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多孔明胶水凝胶:1. 低温形成与结构分析。

Porous gelatin hydrogels: 1. Cryogenic formation and structure analysis.

作者信息

Vlierberghe Sandra Van, Cnudde Veerle, Dubruel Peter, Masschaele Bert, Cosijns An, Paepe Ilse De, Jacobs Patric J S, Hoorebeke Luc Van, Remon Jean Paul, Schacht Etienne

机构信息

Polymer Chemistry and Biomaterials Research Group, Ghent University, Krijgslaan 281, Building S4 Bis, B-9000 Ghent, Belgium.

出版信息

Biomacromolecules. 2007 Feb;8(2):331-7. doi: 10.1021/bm060684o.

Abstract

In the present work, porous gelatin scaffolds were prepared by cryogenic treatment of a chemically cross-linked gelatin hydrogel, followed by removal of the ice crystals formed through lyophilization. This technique often leads to porous gels with a less porous skin. A simple method has been developed to solve this problem. The present study demonstrates that the hydrogel pore size decreased with an increasing gelatin concentration and with an increasing cooling rate of the gelatin hydrogel. Variation of the cryogenic parameters applied also enabled us to develop scaffolds with different pore morphologies (spherical versus transversal channel-like pores). In our opinion, this is the first paper in which temperature gradients during controlled cryogenic treatment were applied to induce a pore size gradient in gelatin hydrogels. With a newly designed cryo-unit, temperature gradients of 10 and 30 degrees C were implemented during the freezing step, resulting in scaffolds with average pore diameters of, respectively, +/-116 and +/-330 microm. In both cases, the porosity and pore size decreased gradually through the scaffolds. Pore size and structure analysis of the matrices was accomplished through a combination of microcomputed tomography using different software packages (microCTanalySIS and Octopus), scanning electron microscopy analysis, and helium pycnometry.

摘要

在本研究中,通过对化学交联的明胶水凝胶进行低温处理,随后通过冻干去除形成的冰晶来制备多孔明胶支架。该技术通常会导致形成具有较少孔隙表层的多孔凝胶。已开发出一种简单方法来解决此问题。本研究表明,水凝胶孔径随明胶浓度的增加以及明胶水凝胶冷却速率的增加而减小。所应用的低温参数的变化还使我们能够开发出具有不同孔形态(球形孔与横向通道状孔)的支架。我们认为,这是第一篇在可控低温处理过程中应用温度梯度来诱导明胶水凝胶中孔径梯度的论文。使用新设计的低温装置,在冷冻步骤中实现了10℃和30℃的温度梯度,分别得到平均孔径为±116微米和±330微米的支架。在这两种情况下,支架的孔隙率和孔径均逐渐减小。通过使用不同软件包(microCTanalySIS和Octopus)的微型计算机断层扫描、扫描电子显微镜分析和氦比重瓶法相结合,完成了对基质的孔径和结构分析。

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