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介孔镁钙硅对基于醇溶蛋白的生物复合材料的大介孔支架的矿化、降解、细胞反应和姜黄素释放的影响。

Influences of mesoporous magnesium calcium silicate on mineralization, degradability, cell responses, curcumin release from macro-mesoporous scaffolds of gliadin based biocomposites.

机构信息

Department of Trauma Orthopaedics, Changhai Hospital, Second Military Medical University, Shanghai, 200433, China.

Department of Orthopaedics, Zhongye Hospital, Shanghai, 200941, China.

出版信息

Sci Rep. 2018 Jan 9;8(1):174. doi: 10.1038/s41598-017-18660-9.

Abstract

Macro-mesoporous scaffolds based on wheat gliadin (WG)/mesoporous magnesium calcium silicate (m-MCS) biocomposites (WMC) were developed for bone tissue regeneration. The increasing amount of m-MCS significantly improved the mesoporosity and water absorption of WMC scaffolds while slightly decreased their compressive strength. With the increase of m-MCS content, the degradability of WMC scaffolds was obviously enhanced, and the decrease of pH value could be slow down after soaking in Tris-HCl solution for different time. Moreover, the apatite mineralization ability of the WMC scaffolds in simulated body fluid (SBF) was obviously improved with the increase of m-MCS content, indicating good bioactivity. The macro-mesoporous WMC scaffolds containing m-MCS significantly stimulated attachment, proliferation and differentiation of MC3T3-E1 cells, indicating cytocompatibility. The WMC scaffold containing 40 w% m-MCS (WMC40) possessed the highest porosity (including macroporosity and mesoporosity), which loaded the highest amount of curcumin (CU) as well as displayed the slow release of CU. The results suggested that the incorporation of m-MCS into WG produced biocomposite scaffolds with macro-mesoporosity, which significantly improved water absorption, degradability, bioactivity, cells responses and load/sustained release of curcumin.

摘要

基于小麦醇溶蛋白(WG)/介孔镁钙硅(m-MCS)生物复合材料(WMC)的大孔介孔支架被开发用于骨组织再生。m-MCS 的增加量显著提高了 WMC 支架的介孔率和吸水率,同时略微降低了其压缩强度。随着 m-MCS 含量的增加,WMC 支架的降解性明显增强,在 Tris-HCl 溶液中浸泡不同时间后,pH 值的下降可以减缓。此外,WMC 支架在模拟体液(SBF)中的磷灰石矿化能力随着 m-MCS 含量的增加而明显提高,表明具有良好的生物活性。含有 m-MCS 的大孔介孔 WMC 支架显著刺激 MC3T3-E1 细胞的附着、增殖和分化,表明其具有细胞相容性。含有 40wt% m-MCS(WMC40)的 WMC 支架具有最高的孔隙率(包括大孔率和介孔率),负载的姜黄素(CU)量最高,并且 CU 释放缓慢。结果表明,将 m-MCS 掺入 WG 中可制备具有大孔介孔的生物复合材料支架,显著提高了水吸收、降解性、生物活性、细胞反应以及姜黄素的负载和持续释放能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a84/5760662/7f00ec151fa9/41598_2017_18660_Fig1_HTML.jpg

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