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首页> 外文期刊>Journal of biomedical materials research, Part A >Novel self-gelling injectable hydrogel/alpha-tricalcium phosphate composites for bone regeneration: Physiochemical and microcomputer tomographical characterization
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Novel self-gelling injectable hydrogel/alpha-tricalcium phosphate composites for bone regeneration: Physiochemical and microcomputer tomographical characterization

机译:用于骨再生的新型自凝胶可注射水凝胶/α-三钙复合材料:物理化学和微机折叠性表征

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Mineralized hydrogels are increasingly gaining attention as biomaterials for bone regeneration. The most common mineralization strategy has been addition of preformed inorganic particles during hydrogel formation. This maintains injectability. One common form of bone cement is formed by mixing particles of the highly reactive calcium phosphate alpha-tricalcium phosphate (-TCP) with water to form hydroxyapatite (HA). The calcium ions released during this reaction can be exploited to crosslink anionic, calcium-binding polymers such as the polysaccharide gellan gum (GG) to induce hydrogel formation. In this study, three different amounts of -TCP particles were added to GG polymer solution to generate novel, injectable hydrogel-inorganic composites. Distribution of the inorganic phase in the hydrogel was studied by high resolution microcomputer tomography (mu CT). Gelation occurred within 30 min. -TCP converted to HA. mu CT revealed inhomogeneous distribution of the inorganic phase in the composites. These results demonstrate the potential of the composites as alternatives to traditional -TCP bone cement and pave the way for incorporation of biologically active substances and in vitro and in vivo testing. (c) 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 106A: 822-828, 2018.
机译:矿化水凝胶越来越受到骨质再生生物材料的关注。在水凝胶形成期间,在水凝胶形成期间添加了最常见的矿化策略。这保持了可注射性。通过将高反应性钙磷酸钙α-三磷酸钙(-TCP)的颗粒与水混合以形成羟基磷灰石(HA)来形成一种常见的骨水泥。在该反应过程中释放的钙离子可以利用于交联阴离子,钙结合聚合物,例如多糖Gellan Gum(Gg)以诱导水凝胶形成。在该研究中,将三种不同量的-TCP颗粒加入到GG聚合物溶液中以产生新颖的注射水凝胶 - 无机复合材料。通过高分辨率微型断层扫描(MU CT)研究了水凝胶中无机相的分布。凝胶化发生在30分钟内。 -TCP转换为HA。 MU CT揭示了复合材料中无机相的不均匀分布。这些结果证明了复合材料的潜力作为传统-TCP骨水泥的替代品,并铺设了掺入生物活性物质和体外和体内测试的方法。 (c)2017年Wiley期刊,Inc。J生物保证金A部分:106A:822-828,2018。

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