Venuganti Venkata Vamsi K, Perumal Omathanu P
Department of Pharmaceutical Sciences, College of Pharmacy, South Dakota State University, Brookings, South Dakota 57007, USA.
J Pharm Sci. 2009 Jul;98(7):2345-56. doi: 10.1002/jps.21603.
The study investigates the influence of surface charge, generation and concentration of poly(amidoamine) (PAMAM) dendrimers on skin permeation of a model hydrophilic drug, 5-fluorouracil (5FU). Permeation studies were performed using excised porcine skin in a Franz diffusion cell. Saturated concentration of 5FU in isopropyl myristate was applied on the skin after pretreatment with dendrimers and (14)C labeled 5FU was analyzed using a liquid scintillation counter. The influence of dendrimer surface charge (G4-NH(2), G3.5-COOH, and G4-OH), generations (G2-G6-NH(2)) and concentration (0.1-10 mM of G4-NH(2)) on skin permeation of 5FU were studied. The enhancement in drug permeability coefficient (K(p)) was in the following decreasing order G4-NH(2) > G4-OH > G3.5-COOH. Dendrimer increased the skin permeation by increasing the skin partitioning of 5FU. Transepidermal water loss, skin resistance measurements and ATR-FTIR studies revealed that cationic dendrimers act by interacting with the skin lipid bilayers. Increase in G4-NH(2) concentration did not proportionally increase the skin permeation of 5FU. The 5FU K(p) was inversely related to the molecular weight of the dendrimer. G2-NH(2) dendrimer reduced skin resistance to a greater extent than higher generation dendrimers. Overall, the study showed that lower generation cationic dendrimer is more effective in enhancing the skin permeation of hydrophilic drugs.
该研究调查了聚(酰胺胺)(PAMAM)树枝状大分子的表面电荷、代数和浓度对模型亲水性药物5-氟尿嘧啶(5FU)经皮渗透的影响。使用Franz扩散池中的离体猪皮进行渗透研究。在用树枝状大分子预处理后,将5FU在肉豆蔻酸异丙酯中的饱和浓度施加于皮肤上,并使用液体闪烁计数器分析(14)C标记的5FU。研究了树枝状大分子表面电荷(G4-NH2、G3.5-COOH和G4-OH)、代数(G2-G6-NH2)和浓度(0.1-10 mM的G4-NH2)对5FU经皮渗透的影响。药物渗透系数(Kp)的增强顺序为G4-NH2>G4-OH>G3.5-COOH。树枝状大分子通过增加5FU在皮肤中的分配来增加经皮渗透。经表皮水分流失、皮肤电阻测量和ATR-FTIR研究表明,阳离子树枝状大分子通过与皮肤脂质双层相互作用而起作用。G4-NH2浓度的增加并没有成比例地增加5FU的经皮渗透。5FU的Kp与树枝状大分子的分子量呈负相关。G2-NH2树枝状大分子比更高代数的树枝状大分子在更大程度上降低皮肤电阻。总体而言,该研究表明较低代数的阳离子树枝状大分子在增强亲水性药物的经皮渗透方面更有效。