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欧洲荆豆凝集素-麦醇溶蛋白纳米颗粒缀合物的制备及其与胃肠道黏液的相互作用。

Preparation of Ulex europaeus lectin-gliadin nanoparticle conjugates and their interaction with gastrointestinal mucus.

作者信息

Ezpeleta I, Arangoa M A, Irache J M, Stainmesse S, Chabenat C, Popineau Y, Orecchioni A M

机构信息

UFR de Médecine-Pharmacie, Université de Rouen, 22, Boulevard Gambetta, 76183, Rouen, France.

出版信息

Int J Pharm. 1999 Nov 25;191(1):25-32. doi: 10.1016/s0378-5173(99)00232-x.

Abstract

One approach to improve the bioavailability and efficiency of drugs consists of the association of a ligand (i.e. lectins), showing affinity for biological structures located on the mucosa surfaces, to nanoparticulate drug delivery systems. In this context, Ulex europaeus lectin-gliadin nanoparticle conjugates (UE-GNP) were prepared with the aim of evaluating their in vitro bioadhesive properties. The lectin was fixed by a covalent procedure to gliadin nanoparticles by a two-stage carbodiimide method. Typically, the amount of bound lectin was calculated to be approximately 15 microg lectin/mg nanoparticle, which represented a coupling efficiency of approximately 16% of the initial lectin concentration. In addition, the activity of these conjugates was tested with bovine submaxillary gland mucin (BSM) and the level of binding to this mucin was always much greater with UE-GNP than with controls (gliadin nanoparticles). However, the presence of 50 micromol fucose, which is the reported specific sugar for U. europaeus lectin, specifically inhibited the activity of these conjugates and, therefore, the UE-GNP binding to BSM was attenuated by 70%. These results clearly showed that the activity and specificity of U. europaeus lectin was preserved after covalent coupling to these biodegradable carriers.

摘要

一种提高药物生物利用度和效率的方法是将对位于粘膜表面的生物结构具有亲和力的配体(即凝集素)与纳米颗粒药物递送系统相结合。在此背景下,制备了欧洲荆豆凝集素-麦醇溶蛋白纳米颗粒缀合物(UE-GNP),旨在评估其体外生物粘附特性。通过两步碳二亚胺法,将凝集素通过共价程序固定在麦醇溶蛋白纳米颗粒上。通常,计算得出结合的凝集素量约为15微克凝集素/毫克纳米颗粒,这代表了约16%的初始凝集素浓度的偶联效率。此外,用牛下颌下腺粘蛋白(BSM)测试了这些缀合物的活性,并且UE-GNP与该粘蛋白的结合水平始终比对照(麦醇溶蛋白纳米颗粒)高得多。然而,50微摩尔岩藻糖(据报道是欧洲荆豆凝集素的特异性糖)的存在特异性地抑制了这些缀合物的活性,因此,UE-GNP与BSM的结合减弱了70%。这些结果清楚地表明,欧洲荆豆凝集素与这些可生物降解载体共价偶联后,其活性和特异性得以保留。

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