Key Laboratory of Biomedical Polymers of Ministry of Education, Department of Chemistry, Wuhan University, Wuhan, P.R. China.
Mol Pharm. 2012 Oct 1;9(10):2887-93. doi: 10.1021/mp3002123. Epub 2012 Aug 28.
In this study, a facile strategy for efficient codelivery of gene and drug was developed. Using a coprecipitation method, doxorubicin hydrochloride (DOX), an antitumor drug, and p53 expression plasmid were encapsulated in alginate/CaCO(3)/DNA/DOX nanoparticles with high encapsulation efficiency. The in vitro cell inhibition effect of the alginate/CaCO(3)/DNA/DOX nanoparticles was evaluated by MTT assay in HeLa cells. The alginate/CaCO(3)/DNA/DOX nanoparticles exhibited a high cell inhibition rate about 80%, indicating that the alginate/CaCO(3)/DNA/DOX nanoparticles could effectively mediate gene transfection and deliver the drug to the cells. Compared with the codelivery of gene and drug, the treatments by alginate/CaCO(3)/DOX nanoparticles and alginate/CaCO(3)/DNA nanoparticles separately led to much lower cell inhibition rates. Compared with the CaCO(3)/DNA/DOX nanoparticles without alginate modification, the alginate/CaCO(3)/DNA/DOX nanoparticles with a decreased particle size exhibited enhanced delivery efficiency. The alginate/CaCO(3)/DNA/DOX nanoparticles have promising applications in cancer treatments.
在这项研究中,开发了一种将基因和药物有效共递运的简便策略。采用共沉淀法,将盐酸阿霉素(DOX)作为抗肿瘤药物和 p53 表达质粒包封在海藻酸钠/碳酸钙/DNA/DOX 纳米粒子中,具有较高的包封效率。通过 MTT 法在 HeLa 细胞中评价了海藻酸钠/碳酸钙/DNA/DOX 纳米粒子的体外细胞抑制效果。海藻酸钠/碳酸钙/DNA/DOX 纳米粒子表现出约 80%的高细胞抑制率,表明海藻酸钠/碳酸钙/DNA/DOX 纳米粒子能够有效地介导基因转染并将药物递送到细胞中。与基因和药物的共递运相比,海藻酸钠/碳酸钙/DOX 纳米粒子和海藻酸钠/碳酸钙/DNA 纳米粒子的单独处理导致的细胞抑制率要低得多。与没有海藻酸钠修饰的碳酸钙/DNA/DOX 纳米粒子相比,粒径减小的海藻酸钠/碳酸钙/DNA/DOX 纳米粒子表现出增强的递送效率。海藻酸钠/碳酸钙/DNA/DOX 纳米粒子在癌症治疗中有很好的应用前景。