以低度交联的单分散三聚氰胺甲醛(M F)微球作为胶体模板,采用层层静电自组装技术,交替组装带正电的聚二烯丙基二甲基氯化铵(PDDA)和带负电的聚4-苯乙烯磺酸钠(PSS),得到具有核壳结构的复合微球,然后利用盐酸溶液将模板M F微球溶解,制得...以低度交联的单分散三聚氰胺甲醛(M F)微球作为胶体模板,采用层层静电自组装技术,交替组装带正电的聚二烯丙基二甲基氯化铵(PDDA)和带负电的聚4-苯乙烯磺酸钠(PSS),得到具有核壳结构的复合微球,然后利用盐酸溶液将模板M F微球溶解,制得均匀的空腔胶囊。在N aC l浓度为0.7 m o l/L,pH<3时,将抗癌药物盐酸多柔米星(DOX)和磁流体同时封装到聚电解质胶囊中,可得到含磁药物胶囊,磁性粒子分散在胶囊的壳层和空腔内。该含磁药物胶囊具有良好的磁响应性和药物缓释性。展开更多
Aim To investigate the NMR spectroscopy of amlodipine and risperidone.Methods 1D NMR and 2D NMR experimental techniques of gCOSY, gHSQC and gHMBC were wsed. Results Theassignments of the ~1H and ^(13) C NMR data for t...Aim To investigate the NMR spectroscopy of amlodipine and risperidone.Methods 1D NMR and 2D NMR experimental techniques of gCOSY, gHSQC and gHMBC were wsed. Results Theassignments of the ~1H and ^(13) C NMR data for the two drugs were performed and confirmed by theevidence of J_(HF) and J_(CF). Conclusion The structures of amlodipine and risperidone wereconfirmed by careful analysis of regular 1D and 2D NMR spectroscopy.展开更多
Fe3O4 magnetic nanoparticles were prepared by the aqueous co-precipitation of FeCl3-6H2O and FeCl2-4H2O with addition of ammonium hydroxide. The conditions for the preparation of Fe3O4 magnetic nanoparticles were opti...Fe3O4 magnetic nanoparticles were prepared by the aqueous co-precipitation of FeCl3-6H2O and FeCl2-4H2O with addition of ammonium hydroxide. The conditions for the preparation of Fe3O4 magnetic nanoparticles were optimized, and Fe3O4 magnetic nanoparticles obtained were characterized systematically by means of transmission electron microscope (TEM), dynamic laser scattering analyzer (DLS) and X-ray diffraction (XRD). The results revealed that the magnetic nanoparticles were cubic shaped and dispersive, with narrow size distribution and average diameter of 11.4 nm. It was found that the homogeneous variation of pH value in the solution via the control on the dropping rate of aqueous ammonia played a critical role in size distribution. The magnetic response of the product in the magnetic field was also analyzed and evaluated carefully. A 32.6 mT magnetic field which is produced by four ferromagnets was found to be sufficient to excite the dipole moments of 0.05 g Fe3O4 powder 2 cm far away from the ferromagnets. In conclusion, the Fe3O4 magnetic nanoparticles with excellent properties were competent for the magnetic carders of targeted-drug in future application.展开更多
文摘以低度交联的单分散三聚氰胺甲醛(M F)微球作为胶体模板,采用层层静电自组装技术,交替组装带正电的聚二烯丙基二甲基氯化铵(PDDA)和带负电的聚4-苯乙烯磺酸钠(PSS),得到具有核壳结构的复合微球,然后利用盐酸溶液将模板M F微球溶解,制得均匀的空腔胶囊。在N aC l浓度为0.7 m o l/L,pH<3时,将抗癌药物盐酸多柔米星(DOX)和磁流体同时封装到聚电解质胶囊中,可得到含磁药物胶囊,磁性粒子分散在胶囊的壳层和空腔内。该含磁药物胶囊具有良好的磁响应性和药物缓释性。
文摘Aim To investigate the NMR spectroscopy of amlodipine and risperidone.Methods 1D NMR and 2D NMR experimental techniques of gCOSY, gHSQC and gHMBC were wsed. Results Theassignments of the ~1H and ^(13) C NMR data for the two drugs were performed and confirmed by theevidence of J_(HF) and J_(CF). Conclusion The structures of amlodipine and risperidone wereconfirmed by careful analysis of regular 1D and 2D NMR spectroscopy.
基金the Technology Project of Jiangxi Provincial Education DepartmentJiangxi Provincial Science Department
文摘Fe3O4 magnetic nanoparticles were prepared by the aqueous co-precipitation of FeCl3-6H2O and FeCl2-4H2O with addition of ammonium hydroxide. The conditions for the preparation of Fe3O4 magnetic nanoparticles were optimized, and Fe3O4 magnetic nanoparticles obtained were characterized systematically by means of transmission electron microscope (TEM), dynamic laser scattering analyzer (DLS) and X-ray diffraction (XRD). The results revealed that the magnetic nanoparticles were cubic shaped and dispersive, with narrow size distribution and average diameter of 11.4 nm. It was found that the homogeneous variation of pH value in the solution via the control on the dropping rate of aqueous ammonia played a critical role in size distribution. The magnetic response of the product in the magnetic field was also analyzed and evaluated carefully. A 32.6 mT magnetic field which is produced by four ferromagnets was found to be sufficient to excite the dipole moments of 0.05 g Fe3O4 powder 2 cm far away from the ferromagnets. In conclusion, the Fe3O4 magnetic nanoparticles with excellent properties were competent for the magnetic carders of targeted-drug in future application.