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富铁酵母的研究进展 被引量:7
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作者 袁玉兰 乔传令 +1 位作者 郭雪娜 张博润 《微生物学杂志》 CAS CSCD 2005年第3期54-56,共3页
铁是生物有机体必需的矿物质营养元素。综述了富铁酵母的研究进展、吸铁转运机制及应用前景。
关键词 酵母 研究进展 铁转运机制 应用
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脑组织铁代谢与帕金森氏综合症
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作者 朱道立 《生物学教学》 北大核心 2004年第3期6-8,共3页
本文叙述了脑组织的铁分布和脑铁代谢蛋白的研究进展,讨论了脑组织铁转运机制与帕金森氏综合症等神经变性疾病之间的关系。
关键词 脑组织 代谢 帕金森氏综合症 铁转运机制
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Construction of a Caco-2/EAhy926 cell tandem compound model and its application in mechanism study of nanoparticle transcytosis
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作者 AnPu Yang Bei Wei +6 位作者 Jiafang Song Xiangfu Guo Yuxi Cheng Bing He Hua Zhang Xueqing Wang Qiang Zhang 《Journal of Chinese Pharmaceutical Sciences》 CAS CSCD 2018年第7期478-489,共12页
Based on the physiological structure of the intestine, a Caco-2/EAhy926 tandem compound model was constructed in order to simulate the intestinal-vascular barrier. This model was applied in the study of transcytosis o... Based on the physiological structure of the intestine, a Caco-2/EAhy926 tandem compound model was constructed in order to simulate the intestinal-vascular barrier. This model was applied in the study of transcytosis of nanoparticles, and it was compared with the traditional intestinal cell model in the whole study. Briefly, Fe3O4 nanoparticles with a size about 30 nm were used as model nanoparticles, which remained steady during transcytosis. The nanoparticles hardly had cytotoxicity to Caco-2 cells and EAhy926 cells within the incubation concentrations. The cell tandem model was established by connecting upper Caco-2 monolayer and lower EAhy926 monolayer. Based on the FD4 permeability or TEER, all cell models remained integrity within certain period of culture time. The expression of Claudin-4 or VE Cadherin demonstrated the presence of tight junctions. The intact morphology of microfilament F-actin indicated the favorable intracellular connection. It was found that the two-layer cell tandem model created a bigger barrier for the transcytosis of FD4 than Caco-2 and EAhy926 monolayer models, and the translocation of Fe3O4 nanoparticles showed a similar pattern. Interestingly, we found that the main barrier of tandem model for nanoparticles was caused by the upper Caco-2 cell monolayer, while the lower layer of EAhy926 monolayer remained high permeability. Generally, the cell tandem compound model established here enabled us to evaluate the impact of both intestinal epithelial and endothelial layer on transcytosis, and it might provide a novel approach to study bio-nano interaction in the intestine. 展开更多
关键词 Caco-2 cells EAhy926 cells Tandem cell model Fe3O4 nanoparticles Trans-membrane Transport mechanism
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