Hypoxia suppresses glucose-induced increases in collective cell migration in vascular endothelial cell monolayers

被引:4
作者
Sone, Kazuki [1 ,2 ]
Sakamaki, Yuka [3 ]
Hirose, Satomi [1 ,2 ]
Inagaki, Mai [4 ]
Tachikawa, Masanori [4 ]
Yoshino, Daisuke [5 ]
Funamoto, Kenichi [1 ,2 ,6 ]
机构
[1] Tohoku Univ, Grad Sch Biomed Engn, 6-6-12 Aramaki Aza,Aoba Ku, Sendai, Miyagi 9808579, Japan
[2] Tohoku Univ, Inst Fluid Sci, 2-1-1 Katahira,Aoba Ku, Sendai, Miyagi 9808577, Japan
[3] Tokushima Univ, Grad Sch Pharmaceut Sci, 1-78-1 Sho Machi, Tokushima, Tokushima 7708505, Japan
[4] Tokushima Univ, Grad Sch Biomed Sci, 1-78-1 Sho Machi, Tokushima, Tokushima 7708505, Japan
[5] Tokyo Univ Agr & Technol, Inst Engn, 2-24-16 Naka Cho, Koganei, Tokyo 1848588, Japan
[6] Tohoku Univ, Grad Sch Engn, 6-6-1 Aramaki Aza Aoba,Aoba Ku, Sendai, Miyagi 9808597, Japan
基金
日本科学技术振兴机构;
关键词
Vascular endothelial cell; Cell migration; Glucose; Hypoxia; Microfluidic device; ELECTRON-TRANSPORT CHAIN; MICROFLUIDIC PLATFORM; ROS GENERATION; ANGIOGENESIS; MECHANISMS; INVASION; FORCES;
D O I
10.1038/s41598-024-55706-1
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Blood glucose levels fluctuate during daily life, and the oxygen concentration is low compared to the atmosphere. Vascular endothelial cells (ECs) maintain vascular homeostasis by sensing changes in glucose and oxygen concentrations, resulting in collective migration. However, the behaviors of ECs in response to high-glucose and hypoxic environments and the underlying mechanisms remain unclear. In this study, we investigated the collective migration of ECs simultaneously stimulated by changes in glucose and oxygen concentrations. Cell migration in EC monolayer formed inside the media channels of microfluidic devices was observed while varying the glucose and oxygen concentrations. The cell migration increased with increasing glucose concentration under normoxic condition but decreased under hypoxic condition, even in the presence of high glucose levels. In addition, inhibition of mitochondrial function reduced the cell migration regardless of glucose and oxygen concentrations. Thus, oxygen had a greater impact on cell migration than glucose, and aerobic energy production in mitochondria plays an important mechanistic role. These results provide new insights regarding vascular homeostasis relative to glucose and oxygen concentration changes.
引用
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页数:12
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