Departments of Neurobiology and Biomedical Engineering, University of Alabama at Birmingham, Birmingham, AL 35294, USA.
Department of Biomedical Engineering and Center for Biotechnology and Interdisciplinary Studies, Rensselaer Polytechnic Institute, Troy, NY 12180, USA.
Cells. 2020 Jul 1;9(7):1597. doi: 10.3390/cells9071597.
We used single-walled carbon nanotubes chemically functionalized with polyethylene glycol (SWCNT-PEG) to assess the effects of this nanomaterial on astrocytic endocytosis and exocytosis. We observed that the SWCNT-PEG do not affect the adenosine triphosphate (ATP)-evoked Ca elevations in astrocytes but significantly reduce the Ca-dependent glutamate release. There was a significant decrease in the endocytic load of the recycling dye during constitutive and ATP-evoked recycling. Furthermore, SWCNT-PEG hampered ATP-evoked exocytotic release of the loaded recycling dye. Thus, by functionally obstructing evoked vesicular recycling, SWCNT-PEG reduced glutamate release from astrocytes via regulated exocytosis. These effects implicate SWCNT-PEG as a modulator of Ca-dependent exocytosis in astrocytes downstream of Ca, likely at the level of vesicle fusion with/pinching off the plasma membrane.
我们使用化学功能化的单壁碳纳米管与聚乙二醇(SWCNT-PEG)来评估这种纳米材料对星形胶质细胞内吞作用和胞吐作用的影响。我们发现,SWCNT-PEG 不影响星形胶质细胞中三磷酸腺苷(ATP)诱发的 Ca 升高,但显著减少 Ca 依赖性谷氨酸释放。在组成型和 ATP 诱发的循环中,回收染料的内吞负荷显著降低。此外,SWCNT-PEG 阻碍了 ATP 诱发的负载回收染料的胞吐释放。因此,SWCNT-PEG 通过功能性地阻断诱发的囊泡循环,通过调节性胞吐作用减少星形胶质细胞中谷氨酸的释放。这些作用表明 SWCNT-PEG 是星形胶质细胞内 Ca 依赖性胞吐作用的调节剂,可能在囊泡与质膜融合/缢裂的水平上发挥作用。