肝再生
再生(生物学)
平衡
器官发生
形态发生
细胞生物学
生物
代偿性肥大
正弦波
肝小叶
肌肉肥大
内分泌学
免疫学
生物化学
基因
作者
Jun Ishikawa,Makoto Takeo,Ayako Iwadate,Junko Koya,Miho Kihira,Masamitsu Oshima,Yuki Suzuki,Kazushi Taniguchi,Ayaka Kobayashi,Takashi Tsuji
标识
DOI:10.1038/s42003-021-01936-2
摘要
Organogenesis and regeneration are fundamental for developmental progress and are associated with morphogenesis, size control and functional properties for whole-body homeostasis. The liver plays an essential role in maintaining homeostasis of the entire body through various functions, including metabolic functions, detoxification, and production of bile, via the three-dimensional spatial arrangement of hepatic lobules and has high regenerative capacity. The regeneration occurs as hypertrophy, which strictly controls the size and lobule structure. In this study, we established a three-dimensional sinusoidal network analysis method and determined valuable parameters after partial hepatectomy by comparison to the static phase of the liver. We found that mechanical homeostasis, which is crucial for organ morphogenesis and functions in various phenomena, plays essential roles in liver regeneration for both initiation and termination of liver regeneration, which is regulated by cytokine networks. Mechanical homeostasis plays critical roles in the initiation and termination of organogenesis, tissue repair and organ regeneration in coordination with cytokine networks.
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