College of Fisheries and Life Science, Shanghai Ocean University, Shanghai 201306, China.
Wuxi Biologics, 108 Meiliang Road, Mashan, Wuxi 214092, China.
Comp Biochem Physiol C Toxicol Pharmacol. 2023 Jan;263:109495. doi: 10.1016/j.cbpc.2022.109495. Epub 2022 Oct 22.
Chinese mitten crab (Eriocheir sinensis; H. Milne Edwards, 1853) is one of the important farmed crustaceans in China. Lipopolysaccharide (LPS), as a harmful factor, is prone to occur during the farming process of crabs. Aiming to test the hypothesis that damage degrees of the hepatopancreas in E. sinensis is correlated to LPS concentrations, in this study, E. sinensis were injected with LPS (50 μg/kg, and 500 μg/kg) and analyzed for the activity of antioxidant and immune-related enzymes, immune-related gene expression, and histopathological of hepatopancreas. As result, the hepatopancreas of E. sinensis immune-related genes, i.e., Dorsal, HSP90, Toll2, TLRs, Tube, and proPO, were significantly affected by LPS challenge. Among immune-related genes, Dorsal and proPO might play key roles in combating the LPS challenge. The activity of CAT gradually decreased with the increase of time, and the total antioxidant capacity was decreased after LPS challenge, indicating the inhibition of LPS on the antioxidant system. Interestingly, the decreasing trend of AKP and ACP activity suggested the immune system of crabs was affected by LPS challenge. The hepatopancreas section showed that the damage degree of hepatopancreas was different under the challenge of LPS with different concentrations, and the damage degree was proportional to the concentration. Our findings provide useful information for understanding the mechanism of hepatopancreas injury of E. sinensis induced by LPS infection.
中华绒螯蟹(Eriocheir sinensis;H. Milne Edwards,1853)是中国重要的养殖甲壳类动物之一。脂多糖(LPS)作为一种有害因素,在螃蟹养殖过程中容易发生。本研究旨在验证假设,即中华绒螯蟹肝胰腺的损伤程度与 LPS 浓度相关。为此,将 LPS(50μg/kg 和 500μg/kg)注射到中华绒螯蟹体内,并分析抗氧化和免疫相关酶的活性、免疫相关基因表达和肝胰腺的组织病理学变化。结果表明,LPS 刺激显著影响中华绒螯蟹免疫相关基因 Dorsal、HSP90、Toll2、TLRs、Tube 和 proPO 的表达。在免疫相关基因中,Dorsal 和 proPO 可能在对抗 LPS 刺激中发挥关键作用。CAT 的活性随着时间的推移逐渐降低,LPS 刺激后总抗氧化能力降低,表明 LPS 抑制了抗氧化系统。有趣的是,AKP 和 ACP 活性的降低趋势表明 LPS 刺激影响了螃蟹的免疫系统。肝胰腺切片显示,在 LPS 不同浓度的刺激下,肝胰腺的损伤程度不同,且损伤程度与浓度成正比。我们的研究结果为了解 LPS 感染诱导中华绒螯蟹肝胰腺损伤的机制提供了有用信息。