, were designed. Tri-G3, hexa-G1 and hexa-G3 were prepared in high yield, except for hexa-G6. Polypod-like structured GROs had quadruplex structures under physiological salt conditions, and degraded at a slower rate in buffer containing serum. Cellular interaction experiments using fluorescently labelled DNA samples showed that the uptake of hexa-G3 by nucleolin-positive MCF-7 cells was more than 2-fold higher than GRO29A, and the interaction was increasingly dependent on the number of GRO29A in the structures. Hexa-G3 inhibited the proliferation of MCF-7 cells in more than 40%, but not of CHO cells. These results indicate that polypod-like structured GROs are useful DNA aptamers with high selectivity and cytotoxicity against nucleolin-positive cancer cells.
鸟嘌呤富集寡核苷酸(GRO)可以开发为有效的抗癌药物,因为它在癌细胞中具有高选择性、亲和力和抗增殖活性。在这项研究中,为了提高 GRO29A 的效力,GRO29A 是一种针对核仁蛋白的 29 个碱基对的 GRO 适体,核仁蛋白在癌细胞中过度表达,将 GRO29A 分别整合到三个或六个多足状结构 DNA(多足纳)、三脚架纳或六足纳中。多足状结构的 GROs,三-G3,由一个三脚架纳和三个 GRO29A 组成,或六-G1、六-G3 或六-G6,它们分别由一个六足纳和一个、三个或六个 GRO29A 组成。三-G3、六-G1 和六-G3 以高产率制备,除了六-G6。多足状结构的 GRO 在生理盐条件下具有四聚体结构,并且在含有血清的缓冲液中降解速度较慢。使用荧光标记的 DNA 样品进行细胞相互作用实验表明,六-G3 被核仁蛋白阳性的 MCF-7 细胞摄取的量是 GRO29A 的 2 倍以上,并且这种相互作用越来越依赖于结构中 GRO29A 的数量。六-G3 抑制 MCF-7 细胞的增殖超过 40%,但不抑制 CHO 细胞。这些结果表明,多足状结构的 GRO 是有用的 DNA 适体,对核仁蛋白阳性的癌细胞具有高选择性和细胞毒性。