Shimada Naohiko, Coban Cevayir, Takeda Yoichi, Mizu Masami, Minari Jusaku, Anada Takahisa, Torii Yuichi, Shinkai Seiji, Akira Shizuo, Ishii Ken J, Sakurai Kazuo
Department of Chemical Processes & Environments, The University of Kitakyushu, 1-1, Hibikino, Wakamatu-ku, Kitakyushu, Fukuoka 808-0135, Japan.
Bioconjug Chem. 2007 Jul-Aug;18(4):1280-6. doi: 10.1021/bc0700178. Epub 2007 May 27.
Oligodeoxynucleotides containing unmethylated CpG sequences (CpG DNAs) activate the vertebrate innate immune system via toll-like receptor 9 (TLR-9). Although CpG DNA is a promising immunotherapeutic agent, its short circulation time in biological fluids due to nuclease is the major drawback. This paper proposes that a natural polysaccharide called schizophyllan (SPG) can be used as an effective CpG DNA carrier because SPG can complex with CpG DNA and the resultant complex shows the nuclease resistance of the bound DNA. In order to increase cellular uptake in vitro, we chemically attached spermine, cholesterol, arginine octamer, or RGD peptide to SPG. The complexes made of the chemically modified SPG and CpG DNA having a phosphorothioate (PS) or phosphodiester (PO) backbone led to increased secretion of cytokines of about 4- to 15-fold, compared with the uncomplexed dose. Furthermore, when PO CpG DNA was complexed with unmodified SPG, the IL-12 level increased by almost 3- to 11-fold compared with the naked dose. The PO CpG DNA/unmodified SPG complex data suggested that unmodified SPG might effectively deliver PO in vivo due to the electrically neutral nature of unmodified SPG. When the complexed CpG DNAs were injected intraperitoneally, a large amount of IL-12 production was observed compared with the uncomplexed material. Both in vivo and vitro assays indicated that the SPG complex may be of use for CpG DNA therapy.
含有未甲基化CpG序列的寡脱氧核苷酸(CpG DNA)通过Toll样受体9(TLR-9)激活脊椎动物的先天免疫系统。尽管CpG DNA是一种有前景的免疫治疗剂,但其在生物流体中因核酸酶导致的循环时间短是主要缺点。本文提出,一种名为裂褶菌多糖(SPG)的天然多糖可作为有效的CpG DNA载体,因为SPG能与CpG DNA形成复合物,且所得复合物显示出结合DNA的核酸酶抗性。为了在体外增加细胞摄取,我们将精胺、胆固醇、精氨酸八聚体或RGD肽化学连接到SPG上。由化学修饰的SPG和具有硫代磷酸酯(PS)或磷酸二酯(PO)主链的CpG DNA制成的复合物,与未复合的剂量相比,导致细胞因子分泌增加约四倍至十五倍。此外,当PO CpG DNA与未修饰的SPG复合时,与裸剂量相比,IL-12水平增加了近三倍至十一倍。PO CpG DNA/未修饰的SPG复合物数据表明,由于未修饰的SPG呈电中性,它可能在体内有效地递送PO。当将复合的CpG DNA腹腔注射时,与未复合的物质相比,观察到大量的IL-12产生。体内和体外试验均表明,SPG复合物可能可用于CpG DNA治疗。