目的:探讨CFSE荧光负染法用于检测RAW264.7小鼠单核巨噬细胞白血病细胞吞噬超顺磁性氧化铁纳米粒子(super paramaganetic iron oxide nanoparticles,SPIO)的可行性及其荧光特征。方法:体外对RAW264.7细胞进行SPIO的标记,然后分别采用普...目的:探讨CFSE荧光负染法用于检测RAW264.7小鼠单核巨噬细胞白血病细胞吞噬超顺磁性氧化铁纳米粒子(super paramaganetic iron oxide nanoparticles,SPIO)的可行性及其荧光特征。方法:体外对RAW264.7细胞进行SPIO的标记,然后分别采用普鲁士蓝染色方法和CFSE荧光负染法检测RAW264.7细胞对SPIO的摄取情况;用台盼蓝染色法检测CFSE荧光负染细胞的活力;应用激光扫描共聚焦显微镜进行荧光负染法检测RAW264.7细胞对SPIO的摄取。结果:普鲁士蓝将RAW264.7细胞内吞噬的SPIO标记为醒目的蓝色,核固红将细胞核标记为红色,在荧光图像上表现为荧光负染区,呈筛孔状。CFSE荧光负染法与普鲁士蓝染色法的检测结果具有很好的对应性。RAW264.7细胞经过SPIO和CFSE双重标记后,对细胞活力的影响较小,死细胞比例较低。结论:CFSE荧光负染法可用于RAW264.7活细胞吞噬SPIO的检测,同普鲁士蓝染色法具有很好的对应性,两者的检测结果可相互印证。展开更多
Gd2O3∶Tb3+ luminescent nanoparticles were prepared by the thermal decomposition of the nanosized oxlate prepared in the reverse microemulsions based on triton X-100/n-hexyl alcohol, n-octane, and water. From TG-DTA, ...Gd2O3∶Tb3+ luminescent nanoparticles were prepared by the thermal decomposition of the nanosized oxlate prepared in the reverse microemulsions based on triton X-100/n-hexyl alcohol, n-octane, and water. From TG-DTA, XRD and FTIR analyses, the mechanism of thermal decomposition of the nanosized oxalate precursor is suggested as follows: Gd2(C2O4)3·10H2O → Gd2(C2O4)3 + 10H2O, Gd2(C2O4)3 → Gd2O2(CO3) + 3CO +2CO2, Gd2O2(CO3) → Gd2O3 + CO2. The kinetic parameters of thermal decomposition reaction-activation energy E of stage 2 and 3 are 194.6 kJ·mol-1, 110.9 kJ·mol-1, respectively, using Ozawa method. And the reaction order n is 2.9 and 0.43, respectively, according to the TG curves.展开更多
文摘目的:探讨CFSE荧光负染法用于检测RAW264.7小鼠单核巨噬细胞白血病细胞吞噬超顺磁性氧化铁纳米粒子(super paramaganetic iron oxide nanoparticles,SPIO)的可行性及其荧光特征。方法:体外对RAW264.7细胞进行SPIO的标记,然后分别采用普鲁士蓝染色方法和CFSE荧光负染法检测RAW264.7细胞对SPIO的摄取情况;用台盼蓝染色法检测CFSE荧光负染细胞的活力;应用激光扫描共聚焦显微镜进行荧光负染法检测RAW264.7细胞对SPIO的摄取。结果:普鲁士蓝将RAW264.7细胞内吞噬的SPIO标记为醒目的蓝色,核固红将细胞核标记为红色,在荧光图像上表现为荧光负染区,呈筛孔状。CFSE荧光负染法与普鲁士蓝染色法的检测结果具有很好的对应性。RAW264.7细胞经过SPIO和CFSE双重标记后,对细胞活力的影响较小,死细胞比例较低。结论:CFSE荧光负染法可用于RAW264.7活细胞吞噬SPIO的检测,同普鲁士蓝染色法具有很好的对应性,两者的检测结果可相互印证。
文摘Gd2O3∶Tb3+ luminescent nanoparticles were prepared by the thermal decomposition of the nanosized oxlate prepared in the reverse microemulsions based on triton X-100/n-hexyl alcohol, n-octane, and water. From TG-DTA, XRD and FTIR analyses, the mechanism of thermal decomposition of the nanosized oxalate precursor is suggested as follows: Gd2(C2O4)3·10H2O → Gd2(C2O4)3 + 10H2O, Gd2(C2O4)3 → Gd2O2(CO3) + 3CO +2CO2, Gd2O2(CO3) → Gd2O3 + CO2. The kinetic parameters of thermal decomposition reaction-activation energy E of stage 2 and 3 are 194.6 kJ·mol-1, 110.9 kJ·mol-1, respectively, using Ozawa method. And the reaction order n is 2.9 and 0.43, respectively, according to the TG curves.