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Antistarvation Strategies of E. Sinensis: Regulatory Networks under Hepatopancreas Consumption

机译:E.Inensis的抗证化策略:肝脏消费下的监管网络

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Crustaceans have a more persistent starvation tolerance than mammals, birds, reptiles, and even fish. This study is aimed at assessing the survival strategy and regulatory mechanism of crustaceans in response to starvation through an animal model using Eriocheir sinensis. In the 42-day starvation experiment, the hepatopancreas was found to become the target organ, which was characterized by atrophy of the thin wall in the hepatic tubules and expansion of the lumen. During short-term starvation, E. sinensis activates lipid and glycogen metabolism in the hepatopancreas with lipid metabolism dominating. In lipid metabolism, there was a significant decline in triglyceride, whereas cholesterol did not change significantly. Meanwhile, the fatty acid metabolism pathway was inhibited, but autophagy increased in the hepatopancreas, which may be the selective pathway for the decomposition of intracellular substances. However, under long-term starvation, the stored energy in the hepatopancreas was depleted, and E. sinensis selects to consume hepatopancreatic cells and maintain energy metabolism through apoptosis, which was triggered by both the death receptor pathway and the mitochondrial pathway. In addition, cell proliferation was blocked to reduce unnecessary energy consumption.
机译:甲壳类动物具有比哺乳动物,鸟类,爬行动物甚至鱼类更持久的饥饿耐受性。本研究旨在评估甲壳类动物的存活策略和调节机制,以响应使用Eriocheir Sinensis通过动物模型的饥饿。在42天的饥饿实验中,发现肝癌成为目标器官,其特征在于肝小管中薄壁的萎缩和腔的膨胀。在短期饥饿期间,E.Inensis在肝脏中激活脂质和糖原代谢,脂质代谢占主导地位。在脂质代谢中,甘油三酯的显着下降,而胆固醇没有显着变化。同时,抑制脂肪酸代谢途径,但在肝癌中增加了自噬,这可能是用于分解细胞内物质的选择性途径。然而,在长期饥饿下,肝胆碱中的储存能量耗尽,E.Inensis选择消耗肝癌细胞并通过凋亡保持能量代谢,其被死亡受体途径和线粒体途径引发。此外,阻止细胞增殖以减少不必要的能量消耗。

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