Development of <i>in vitro</i> model of exosome transport in microfluidic gut-brain axis-on-a-chip

  • Seo, Gwang Myeong
  • Lee, Hongki
  • Kang, Yeon Jae
  • Kim, Donghyun
  • Sung, Jong Hwan
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초록

The gut communicates with the brain in a variety of ways known as the gut-brain axis (GBA), which is known to affect neurophysiological functions as well as neuronal disorders. Exosomes capable of passing through the blood-brain-barrier (BBB) have received attention as a mediator of gut-brain signaling and drug delivery vehicles. In conventional well plate-based experiments, it is difficult to observe the exosome movement in real time. Here, we developed a microfluidic-based GBA chip for co-culturing gut epithelial cells and neuronal cells and simultaneously observing exosome transport. The GBA-chip is aimed to mimic the in vivo situation of convective flow in blood vessels and convective and diffusive transport in the tissue interstitium. Here, fluorescence-labeled exosome was produced by transfection of HEK-293T cells with CD63-GFP plasmid. We observed in real time the secretion of CD63-GFP-exosomes by the transfected HEK-293T cells in the chip, and transport of the exosomes to neuronal cells and analyzed the dynamics of GFP-exosome movement. Our model is expected to enhance understanding of the roles of exosome in GBA.

키워드

EXTRACELLULAR VESICLESBIODISTRIBUTIONMIGRATIONPROTEINSBARRIER
제목
Development of <i>in vitro</i> model of exosome transport in microfluidic gut-brain axis-on-a-chip
저자
Seo, Gwang MyeongLee, HongkiKang, Yeon JaeKim, DonghyunSung, Jong Hwan
DOI
10.1039/d4lc00490f
발행일
2024-09-24
유형
Article
저널명
Lab on a Chip
24
19
페이지
4581 ~ 4593