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首页> 外文期刊>The Italian Journal of Zoology >Morphological and structural characterization of haemocytes of Oncomelania hupensis (Gastropoda: Pomatiopsidae)
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Morphological and structural characterization of haemocytes of Oncomelania hupensis (Gastropoda: Pomatiopsidae)

机译:钉螺(Gastropoda:Pomatiopsidae)血细胞的形态和结构特征

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摘要

Oncomelania hupensis, an intermediate host of Schistosoma japonicum, remains an important public health problem. Haemocytes play an important role in an innate immunity defense system of O. hupensis and require more research. The present study provides information concerning the morphological and functional basis of defense cells of O. hupensis observed through optical microscopy and electron microscopy [scanning electron microscopy (SEM) and transmission electron microscopy (TEM)]. In this study, two types of haemocyte cell categories, type I (macrophage-like) and type II (lymphocyte-like), were distinguished according to shape, size, surface structure, internal structure, functions, structure of cytoplasm and the processes of spike-like filopodia.The results showed that type II cells generally were smaller than type I cells. In addition, only type I cells had the ability to adhere to sheep red blood cells (SRBC) after 60 minutes of incubation. The adherence to SRBC of type I cells represents adhesion activity of these cells to foreign particles or parasites. These results warrant further investigation to better understand the function of O. hupensis haemocytes. The present study confirms several previous findings concerning haemocytes of O. hupensis and opens the door for further research into the function and structure of O. hupensis haemocytes.
机译:日本血吸虫的中间宿主-钉螺(Oncomelania hupensis)仍然是重要的公共卫生问题。血细胞在湖豚草的天然免疫防御系统中起着重要作用,需要进一步研究。本研究提供了有关通过光学显微镜和电子显微镜[扫描电子显微镜(SEM)和透射电子显微镜(TEM)]观察到的湖O防御细胞的形态和功能基础的信息。在这项研究中,根据形状,大小,表面结构,内部结构,功能,细胞质结构和形成过程,区分了I型(巨噬细胞样)和II型(淋巴细胞样)两种类型的血细胞。结果显示,II型细胞通常小于I型细胞。此外,孵育60分钟后,只有I型细胞具有粘附绵羊红细胞(SRBC)的能力。 I型细胞对SRBC的粘附代表这些细胞对异物或寄生虫的粘附活性。这些结果值得进一步研究,以更好地了解湖北山楂血细胞的功能。目前的研究证实了有关蛇纹石ha血细胞的一些先前发现,并为进一步研究蛇纹石ha血细胞的功能和结构打开了大门。

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