Cadée J A, de Groot C J, Jiskoot W, den Otter W, Hennink W E
Faculty of Pharmacy, Department of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences, Utrecht University, P.O. Box 80 082, 3508 TB, Utrecht, The Netherlands.
J Control Release. 2002 Jan 17;78(1-3):1-13. doi: 10.1016/s0168-3659(01)00483-7.
In this study, the release of recombinant human interleukin-2 (rhIL-2) from methacrylated dextran (dex-MA) and (lactate-)hydroxyethyl methacrylated dextran (dex-(lactate-)HEMA) hydrogels with varying crosslink density was investigated. Hydrogels derived from dex-MA are stable under physiological conditions (pH 7 and 37 degrees C), whereas dex-HEMA and dex-lactate-HEMA hydrogels degrade due to the presence of hydrolytically sensitive esters in the crosslinks of the gels. The protein release profiles both the non-degradable and degradable dextran-based hydrogels showed that with increasing crosslink density of the gel, the release of rhIL-2 decreases. From dex-MA hydrogels with an initial water content above 70%, the rhIL-2 release followed Fickian diffusion, whereas from gels with an initial water content of 70% or lower the protein was fully entrapped in the hydrogel meshes. In contrast with non-degradable dex-MA hydrogels, degradable dex-lactate-HEMA gels with comparable network characteristics (degree of methacrylate substitution and initial water content) showed an almost zero-order, degradation controlled release of rhIL-2 in a time period of 5-15 days. This paper demonstrates that the release of rhIL-2 from non-degradable dex-MA and degradable dex-lactate-HEMA gels can be modulated by the crosslink density and/or the degradation characteristics of the hydrogel. Importantly, rhIL-2 was mainly released as monomer from the hydrogels and with good retention of its biological activity.
在本研究中,研究了不同交联密度的甲基丙烯酸化葡聚糖(dex-MA)和(乳酸-)甲基丙烯酸羟乙酯化葡聚糖(dex-(乳酸-)HEMA)水凝胶中重组人白细胞介素-2(rhIL-2)的释放情况。由dex-MA衍生的水凝胶在生理条件(pH 7和37℃)下稳定,而dex-HEMA和dex-乳酸-HEMA水凝胶由于凝胶交联中存在水解敏感酯而降解。不可降解和可降解的基于葡聚糖的水凝胶的蛋白质释放曲线均表明,随着凝胶交联密度的增加,rhIL-2的释放减少。对于初始含水量高于70%的dex-MA水凝胶,rhIL-2的释放遵循菲克扩散,而对于初始含水量为70%或更低的凝胶,蛋白质完全被困在水凝胶网孔中。与不可降解的dex-MA水凝胶相比,具有可比网络特性(甲基丙烯酸酯取代度和初始含水量)的可降解dex-乳酸-HEMA凝胶在5-15天的时间段内显示出几乎零级的、降解控制的rhIL-2释放。本文表明,rhIL-2从不可降解的dex-MA和可降解的dex-乳酸-HEMA凝胶中的释放可通过水凝胶的交联密度和/或降解特性来调节。重要的是,rhIL-2主要以单体形式从水凝胶中释放,并且其生物活性得到了良好保留。