首页> 外文期刊>Journal of Sol-Gel Science and Technology >Adjustably Bioresorbable Sol-Gel Derived SiO_2 Matrices for Release of Large Biologically Active Molecules
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Adjustably Bioresorbable Sol-Gel Derived SiO_2 Matrices for Release of Large Biologically Active Molecules

机译:可调节的可生物吸收的溶胶凝胶衍生的SiO_2基质,用于释放大型生物活性分子。

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摘要

Amorphous,sol-gel derived SiO_2 are known to biocompatible and bioresorbable materials.Bioresorbable materials have potential applications as implants or injectable matrices in the controlled delivery of biologically active agents in the living tissue.Bioresorbable matrices provide desirable properties,e.g.,extra removal operations that have to be done with biostable matrices are avoided and the release of large therapeutic molecules can be controlled by matrix degradation rather than by diffusion.New important groups of drugs,such as biotechnically-produced peptides and proteins,are potential to be encapsulated in bioresorbable SiO_2,because they are typically larger in size and their direct oral administration without protecting matrix is difficult due to digestion.The methods to achieve a wide range of SiO_2 bioresorption rates(from days to months)are introduced in this study.This is done by a "conventional" alkoxy-based sol-gel method at protein-friendly conditions by adjusting the precursor ratios,aging of the sol and by using different preparation methods(casting,spray-drying and freeze-drying).The prepared morphologies include implantable monolithic sticks and injectable microspheres.The importance of chemical structure is shown in comparison with the specific surface area and pore volume.
机译:非晶态的溶胶-凝胶衍生的SiO_2是生物相容性和生物可吸收性材料已知的。生物可吸收性材料作为植入物或可注射基质在生物活性剂在活体组织中的受控输送方面具有潜在的应用。必须避免使用生物稳定的基质,并且可以通过基质降解而非扩散来控制大型治疗性分子的释放。新的重要药物组,例如生物技术生产的肽和蛋白质,有可能被包封在可生物吸收的SiO_2中,因为它们通常较大,并且由于消化而难以在不保护基质的情况下直接口服给药。本研究介绍了实现多种SiO_2生物吸收速率(数天至数月)的方法。通过调节蛋白质的亲和力,在蛋白质友好的条件下“常规”基于烷氧基的溶胶-凝胶法前体比率,溶胶的老化以及使用不同的制备方法(浇铸,喷雾干燥和冷冻干燥)。所制备的形态包括可植入的整体棒和可注射的微球。化学结构的重要性与比表面积进行了比较和孔体积。

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