Dung Tran Huu, Do Le Thanh, Loan Ta Thi, Yoo Hoon
J Nanosci Nanotechnol. 2015 Jan;15(1):684-7. doi: 10.1166/jnn.2015.8378.
A series of PAMAM dendrimer generation 5-poly(acrylic acid) grafts were prepared to evaluate the potential use of dendritic grafts as a drug encapsulated nanocarrier. The structural features of the synthesized polymer graft were identified by FT-IR and 1H-NMR spectra and the biophysical properties were characterized by measuring its particle size and zeta potential. The prepared dendrimer G5-PAA grafts had particle size in the range of 600 to 900 nm and the size increased proportionally with the number of PAA on dendrimer surface. The electrostatic property of the dendrimer G5-PAA, carried out by HPLC reversed phase column analysis and the measurement of zeta potential, revealed that both migration time and zeta potential were dependent on the number of grafted PAA. The number of free amino groups on dendrimer G5-PAA, determined quantitatively by fluorescamine assay, was in a reverse order with the reaction mole ratio of dendrimer to PAA. In addition, dendrimer G5-PAA showed a pH-dependent solubility in aqueous solution with characteristic pH region of solubility, depending on the dendrimer generation. The observed biophysical properties indicate that PAMAM dendrimer G5-PAA is promising as a drug encapsulated nanocarrier.
制备了一系列第5代聚酰胺-胺(PAMAM)树枝状大分子接枝聚丙烯酸(PAMAM dendrimer generation 5-poly(acrylic acid) grafts),以评估树枝状接枝物作为药物包封纳米载体的潜在用途。通过傅里叶变换红外光谱(FT-IR)和氢核磁共振光谱(1H-NMR)对合成聚合物接枝物的结构特征进行了鉴定,并通过测量其粒径和zeta电位对其生物物理性质进行了表征。制备的树枝状大分子G5-PAA接枝物的粒径在600至900nm范围内,且粒径随树枝状大分子表面PAA的数量成比例增加。通过高效液相色谱反相柱分析和zeta电位测量对树枝状大分子G5-PAA的静电性质进行研究,结果表明迁移时间和zeta电位均取决于接枝PAA的数量。通过荧光胺测定法定量测定的树枝状大分子G5-PAA上的游离氨基数量与树枝状大分子与PAA的反应摩尔比呈相反顺序。此外,树枝状大分子G5-PAA在水溶液中的溶解度表现出pH依赖性,其溶解度的特征pH区域取决于树枝状大分子的代数。观察到的生物物理性质表明,PAMAM树枝状大分子G5-PAA有望成为一种药物包封纳米载体。