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首页> 外文期刊>Journal of biomaterials science >Synergistic effect of silanol group and calcium ion in chitosan membrane on apatite forming ability in simulated body fluid
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Synergistic effect of silanol group and calcium ion in chitosan membrane on apatite forming ability in simulated body fluid

机译:壳聚糖膜中硅烷醇基与钙离子的协同作用对模拟体液中磷灰石形成能力的影响

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摘要

A chitosan membrane modified with silanol groups and calcium ions Oil its Surface and in its structure, respectively, was newly developed and evaluated for the potential application as a bioactive-guided bone-regeneration membrane. The chitosan membrane, which contained calcium nitrate tetrahydrate, wits prepared and further subjected to surface modification with 3-isocyanatopropyl triethoxysilane (IPTS) following hydrolysis with HCl Solution. As control, chitosan membranes which contained only calcium nitrate tetrahydrate and modified with only silanol groups were prepared. respectively. Three membranes were exposed to Simulated body fluid (SBF) for a period ranging from 3 h to 7 days. The SBF exposure led to the deposition of it layer of apatite crystals on the surface of the chitosan membrane modified with silanol groups and calcium ions, while those modified with only calcium ions or silanol groups did not show the apatite-forming ability. It implies that the silanol groups and calcium ion acted together in a synergistic fashion in the formation of apatite crystals the silanol groups and calcite ions acted as the nucleation sites and accelerator for the formation of apatite crystals, respectively. Therefore. this new chitosan membrane is likely to have a potential for the application as a bioactive guided bone regeneration membrane because of its apatite-forming ability in the SBF.
机译:分别开发了用硅烷醇基和钙离子修饰的壳聚糖膜,其表面和结构分别经过修饰和评估,可作为生物活性导向的骨再生膜。制备包含四水合硝酸钙的壳聚糖膜,并在用HCl溶液水解后,将其进一步用3-异氰酸根合丙基三乙氧基硅烷(IPTS)进行表面改性。作为对照,制备仅包含四水合硝酸钙并且仅用硅烷醇基改性的壳聚糖膜。分别。将三个膜暴露于模拟体液(SBF),时间为3小时至7天。 SBF暴露导致在用硅烷醇基和钙离子改性的壳聚糖膜表面上沉积了磷灰石晶体层,而仅用钙离子或硅烷醇基改性的壳聚糖膜没有显示出形成磷灰石的能力。这意味着硅醇基和钙离子在磷灰石晶体形成中起协同作用,硅醇基和方解石离子分别作为磷灰石晶体形成的成核位点和促进剂。因此。这种新的壳聚糖膜由于其在SBF中形成磷灰石的能力,可能具有作为生物活性导向骨再生膜的应用潜力。

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