Fangkangwanwong Juthathip, Sae-Liang Nutchanart, Sriworarat Chaichontat, Sereemaspun Amornpun, Chirachanchai Suwabun
Bangkok Christian College , Bangkok 10500, Thailand.
Bioconjug Chem. 2016 Oct 19;27(10):2301-2306. doi: 10.1021/acs.bioconjchem.6b00251. Epub 2016 Sep 19.
Chitosan is a potential biopolymer for cell recognition and targeting; however, when those functions are based on cationic amine groups of chitosan, cell damage is a concern. This study presents water-based chitosan conjugated with thymine (CsT) through a mild and homogeneous conjugating reaction via amide bond without the use of organic and/or acidic solvents. The CsT displays water-solubility in a wide range of pH. A series of comparative gel retardation assays confirm the selective binding with poly(A), resulting in nanoparticles of 100 to 250 nm in size. PrestoBlue cell viability assay clarifies nontoxicity and reveals noncytotoxicity to normal colon cells but inhibition of colon cancer cells. This simple pathway for water-soluble chitosan-nucleic acid leads to synergistic effects of cell compatibility and DNA recognition.
壳聚糖是一种用于细胞识别和靶向的潜在生物聚合物;然而,当这些功能基于壳聚糖的阳离子胺基团时,细胞损伤是一个问题。本研究通过温和且均相的酰胺键共轭反应,在不使用有机和/或酸性溶剂的情况下,展示了与胸腺嘧啶共轭的水基壳聚糖(CsT)。CsT在广泛的pH范围内显示出水溶性。一系列比较凝胶阻滞试验证实了其与聚(A)的选择性结合,形成了尺寸为100至250纳米的纳米颗粒。PrestoBlue细胞活力测定法阐明了其无毒性,并揭示了对正常结肠细胞无细胞毒性,但对结肠癌细胞有抑制作用。这种水溶性壳聚糖 - 核酸的简单途径导致了细胞相容性和DNA识别的协同效应。