Department of Biotechnology, IIT-Madras, Chennai 600036, India.
J Mol Model. 2011 May;17(5):1141-7. doi: 10.1007/s00894-010-0811-8. Epub 2010 Aug 5.
Drug uptake by polymer was modeled using a molecular dynamics (MD) simulation technique. Three drugs--doxorubicin (water soluble), silymarin (sparingly water soluble) and gliclazide (water insoluble)--and six polymers with varied functional groups--alginic acid, sodium alginate, chitosan, Gantrez AN119 (methyl-vinyl-ether-co-malic acid based), Eudragit L100 and Eudragit RSPO (both acrylic acid based)--were selected for the study. The structures were modeled and minimized using molecular mechanics force field (MM+). MD simulation (Gromacs-forcefield, 300 ps, 300 K) of the drug in the vicinity of the polymer molecule in the presence of water molecules was performed, and the interaction energy (IE) between them was calculated. This energy was evaluated with respect to electric-dipole, van der Waals and hydrogen bond forces. A good linear correlation was observed between IE and our own previous data on drug uptake(*) [R² = 0.65, R²adj = 0:65; R²pre = 0:56 and a F ratio of 30.25, P < 0.001; Devarajan et al. (2005) J Biomed Nanotechnol 1:1-9]. Maximum drug uptake by the polymeric nanoparticles (NP) was achieved in water as the solvent environment. Hydrophilic interaction between NP and water was inversely correlated with drug uptake. The MD simulation method provides a reasonable approximation of drug uptake that will be useful in developing polymer-based drug delivery systems.
采用分子动力学(MD)模拟技术对聚合物的药物摄取进行建模。选择了三种药物——阿霉素(水溶性)、水飞蓟素(水溶性差)和格列齐特(水不溶性)——以及六种具有不同官能团的聚合物——海藻酸、海藻酸钠、壳聚糖、Gantrez AN119(基于甲基乙烯基醚-马来酸)、Eudragit L100 和 Eudragit RSPO(均基于丙烯酸)进行研究。使用分子力学力场(MM+)对结构进行建模和最小化。在存在水分子的情况下,对药物在聚合物分子附近的 MD 模拟(Gromacs-forcefield,300 ps,300 K)进行了模拟,并计算了它们之间的相互作用能(IE)。该能量是根据电偶极子、范德华力和氢键力进行评估的。IE 与我们之前关于药物摄取的研究数据之间存在良好的线性相关性(*) [R²=0.65,R²adj=0:65;R²pre=0:56,F 比为 30.25,P<0.001;Devarajan 等人,2005 年,J Biomed Nanotechnol 1:1-9]。在水作为溶剂环境中,聚合物纳米粒子(NP)的最大药物摄取量得以实现。NP 与水之间的亲水相互作用与药物摄取呈负相关。MD 模拟方法为开发基于聚合物的药物传递系统提供了对药物摄取的合理近似。