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Encapsulation of biomaterials in porous glass-like matrices prepared via an aqueous colloidal sol-gel process

机译:通过水性胶体溶胶-凝胶法制备的多孔玻璃状基质中的生物材料封装

摘要

The present invention provides a process for the encapsulation of biologically important proteins into transparent, porous silica matrices by an alcohol-free, aqueous, colloidal sol-gel process, and to the biological materials encapsulated thereby. The process is exemplified by studies involving encapsulated cytochrome c, catalase, myoglobin, and hemoglobin, although non-proteinaceous biomaterials, such as active DNA or RNA fragments, cells or even tissues, may also be encapsulated in accordance with the present methods. Conformation, and hence activity of the biomaterial, is successfully retained after encapsulation as demonstrated by optical characterization of the molecules, even after long-term storage. The retained conformation of the biomaterial is strongly correlated to both the rate of gelation and the subsequent drying speed of the encapsulatng matrix. Moreover, in accordance with this process, gelation is accelerated by the use of a higher colloidal solid concentration and a lower synthesis pH than conventional methods, thereby enhancing structural stability and retained conformation of the biomaterials. Thus, the invention also provides a remarkable improvement in retaining the biological activity of the encapsulated biomaterial, as compared with those involved in conventional alkoxide-based processes. It further provides new methods for the quantitative and qualitative detection of test substances that are reactive to, or catalyzed by, the active, encapsulated biological materials.
机译:本发明提供了一种通过无醇,水性,胶体溶胶-凝胶法将生物学上重要的蛋白质包封到透明的多孔二氧化硅基质中的方法,以及将其包封的生物材料的方法。该过程通过涉及包封的细胞色素c,过氧化氢酶,肌红蛋白和血红蛋白的研究来举例说明,尽管非蛋白质生物材料,例如活性DNA或RNA片段,细胞或什至组织,也可以根据本方法进行包囊。通过分子的光学表征,甚至在长期保存之后,包封后也成功地保留了生物材料的构象以及因此的活性。生物材料的保留构象与凝胶化速率和随后封装基质的干燥速度都密切相关。此外,根据该方法,与常规方法相比,通过使用更高的胶体固体浓度和更低的合成pH来加速凝胶化,从而增强了生物材料的结构稳定性和保留的构象。因此,与传统的基于醇盐的方法中涉及的那些相比,本发明还在保留被包封的生物材料的生物学活性方面提供了显着的改进。它还提供了定量和定性检测对活性,包封的生物材料具有反应性或被其催化的测试物质的新方法。

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