42.4
肝脏是脊椎动物的重要器官,在新陈代谢中发挥着重要作用。它还负责体内储存和重新分配体内的营养物质,如碳水化合物、脂肪和维生素。此外,肝脏还释放胆汁盐,这对于消化食物和消除体内有毒代谢物至关重要。
肝细胞
肝脏由四种主要类型的细胞组成:肝细胞、星状细胞、库普弗细胞和肝窦内皮细胞。肝细胞是大型的多面体形状…
在脊椎动物中,肝脏是唯一能够在损伤、感染或部分手术切除后再生的器官。
肝脏质量的大约80%由肝细胞构成——这些细胞负责大多数肝脏功能。除非受到刺激,否则这些细胞会停留在细胞周期的G0期。
损伤后,位于肝脏特殊毛细血管通道内衬的吞噬细胞——库普弗细胞,会释放 IL-6 和 TNF-α。这些细胞因子可诱导肝细胞在其细胞表面表达 c-MET 和 EGF 受体。
随后,局部的星状细胞和十二指肠释放肝细胞生长因子和表皮生长因子。
HGF 和EGF通过血液进入损伤部位,与已活化的肝细胞上的受体c-MET和EGFR结合。
因此,肝细胞越过G0/G1细胞周期检查点,开始在损伤部位增殖,以修复受损组织。
一旦器官大小和组织结构恢复到所需水平,星状细胞会释放 TGF-β 以抑制肝细胞增殖,从而终止再生过程。
View the full transcript and gain access to JoVE Core videos
Q1: Why is the liver unique among vertebrate organs in its ability to regenerate?
The liver is the only vertebrate organ capable of regenerating after injury, infection, or partial surgical removal. Approximately 80% of liver mass consists of hepatocytes—cells responsible for most liver functions. These cells remain dormant in the G0 phase of the cell cycle until stimulated by injury signals, allowing them to proliferate and restore organ mass and tissue architecture.
Q2: What role do Kupffer cells play in initiating liver regeneration?
Kupffer cells are specialized phagocytic cells lining liver capillaries that respond to injury by releasing cytokines IL-6 and TNF-α. These cytokines prime hepatocytes to express c-MET and EGF receptors on their cell surface, making them receptive to growth factors. This priming phase is essential for triggering hepatocyte proliferation and initiating the regeneration process.
Q3: How do growth factors trigger hepatocyte proliferation during liver regeneration?
Stellate cells and the duodenum release hepatocyte growth factor (HGF) and epidermal growth factor (EGF), which enter the injury site through the bloodstream. These growth factors bind to c-MET and EGFR receptors on primed hepatocytes, enabling them to overcome the G0/G1 cell cycle checkpoint and begin proliferating to heal damaged tissue.
Q4: What are the major cell types found in the liver and their functions?
The liver comprises four major cell types: hepatocytes store glycogen and vitamins; stellate cells store vitamin A; Kupffer cells are specialized macrophages that kill bacteria and remove aged red blood cells; and sinusoidal endothelial cells form blood vessel walls. Each cell type contributes distinct functions essential to liver metabolism and immune defense.
Q5: How does the body terminate liver regeneration once the organ is restored?
Once the liver reaches its necessary size and tissue architecture is restored, stellate cells release transforming growth factor-beta (TGF-β). This cytokine blocks hepatocyte proliferation and terminates the regeneration process, preventing excessive growth and maintaining organ homeostasis and proper liver function.
Q6: What additional hormonal factors support hepatocytes in passing the G0/G1 cell cycle checkpoint?
Beyond HGF and EGF, insulin from the pancreas, norepinephrine from the adrenal gland, and triiodothyronine from the thyroid gland facilitate hepatocytes in overcoming the G0/G1 checkpoint. These hormonal signals work synergistically with growth factors to enable hepatocytes to enter the S phase and proliferate during regeneration.
Q7: What are the three phases of liver regeneration and their key characteristics?
Liver regeneration involves three organized phases: the priming phase, where cytokines prime hepatocytes; the proliferative phase, where growth factors trigger hepatocyte proliferation and tissue restoration; and the termination phase, where TGF-β halts proliferation. This coordinated process ensures controlled regeneration and restoration of liver function.