Redondo Juan Alfonso, Martínez-Campos Enrique, Navarro Rodrigo, Reinecke Helmut, Elvira Carlos, López-Lacomba José Luis, Gallardo Alberto
Institute of Polymer Science and Technology, ICTP-CSIC, Juan de la Cierva 3, 28006 Madrid, Spain.
Institute of Biofunctional Studies (IEB), Tissue Engineering Group, (UCM), Associated Unit to the Institute of Polymer Science and Technology (CSIC), Paseo de Juan XXIII 1, 28040 Madrid, Spain.
Eur J Pharm Biopharm. 2015 Jun;93:303-10. doi: 10.1016/j.ejpb.2015.04.014. Epub 2015 Apr 30.
Statistical copolymers of N-(2-hydroxypropyl) methacrylamide (HPMA) and the dendronic methacrylic monomer 2-(3-(Bis(2-(diethylamino)ethyl)amino)propanamido)ethyl methacrylate (TEDETAMA, derived from N,N,N',N'-tetraethyldiethylenetriamine, TEDETA), were synthesized through radical copolymerization and evaluated in vitro as non-viral gene carriers. Three copolymers with nominal molar percentages of HPMA of 25%, 50% and 75% were prepared and studied comparatively to the positive controls poly-TEDETAMA and hyperbranched polyethyleneimine (PEI, 25kDa). Their ability to complex DNA at different N/P molar ratios, from 1/1 up to 8/1, was determined through agarose gel electrophoresis and Dynamic Light Scattering. The resulting complexes (polyplexes) were characterized and evaluated in vitro as possible non-viral gene carriers for Swiss-3T3 fibroblasts, using luciferase as reporter gene and a calcein cytocompatibility assay. All the copolymers, except the one with highest HPMA proportion (75 molar %) at the lowest N/P ratio, condensed DNA to a particle size between 100 and 300 nm. The copolymers with 25 and 50 molar % of HPMA displayed higher transfection efficiency and cytocompatibility than the positive controls poly-TEDETAMA and PEI. A higher proportion of HPMA (75 molar %) led to copolymers that displayed very low transfection efficiency, despite their full cytocompatibility even at the highest N/P ratio. These results indicate that the statistical combination of TEDETAMA and HPMA and its fine compositional tuning in the copolymers may fulfill the fine balance of transfection efficiency and cytocompatibility in a superior way to the control poly-TEDETAMA and PEI.
通过自由基共聚合成了N-(2-羟丙基)甲基丙烯酰胺(HPMA)与树枝状甲基丙烯酸单体2-(3-(双(2-(二乙氨基)乙基)氨基)丙酰胺基)乙基甲基丙烯酸酯(TEDETAMA,衍生自N,N,N',N'-四乙基二亚乙基三胺,TEDETA)的统计共聚物,并作为非病毒基因载体进行了体外评估。制备了三种HPMA标称摩尔百分比分别为25%、50%和75%的共聚物,并与阳性对照聚TEDETAMA和超支化聚乙烯亚胺(PEI,25kDa)进行了比较研究。通过琼脂糖凝胶电泳和动态光散射测定了它们在1/1至8/1不同N/P摩尔比下与DNA复合的能力。使用荧光素酶作为报告基因,并通过钙黄绿素细胞相容性测定法,对所得复合物(多聚体)进行了表征,并作为瑞士3T3成纤维细胞可能的非病毒基因载体进行了体外评估。除了在最低N/P比下HPMA比例最高(75摩尔%)的共聚物外,所有共聚物都将DNA浓缩至100至300nm的粒径。HPMA摩尔百分比为25%和50%的共聚物显示出比阳性对照聚TEDETAMA和PEI更高的转染效率和细胞相容性。更高比例的HPMA(75摩尔%)导致共聚物即使在最高N/P比下也具有完全的细胞相容性,但转染效率非常低。这些结果表明,TEDETAMA和HPMA的统计组合及其在共聚物中的精细组成调节,可能以优于对照聚TEDETAMA和PEI的方式实现转染效率和细胞相容性的精细平衡。