首页> 外文期刊>Materials science & engineering >NMR studies of materials loaded into porous-wall hollow glass microspheres
【24h】

NMR studies of materials loaded into porous-wall hollow glass microspheres

机译:NMR研究装入多孔壁中空玻璃微球中的材料

获取原文
获取原文并翻译 | 示例
       

摘要

Porous-wall hollow glass microspheres (PWHGMs) are a form of glass materials that consist of 1-mu m-thick porous silica shells, 20-100 mu m in diameter, with a hollow cavity in the center. Utilizing the central cavity for material storage and the porous walls for controlled release is a unique combination that renders PWHGMs a superior vehicle for targeted drug delivery. In this study, loaded PWHGMs were characterized for the first time employing proton nuclear magnetic resonance (H-1 NMR) spectroscopy. A vacuum-based loading system was developed to load PWHGMs with various liquid materials followed by a washing procedure that uses solvents immiscible with the loaded materials. Immiscible binary model systems (chloroform/water, n-dodecane/water), as well as the hydrolysis reaction of isopropyl acetate, were investigated to obtain H-1 NMR evidence of loading materials into PWHGMs and their subsequent release to the surrounding solutions. The unique H-1 NMR peak shapes and relative integrals of the materials loaded in PWHGMs were distinguishable from those of the same materials in the surrounding solutions. Encounters of isopropyl acetate contained in the PWHGMs with acid protons from concentrated H2SO4 added to the surrounding solution become evident by the formation of the reaction product isopropanol. PWHGMs loaded with H2O and suspended in D2O were used to obtain quantitative release kinetics of H2O-loaded PWHGMs. A five-parameter double-exponential curve fit of experimental H-1 NMR signal intensities as a function of time indicated two release rates for H2O from H2O-loaded PWHGMs suspended in D2O with one time constant of 18-20 min and another one of 160 min. The two disparate release-rate time constants are consistent with loaded PWHGMs with breached and unbreached porous walls. The results demonstrate that H-1 NMR spectroscopy is particularly useful for investigating formulations and applications of PWHGMs in targeted drug delivery.
机译:多孔壁空心玻璃微球(PWHGM)是一种玻璃材料的形式,由1-mu m厚的多孔二氧化硅壳组成,直径为20-100μm,中心空腔。利用用于材料储存的中心腔和用于控制释放的多孔壁是一种独特的组合,使PWHGM成为针对靶向药物递送的优质载体。在该研究中,首次采用质子核磁共振(H-1 NMR)光谱的首次进行了负载的PWHGM。开发了一种真空的装载系统,以用各种液体材料负载PWNGM,然后使用溶剂与装载材料不混溶的洗涤程序。研究了不混溶的二元模型系统(氯仿/水,N-十二烷/水)以及乙酸异丙酯的水解反应,得到H-1 NMR证据,将材料加载到PWHGM中,并将其随后的释放到周围溶液中。在PWHGM中装载的唯一的H-1 NMR峰形状和相对积分在周围解决方案中的相同材料中的那些可区分。通过形成反应产物异丙醇的浓缩H 2 SO 4中包含来自浓浓溶液的酸质子的乙酸异丙醇含有酸的异丙醇。用H 2 O悬浮并悬浮在D2O中的PWHGM用于获得H2O加载的PWHGM的定量释放动力学。实验H-1 NMR信号强度的五参数双指数曲线适合作为时间的函数,从H2O负载的PWHGM中悬浮在D2O中的H2O中的两个释放速率,同时常数为18-20分钟,另一个中可以是160闵。两个不同的释放速率时间常数与具有突破和未串联的多孔壁的加载的PWHGM一致。结果表明,H-1 NMR光谱特别适用于研究靶向药物递送中PWNM的配方和应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号