Ertl B, Heigl F, Wirth M, Gabor F
Institute of Pharmaceutical Technology and Biopharmaceutics, The University of Vienna, Althanstrasse 14, A-1090 Vienna, Austria.
J Drug Target. 2000;8(3):173-84. doi: 10.3109/10611860008996863.
To take advantage of the cytoadhesive characteristics of Wheat germ agglutinin (WGA) for improved particulate drug delivery, the interaction between WGA-grafted poly(D,L-lactic-co-glycolic acid)-microspheres and Caco-2 monolayers was investigated using bovine serum albumin (BSA) or glycine coated microspheres as a control. Covalent immobilization of WGA by the carbodiimide/N-hydroxysuccinimide-method on 4 microm microspheres yielded a surface density of 9.67+/-1.21x10(6) molecules/particle, whereas 0.22+/-0.04x10(6) WGA-molecules were bound by physical adsorption. After storage for 21 days in HEPES-buffer and treatment of the particles with 5 M urea, 86% of covalently linked lectin was still attached to the particles. At 4 degrees C the Caco-2 binding rate of both, WGA- and BSA-modified particles increased with addition of increasing numbers of particles until saturation was reached at 38150+/-1740 (WGA) or 12066+/-1195 (BSA) microspheres bound/mm(2) Caco-2 monolayer. Inhibition of Caco-2 binding of WGA-functionalized microspheres by chitotriose indicated for specificity of the interaction. As observed by confocal laser scanning microscopy, the fluorescein-loading of the particles was accumulated intracellularly after incubation of Caco-2 monolayers with WGA-modified microspheres contrary to glycine-grafted microspheres. Additionally, in case of WGA-functionalized microspheres the amount of cell associated fluorescein was 200-fold higher than that of the free solution. In conclusion, WGA-modified microspheres are expected to enhance intestinal transport of incorporated drugs due to cytoadhesion provided by the lectin coating.
为利用麦胚凝集素(WGA)的细胞黏附特性改善微粒药物递送,以牛血清白蛋白(BSA)或甘氨酸包被的微球作为对照,研究了WGA接枝聚(D,L-乳酸-共-乙醇酸)微球与Caco-2单层细胞之间的相互作用。通过碳二亚胺/N-羟基琥珀酰亚胺法将WGA共价固定在4微米的微球上,表面密度为9.67±1.21x10(6)个分子/颗粒,而通过物理吸附结合了0.22±0.04x10(6)个WGA分子。在HEPES缓冲液中储存21天并用5M尿素处理颗粒后,86%的共价连接的凝集素仍附着在颗粒上。在4℃时,WGA和BSA修饰颗粒的Caco-2结合率随着颗粒数量的增加而增加,直到在38150±1740(WGA)或12066±1195(BSA)个微球/mm(2)Caco-2单层上达到饱和。壳三糖对WGA功能化微球的Caco-2结合的抑制表明了相互作用的特异性。如共聚焦激光扫描显微镜观察到的,与甘氨酸接枝微球相反,用WGA修饰的微球孵育Caco-2单层后,颗粒的荧光素负载在细胞内积累。此外,对于WGA功能化微球,细胞相关荧光素的量比游离溶液高200倍。总之,由于凝集素包被提供的细胞黏附作用,WGA修饰的微球有望增强包封药物的肠道转运。