TY - JOUR
T1 - Three-dimensional microfluidic cell culture device that generates chemical and oxygen gradients
AU - Sugiyama, Suguru
AU - Sudo, Hirai
AU - Tsukada, Kosuke
N1 - Publisher Copyright:
© 2024 The Japan Society of Applied Physics.
PY - 2024/3/1
Y1 - 2024/3/1
N2 - Gas gradients (e.g. oxygen and nitric oxide) and chemical gradients (e.g. cytokines) are determinants of biological functions and pathological mechanisms, but these have not been replicated in vitro. We developed a cell culture microfluidic device that comprises three layers (gas channel, fluid, and cell culture layer) and can generate stable chemical and oxygen gradients simultaneously or independently. The simulated chemical and oxygen gradients were compared with actual measurements based on fluorescence and phosphorescence. The chemical gradients were in good agreement, but the calculated oxygen gradients were estimated to be lower than the measured values. Endothelial cell network formation was inhibited according to the gradient of angiogenesis inhibitors, and tumor cells stained with hypoxia-sensitive dyes fluoresced according to the oxygen gradient. This novel device, which generates chemical and gas gradients, can have many potential applications in physiological and pathological models and in drug screening.
AB - Gas gradients (e.g. oxygen and nitric oxide) and chemical gradients (e.g. cytokines) are determinants of biological functions and pathological mechanisms, but these have not been replicated in vitro. We developed a cell culture microfluidic device that comprises three layers (gas channel, fluid, and cell culture layer) and can generate stable chemical and oxygen gradients simultaneously or independently. The simulated chemical and oxygen gradients were compared with actual measurements based on fluorescence and phosphorescence. The chemical gradients were in good agreement, but the calculated oxygen gradients were estimated to be lower than the measured values. Endothelial cell network formation was inhibited according to the gradient of angiogenesis inhibitors, and tumor cells stained with hypoxia-sensitive dyes fluoresced according to the oxygen gradient. This novel device, which generates chemical and gas gradients, can have many potential applications in physiological and pathological models and in drug screening.
KW - BioMEMS
KW - microfluidic device
KW - tumor microenvironment
KW - vascular network
UR - https://www.scopus.com/pages/publications/85185558107
UR - https://www.scopus.com/pages/publications/85185558107#tab=citedBy
U2 - 10.35848/1347-4065/ad23a8
DO - 10.35848/1347-4065/ad23a8
M3 - Article
AN - SCOPUS:85185558107
SN - 0021-4922
VL - 63
JO - Japanese journal of applied physics
JF - Japanese journal of applied physics
IS - 3
M1 - 03SP48
ER -