Liu Wenguang, Sun Shujun, Cao Zhiqiang, Zhang Xin, Yao Kangde, Lu William W, Luk K D K
Research Institute of Polymeric Materials, Tianjin University, Tianjin 300072, P.R. China.
Biomaterials. 2005 May;26(15):2705-11. doi: 10.1016/j.biomaterials.2004.07.038.
In this work, to eliminate the effect of the hydrophobicity of N-acetyl groups in chitosan on the interaction between chitosan and DNA, a water soluble chitosan with molecular weight of 5000 and deacetylated degree of 99% was selected to complex with DNA at varied charged ratios. The physicochemical properties of chitoplexes were investigated by means of FTIR, circular dichroism (CD), static fluorescence spectroscopy, and atomic force microscopy (AFM). The results indicated that upon interacting with chitosan, the DNA molecules saved a B conformation, and the binding affinity of chitosan to DNA was dependent on pH of media. At pH 5.5, highly charged chitosan had a strong binding affinity with DNA; whereas in pH 12.0 medium, only weak interactions existed. The CD spectra of Hoechst 33258 competitive displacement revealed that chitosan was partially bound to the minor groove of DNA. The morphology of chitosan/DNA complexes was strongly dependent upon the charge ratios. At charge ratio (+/-) of 1:4, not all DNA could be entrapped in the complex; at ratio of 8:1, the spherical complexes with mean size of nanoscale were formed without free DNA, but no typical toroid patterns were observed, which might stem from the strong compact of DNA caused by highly charged chitosan. It was supposed that the strong interaction of chitosan with DNA possibly prevented gene unpacking from chitosan vector, consequently restraining gene expression in nucleus.
在本研究中,为消除壳聚糖中N - 乙酰基的疏水性对壳聚糖与DNA相互作用的影响,选用了分子量为5000且脱乙酰度为99%的水溶性壳聚糖,使其与不同电荷比的DNA复合。通过傅里叶变换红外光谱(FTIR)、圆二色光谱(CD)、静态荧光光谱和原子力显微镜(AFM)对壳聚糖 - DNA复合物的物理化学性质进行了研究。结果表明,与壳聚糖相互作用后,DNA分子保持B构象,壳聚糖与DNA的结合亲和力取决于介质的pH值。在pH 5.5时,高电荷的壳聚糖与DNA具有很强的结合亲和力;而在pH 12.0的介质中,仅存在弱相互作用。Hoechst 33258竞争置换的CD光谱表明,壳聚糖部分结合于DNA的小沟。壳聚糖/DNA复合物的形态强烈依赖于电荷比。在电荷比(+/-)为1:4时,并非所有DNA都能被包裹在复合物中;在8:1的比例下,形成了平均尺寸为纳米级的球形复合物,且无游离DNA,但未观察到典型的环形图案,这可能源于高电荷壳聚糖导致的DNA强烈压缩。据推测,壳聚糖与DNA的强相互作用可能阻止了基因从壳聚糖载体上解包,从而抑制了细胞核中的基因表达。