Shi Xiangyang, Patri Anil K, Lesniak Wojciech, Islam Mohammad T, Zhang Chunxin, Baker James R, Balogh Lajos P
Center for Biologic Nanotechnology, University of Michigan Medical School, Ann Arbor, USA.
Electrophoresis. 2005 Aug;26(15):2960-7. doi: 10.1002/elps.200500135.
Ethylenediamine (EDA)-core poly(amidoamine) (PAMAM) succinamic acid dendrimers (Ex.SAH, where x refers to the generation) were synthesized and analyzed by polyacrylamide gel electrophoresis (PAGE), size-exclusion chromatography (SEC), potentiometric acid-base titration, and capillary zone electrophoresis (CZE). Various generations (E1.SAH-E7.SAH) PAMAMs and a succinamic acid terminated core-shell tecto(dendrimer) (E5(E3.SAH)(n)) were first analyzed by PAGE. PAGE results show that the relative mobilities of generation 2 to generation 7 dendrimers decreased with the increasing number of generations. The molecular mass of a generation 5 core generation 3 shell tecto(dendrimer) (denoted as E5(E3.SAH)(n)) was determined to be between the Mw of E6.SAH and E7.SAH. CZE analysis allowed the evaluation of electrophoretic properties of given-generation dendrimers. The electrophoretic mobilities of individual generations PAMAM polyanions are similar, indicating that the separation mainly depends on their approximately identical charge/mass ratio. The E5(E3.SAH)(n) tectodendrimer had a lower electrophoretic mobility, which was consistent with its lower charge/mass ratio. The combination of PAGE and CZE analysis provides an alternative and effective way to characterize this group of PAMAM-succinamic acid dendrimers.
合成了以乙二胺(EDA)为核的聚(酰胺胺)(PAMAM)琥珀酰胺酸树枝状大分子(Ex.SAH,其中x代表代数),并通过聚丙烯酰胺凝胶电泳(PAGE)、尺寸排阻色谱(SEC)、电位酸碱滴定和毛细管区带电泳(CZE)进行分析。首先通过PAGE对不同代数(E1.SAH - E7.SAH)的PAMAM以及一种琥珀酰胺酸封端的核壳结构(树枝状大分子)(E5(E3.SAH)(n))进行分析。PAGE结果表明,从第二代到第七代树枝状大分子的相对迁移率随代数增加而降低。确定了第五代核第三代壳结构(树枝状大分子)(记为E5(E3.SAH)(n))的分子量介于E6.SAH和E7.SAH的Mw之间。CZE分析能够评估特定代数树枝状大分子的电泳性质。各代PAMAM聚阴离子的电泳迁移率相似,表明分离主要取决于它们大致相同的电荷/质量比。E5(E3.SAH)(n)结构树枝状大分子的电泳迁移率较低,这与其较低的电荷/质量比一致。PAGE和CZE分析相结合为表征这组PAMAM - 琥珀酰胺酸树枝状大分子提供了一种替代且有效的方法。