微泡
外体
化学
转铁蛋白
细胞生物学
铁蛋白
血脑屏障
内皮干细胞
海西定
生物化学
跨细胞
细胞
内吞作用
生物
体外
免疫学
小RNA
内分泌学
炎症
中枢神经系统
基因
作者
Kondaiah Palsa,Stephanie L. Baringer,Ganesh Shenoy,Vladimir S. Spiegelman,Ian A. Simpson,James R. Connor
标识
DOI:10.1016/j.jbc.2022.102868
摘要
Fe activity in the exosome fraction in the basal chamber was significantly higher compared to the supernatant fraction. Furthermore, we determined that the release of endogenous Tf, FTH1, and exosome number is regulated by the iron concentration of the endothelial cells. Moreover, the release of exogenously added Tf or FTH1 to the basal side via exosomes was significantly higher when ECs were iron loaded compared to when they were iron deficient. The release of exosomes containing iron bound to Tf or FTH1 was independent of hepcidin regulation, indicating this mechanism by-passes a major iron regulatory pathway. A potent inhibitor of exosome formation, GW4869, reduced exosomes released from the ECs and also decreased the Tf- and FTH1-bound iron within the exosomes. Collectively, these results indicate that iron transport across the blood-brain barrier is mediated via the exosome pathway and is modified by the iron status of the ECs, providing evidence for a novel alternate mechanism of iron transport into the brain.
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