五氯苯酚通过破坏体液免疫和扰乱体液-细胞串联来损害血蛤的抗菌能力。

Chemosphere Pub Date : 2024-09-01 Epub Date: 2024-08-31 DOI:10.1016/j.chemosphere.2024.143230
Weixia Zhang, Yu Tang, Yu Han, Dandan Tian, Yihan Yu, Yingying Yu, Weifeng Li, Wei Shi, Guangxu Liu
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摘要

由于过去的大量使用和持久性,五氯苯酚(PCP)残留物在环境中普遍存在,对各种生物(如无柄滤食双壳类动物)构成潜在威胁。虽然体液免疫及其与细胞免疫之间的相互影响对维持强大的抗菌能力至关重要,但人们对五氯苯酚对双壳类软体动物这些关键过程的影响知之甚少。本研究通过病原菌挑战和血浆抗菌能力测定来评估五氯苯酚对常见双壳类动物血蛤(Tegillarca granosa)免疫力的毒性影响。此外,还分析了五氯苯酚暴露对病原体识别、血细胞募集和病原体降解能力的影响。此外,还评估了暴露五氯苯酚后下游免疫相关信号通路的激活状态。所获得的数据表明,用符合环境实际水平的五氯苯酚处理 28 天后,血蛤在弧菌挑战下的存活率明显下降,血浆抗菌能力明显减弱。此外,五氯苯酚暴露还显著抑制了血浆中凝集素和肽聚糖识别蛋白(PGRPs)的水平以及血细胞中模式识别受体(PRRs)的表达。此外,随着免疫相关信号通路的下调,五氯苯酚暴露的血蛤血浆中的趋化因子(白细胞介素 8 (IL-8)、IL-17 和肿瘤坏死因子 α (TNF-α))也明显减少,血细胞的趋化活性显著降低。此外,与对照组相比,经五氯苯酚处理的血蛤血浆中抗菌活性物质溶菌酶(LZM)和抗菌肽(AMP)的含量明显降低。总之,本研究的结果表明,接触五氯苯酚可通过破坏体液免疫和扰乱体液-细胞间的串联作用,严重损害血蛤的抗菌能力。
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Pentachlorophenol impairs the antimicrobic capability of blood clam via undermining humoral immunity and disrupting humoral-cellular crosstalk.

Due to past massive usage and persistent nature, pentachlorophenol (PCP) residues are prevalent in environments, posing a potential threat to various organisms such as sessile filter-feeding bivalves. Although humoral immunity and its crosstalk with cellular one are crucial for the maintaining of robust antimicrobic capability, little is known about the impacts of PCP on these critical processes in bivalve mollusks. In this study, pathogenic bacterial challenge and plasma antimicrobic capability assays were carried out to assess the toxic effects of PCP on the immunity of a common bivalve species, blood clam (Tegillarca granosa). Moreover, the impacts of PCP-exposure on the capabilities of pathogen recognition, hemocyte recruitment, and pathogen degradation were analyzed as well. Furthermore, the activation status of downstream immune-related signalling pathways upon PCP exposure was also assessed. Data obtained illustrated that 28-day treatment with environmentally realistic levels of PCP resulted in evident declines in the survival rates of blood clam upon Vibrio challenge along with markedly weakened plasma antimicrobic capability. Additionally, the levels of lectin and peptidoglycan-recognition proteins (PGRPs) in plasma as well as the expression of pattern recognition receptors (PRRs) in hemocytes were found to be significantly inhibited by PCP-exposure. Moreover, along with the downregulation of immune-related signalling pathway, markedly fewer chemokines (interleukin 8 (IL-8), IL-17, and tumor necrosis factor α (TNF-α)) in plasma and significantly suppressed chemotactic activity of hemocytes were also observed in PCP-exposed blood clams. Furthermore, compared to that of the control, blood clams treated with PCP had markedly lower levels of antimicrobic active substances, lysozyme (LZM) and antimicrobial peptides (AMP), in their plasma. In general, the results of this study suggest that PCP exposure could significantly impair the antimicrobic capability of blood clam via undermining humoral immunity and disrupting humoral-cellular crosstalk.

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