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Control of morphology and structure of calcium carbonate crystals by heparin 被引量:3
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作者 LIU XinRong ZHU BaoQing +1 位作者 SHAO YingYa YANG XinLin 《Chinese Science Bulletin》 SCIE EI CAS 2010年第11期1107-1111,共5页
Growth control of calcium carbonate crystal by organic chemicals contributes an important part to its mineralizing mechanism and biomimetic preparation. The influence of heparin (HEP) on morphology and structure of ca... Growth control of calcium carbonate crystal by organic chemicals contributes an important part to its mineralizing mechanism and biomimetic preparation. The influence of heparin (HEP) on morphology and structure of calcium carbonate generated by CaCl2/Na2CO3 solution was studied by a scanning electron microscope, an X-ray diffraction machine, a Fourier transform infrared spectrophotometer and a fluorescent spectrophotometer. The results showed that the calcite formed in the absence of HEP, while the addition of HEP induced changes in the morphology and structure of calcium carbonate crystals. In the presence of 2.5 mg/mL HEP, calcium carbonate was stimulated to grow orientationally, forming a spherical vaterite with a diameter of 1.5 μm. By X-ray diffraction, the contents of vaterite were counted to be 57.43% and 64.9% in the presence of 5 mg/mL and 20 mg/mL HEP, respectively. The resulted CaCO3/HEP microspheres achieved an 80% efficiency for HEP encapsulation. These results may provide novel references for studying the mechanism of biomineralization and the synthesis of HEP-functionalized materials. 展开更多
关键词 碳酸钙晶体 生长控制 结构 形态 肝素 傅立叶变换红外光谱仪 扫描电子显微镜 高能物理
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肝素/碳酸钙微囊的制备及其药物缓释性能 被引量:3
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作者 刘新荣 黄先洲 +1 位作者 陈学宏 刘睿颖 《材料导报》 EI CAS CSCD 北大核心 2011年第22期29-31,34,共4页
以药物HEP为有机基质,在CaCl2、Na2CO3常温水溶液体系中制备碳酸钙微囊。分别采用SEM、流式细胞仪和紫外分光光度计等测试技术对微囊的形貌和结构进行了观察和表征。SEM结果表明,制备的HEP/CaCO3微囊平均直径为1.5μm,球形,分散性好;紫... 以药物HEP为有机基质,在CaCl2、Na2CO3常温水溶液体系中制备碳酸钙微囊。分别采用SEM、流式细胞仪和紫外分光光度计等测试技术对微囊的形貌和结构进行了观察和表征。SEM结果表明,制备的HEP/CaCO3微囊平均直径为1.5μm,球形,分散性好;紫外分光光度法检测表明,微囊具有较高的药物装载量,肝素的包封率为80%;药物体外释放实验表明,HEP/CaCO3微囊的缓释性能受pH值的影响,在pH=1的PBS溶液中有明显的释放作用,随着释放溶液中pH值的减小,微囊的缓释效果越明显。本实验方法操作简单,所制备的药物微囊装载量高,在药物控释领域具有潜在的应用价值。 展开更多
关键词 CaCO3晶体 肝素 微囊
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