首页> 外文期刊>Journal of Molluscan Studies >STRUCTURE AND FUNCTION OF HAEMOCYTES IN TWO MARINE GASTROPODS, MEGATHURA CRENULATA AND APLTSIA CALIFORNIA
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STRUCTURE AND FUNCTION OF HAEMOCYTES IN TWO MARINE GASTROPODS, MEGATHURA CRENULATA AND APLTSIA CALIFORNIA

机译:两种海洋鱼类,猕猴和加利福尼亚APLTSIA中血细胞的结构和功能

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Aplysia californica is an important mollusc for neurobiological research and Megathura crenulata is becoming valuable as the source of keyhole limpet haemocyanin (KLH) which shows promise in treating cancer, allergy and immunosuppression. The cultureof these animals provides opportunities to assess their physiological responses to stress and disease. Molluscan haemocytes are known to be involved in a variety of physiological responses, yet the haemocytes of this opisthobranch and vetigastropod havenot been characterized. The purpose of this study is to describe the morphology of these cells and summarize their functions based on a suite of assays previously developed on other species of molluscs. Using morphology, differential centrifugation and staining reactions, we identify a single type of circulating haemocyte in the blood of both animals. All haemocytes lack granules and contain glycogen and vesicles that react as lysosomes. In A. californica, three to four wing-like lamellipodia extend from the ovoid cell body, whereas in M. crenulata haemocytes are simple ovoid cells. The haemocytes are actively phagocytic and rates of phagocytosis are higher when the assays are performed in the presence of plasma, relative to tests with washed cells. When haemocytes engulf yeast, peroxidase and superoxides are produced. Phenoloxidase activity was not detected. When blood is removed from these molluscs, the plasma does not clot and the haemocytes rapidly adhere to one another in suspension, or settle onsubstrates, migrate and form nodules. Cell spreading and aggregation involves microfilaments and micro-tubules, and can be inhibited by EDTA, cytochalasin B, caffeine and, to a lesser extent, RGD and colchicine. All cells show immunoreactivity against apolyclonal antibody to AGTH which is consistent with previous studies suggesting molluscan haemocytes contain molecules similar to those involved with vertebrate stress responses. These results should be useful in future studies evaluating the physiological status of these animals in the wild and in culture.
机译:加州海螺是神经生物学研究的重要软体动物,海蓝藻作为匙孔hole血蓝蛋白(KLH)的来源正变得有价值,它在治疗癌症,过敏和免疫抑制方面显示出前景。这些动物的培养提供了评估其对压力和疾病的生理反应的机会。已知软体动物的血细胞参与多种生理反应,但尚未鉴定该阿斯巴科和维氏小脚鸟的血细胞。这项研究的目的是描述这些细胞的形态,并根据先前在其他种类的软体动物上开发的一系列检测方法,总结其功能。使用形态学,差异离心和染色反应,我们确定了两种动物血液中循环血细胞的单一类型。所有的血细胞均缺乏颗粒,并含有糖原和作为溶酶体反应的囊泡。在加州农杆菌中,三至四个翼状的条状脂膜从卵形细胞体延伸,而在蓝藻中,血细胞是简单的卵形细胞。相对于用洗涤过的细胞进行测试,当在血浆存在下进行测定时,血细胞活跃吞噬,吞噬率更高。当血细胞吞噬酵母时,会产生过氧化物酶和超氧化物。未检测到酚氧化酶活性。当从这些软体动物中移出血液时,血浆不会凝结,并且血细胞会以悬浮状态迅速彼此粘附,或者沉降在基质上,迁移并形成结节。细胞的扩散和聚集涉及微丝和微管,并且可以被EDTA,细胞松弛素B,咖啡因以及较小程度的RGD和秋水仙碱抑制。所有细胞均显示出针对AGTH的多克隆抗体的免疫反应性,这与以前的研究一致,表明软体动物血细胞含有与脊椎动物应激反应相关的分子。这些结果对于将来评估这些动物在野外和文化中的生理状况将是有用的。

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