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首页> 外文期刊>Acta biomaterialia >Gelatin content governs hydration induced structural changes in silica-gelatin hybrid aerogels - Implications in drug delivery
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Gelatin content governs hydration induced structural changes in silica-gelatin hybrid aerogels - Implications in drug delivery

机译:明胶含量治理水合诱导的二氧化硅 - 明胶杂交气凝胶的结构变化 - 药物递送中的影响

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摘要

Silica-gelatin hybrid aerogels of varying gelatin content (from 4 wt.% to 24 wt.%) can be conveniently impregnated with hydrophobic active agents (e.g. ibuprofen, ketoprofen) in supercritical CO2 and used as drug delivery systems. Contrast variation neutron scattering (SANS) experiments show the molecular level hybridization of the silica and the gelatin components of the aerogel carriers. The active agents are amorphous, and homogeneously dispersed in these porous, hybrid matrices. Importantly, both fast and retarded drug release can be achieved with silica-gelatin hybrid aerogels, and the kinetics of drug release is governed by the gelatin content of the carrier. In this paper, for the first time, a molecular level explanation is given for the strong correlation between the composition and the functionality of a family of aerogel based drug delivery systems. Characterization of the wet aerogels by SANS and by NMR diffusiometry, cryoporometry and relaxometry revealed that the different hydration mechanisms of the aerogels are responsible for the broad spectrum of release kinetics. Low-gelatin (4-11 wt.%) aerogels retain their open-porous structure in water, thus rapid matrix erosion dictates fast drug release from these carriers. In contrast to this, wet aerogels of high gelatin content (18-24 wt.%) show well pronounced hydrogel-like characteristics, and a wide gradual transition zone forms in the solid-liquid interface. The extensive swelling of the high-gelatin hybrid backbone results in the collapse of the open porous structure, that limits mass transport towards the release medium, resulting in slower, diffusion controlled drug release.
机译:不同明胶含量(4重量%至24重量%)的二氧化硅 - 明胶杂化气凝胶可以方便地浸渍在超临界CO 2中的疏水活性剂(例如布洛芬,酮丙烯)并用作药物递送系统。对比度变化中子散射(SAN)实验表明二氧化硅和气凝胶载体的明胶组分的分子水平杂交。活性剂是无定形的,并且在这些多孔的杂交基质中均匀地分散在这些多孔杂交基质中。重要的是,通过二氧化硅 - 明胶杂交气凝胶可以实现快速和延迟的药物释放,并通过载体的明胶含量来控制药物释放的动力学。本文首次进行分子水平解释,用于组合物与基于气凝胶家族的药物递送系统系列之间的功能强的相关性。通过SAN和NMR扩散测定法表征湿气孔,低温测定法和弛豫测量表明,气凝胶的不同水化机制负责广谱释放动力学。低明胶(4-11重量%)Aerogels在水中保留了它们的开阔结构,因此快速的基质侵蚀决定了这些载体的快速药物释放。与此相反,高明胶含量的湿风凝胶(18-24重量%)显示出良好明显的水凝胶状特性,以及在固液界面中形成宽的渐变过渡区。高明胶杂交骨架的广泛肿胀导致开放多孔结构的塌陷,限制了朝向释放介质的质量输送,导致较慢,扩散控制的药物释放。

著录项

  • 来源
    《Acta biomaterialia》 |2020年第2020期|共15页
  • 作者单位

    Univ Debrecen Dept Phys Chem Egyet Ter 1 H-4032 Debrecen Hungary;

    Univ Debrecen Dept Inorgan &

    Analyt Chem Egyet Ter 1 H-4032 Debrecen Hungary;

    Univ Debrecen Dept Phys Chem Egyet Ter 1 H-4032 Debrecen Hungary;

    Univ Debrecen Dept Phys Chem Egyet Ter 1 H-4032 Debrecen Hungary;

    Univ Debrecen Dept Inorgan &

    Analyt Chem Egyet Ter 1 H-4032 Debrecen Hungary;

    Hungarian Acad Sci Ctr Energy Res Nucl Anal &

    Radiog Dept Konkoly Thege Miklos Ut 29-33 H-1121;

    Hungarian Acad Sci Wigner Res Ctr Phys Neutron Spect Dept Konkoly Thege Miklos Ut 29-33 H-1121;

    Univ Debrecen Dept Inorgan &

    Analyt Chem Egyet Ter 1 H-4032 Debrecen Hungary;

    Univ Debrecen Dept Inorgan &

    Analyt Chem Egyet Ter 1 H-4032 Debrecen Hungary;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;
  • 关键词

    Aerogel; Hydration; Mechanism of drug release; NMR spectroscopy; SANS;

    机译:气凝胶;水合;药物释放机制;NMR光谱;SAN;

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