Najlah Mohammad, Freeman Sally, Attwood David, D'Emanuele Antony
School of Pharmacy and Pharmaceutical Sciences, University of Manchester, Manchester M13 9PL, UK.
Int J Pharm. 2007 May 4;336(1):183-90. doi: 10.1016/j.ijpharm.2006.11.047. Epub 2006 Nov 28.
Dendrimer-based prodrugs were used to enhance the transepithelial permeability of naproxen, a low solubility model drug. The stability of the dendrimer-naproxen link was assessed. Naproxen was conjugated to G0 polyamidoamine (PAMAM) dendrimers either by an amide bond or an ester bond. The stability of G0 prodrugs was evaluated in 80% human plasma and 50% rat liver homogenate. The cytotoxicity of conjugates towards Caco-2 cells was determined and the transport of the conjugates across Caco-2 monolayers (37 degrees C) was reported. In addition, one lauroyl chain (L) was attached to the surface group of G0 PAMAM dendrimer of the diethylene glycol ester conjugate (G0-deg-NAP) to enhance permeability. The lactic ester conjugate, G0-lact-NAP, hydrolyzed slowly in 80% human plasma and in 50% rat liver homogenate (t(1/2)=180 min). G0-deg-NAP was hydrolyzed more rapidly in 80% human plasma (t(1/2)=51 min) and was rapidly cleaved in 50% liver homogenate (t(1/2)=4.7 min). The conjugates were non-toxic when exposed to Caco-2 cells for 3h. Permeability studies showed a significant enhancement in the transport of naproxen when conjugated to dendrimers; L-G0-deg-NAP yielding the highest permeability. Dendrimer-based prodrugs with appropriate linkers have potential as carriers for the oral delivery of low solubility drugs such as naproxen.
基于树枝状大分子的前药被用于提高低溶解度模型药物萘普生的跨上皮渗透性。评估了树枝状大分子 - 萘普生连接的稳定性。萘普生通过酰胺键或酯键与G0聚酰胺胺(PAMAM)树枝状大分子共轭。在80%的人血浆和50%的大鼠肝匀浆中评估了G0前药的稳定性。测定了共轭物对Caco - 2细胞的细胞毒性,并报道了共轭物在Caco - 2单层(37摄氏度)上的转运情况。此外,将一条月桂酰链(L)连接到二甘醇酯共轭物(G0 - deg - NAP)的G0 PAMAM树枝状大分子的表面基团上以提高渗透性。乳酸酯共轭物G0 - lact - NAP在80%的人血浆和50%的大鼠肝匀浆中水解缓慢(t(1/2)=180分钟)。G0 - deg - NAP在80%的人血浆中水解更快(t(1/2)=51分钟),并在50%的肝匀浆中迅速裂解(t(1/2)=4.7分钟)。当共轭物与Caco - 2细胞接触3小时时无毒。渗透性研究表明,与树枝状大分子共轭时,萘普生的转运有显著增强;L - G0 - deg - NAP的渗透性最高。具有合适连接子的基于树枝状大分子的前药有潜力作为低溶解度药物(如萘普生)口服给药的载体。