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用于疏水性药物持续递送的自组装环糊精基水凝胶。

Self-assembling cyclodextrin based hydrogels for the sustained delivery of hydrophobic drugs.

作者信息

Daoud-Mahammed S, Grossiord J L, Bergua T, Amiel C, Couvreur P, Gref R

机构信息

UMR CNRS 8612, Faculté de Pharmacie, Université Paris XI, Châtenay-Malabry, France.

出版信息

J Biomed Mater Res A. 2008 Sep;86(3):736-48. doi: 10.1002/jbm.a.31674.

Abstract

This study aims to investigate the rheological properties of self-assembling gels containing cyclodextrins with potential application as injectable matrix for the sustained delivery of poorly soluble drugs. The ability of these gels to entrap two hydrophobic molecules, benzophenone (BZ) and tamoxifen (TM), and to allow their in vitro sustained release was evaluated. In view of their future pharmaceutical use, gels were sterilized by high hydrostatic pressures (HHP) and tested for their biocompatibility. The gels formed instantaneously at room temperature, by mixing the aqueous solutions of two polymers: a beta-cyclodextrin polymer (pbetaCD) and a hydrophobically modified dextran by grafting alkyl side chains (MD). MD-pbetaCD gels presented a viscoelastic behavior under low shear, characterized by constant values of the loss modulus G'' and the storage modulus G'. The most stable gels were obtained for a total polymer concentration C(p) of 6.6% and 7.5% (w/w), and a polymer ratio MD/pbetaCD of 50/50 and 33/67 (w/w). BZ and TM were successfully incorporated into MD-pbetaCD gels with loading efficiencies as high as 90%. In vitro, TM and BZ were released gradually from the gel matrix with less than 25% and 75% release, respectively, after 6 days incubation. HHP treatment did not modify the rheological characteristics of MD-pbetaCD gels. Moreover, the low toxicity of these gels after intramuscular administration in rabbits makes them promising injectable devices for local delivery of drugs.

摘要

本研究旨在研究含环糊精的自组装凝胶的流变学性质,该凝胶有潜力作为难溶性药物持续递送的可注射基质。评估了这些凝胶包封两种疏水分子二苯甲酮(BZ)和他莫昔芬(TM)的能力,以及使其体外持续释放的能力。鉴于其未来的药物用途,通过高静水压(HHP)对凝胶进行灭菌,并测试其生物相容性。通过混合两种聚合物的水溶液,在室温下瞬间形成凝胶:一种是β-环糊精聚合物(pβCD),另一种是通过接枝烷基侧链进行疏水改性的葡聚糖(MD)。MD-pβCD凝胶在低剪切力下呈现粘弹性行为,其特征在于损耗模量G''和储能模量G'为恒定值。对于总聚合物浓度C(p)为6.6%和7.5%(w/w),聚合物比例MD/pβCD为50/50和33/67(w/w)时,可获得最稳定的凝胶。BZ和TM成功地掺入MD-pβCD凝胶中,负载效率高达90%。在体外,孵育6天后,TM和BZ分别从凝胶基质中逐渐释放,释放量分别小于25%和75%。HHP处理未改变MD-pβCD凝胶的流变学特性。此外,这些凝胶在兔肌肉内给药后的低毒性使其成为有前景的局部给药可注射装置。

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