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从蚯蚓背暗异唇蚓中无创获取的增殖体腔细胞的流式细胞术定量分析。

Flow cytometric quantification of proliferating coelomocytes non-invasively retrieved from the earthworm, Dendrobaena veneta.

作者信息

Homa Joanna, Bzowska Malgorzata, Klimek Malgorzata, Plytycz Barbara

机构信息

Department of Evolutionary Immunobiology, Institute of Zoology, Jagiellonian University, R. Ingardena 6, 30-060 Krakow, Poland.

出版信息

Dev Comp Immunol. 2008;32(1):9-14. doi: 10.1016/j.dci.2007.04.007. Epub 2007 May 21.

Abstract

Earthworms irritated naturally (e.g. by predators) or experimentally extrude coelomocyte-containing coelomic fluid through the dorsal pores of the body wall. In the present study, the earthworms, Dendrobaena veneta, experimentally depleted of free-floating coelomocytes by multiple electric shocks (1 min, 4.5 V) remained fully vital and coelomocyte depletion was followed by the extensive cell replenishment, which was more efficient in the case of amoebocytes than autofluorescent eleocytes/chloragocytes, quantified by flow cytometry. Immunohistochemical procedure with antibodies against human Ki-67 proliferation antigens revealed proliferating cells on cytospin preparations of coelomocytes extruded by electric shock. Quantification of proliferating cells in the suspension of extruded coelomocytes was performed by flow cytometry on FL-2 profiles of propidium iodide-stained samples; riboflavin-derived autofluorescence of eleocytes/chloragocytes was lost during detergent treatment. As expected, the percentage of coelomocytes proliferating in coelomic fluid was increased during restoration of coelomocyte number after experimental depletion. The method described here may be very useful for investigations of antigen-driven proliferation of earthworm coelomocytes.

摘要

蚯蚓在自然情况下(如受到捕食者攻击)或通过实验会从体壁的背孔挤出含有体腔细胞的体腔液。在本研究中,通过多次电击(1分钟,4.5伏)使实验用的杜氏蚓(Dendrobaena veneta)体内游离的体腔细胞耗尽后,它们仍完全存活,并且体腔细胞耗尽后会有大量细胞补充,通过流式细胞术定量分析发现,变形细胞的补充效率高于自发荧光的粒细胞/黄色细胞。用抗人Ki-67增殖抗原的抗体进行免疫组织化学检测,发现在电击挤出的体腔细胞的细胞涂片制备物上有增殖细胞。通过对碘化丙啶染色样品的FL-2图谱进行流式细胞术分析来定量电击挤出的体腔细胞悬液中的增殖细胞;粒细胞/黄色细胞的核黄素衍生自发荧光在去污剂处理过程中消失。正如预期的那样,在实验性耗尽后体腔细胞数量恢复期间,体腔液中增殖的体腔细胞百分比增加。这里描述的方法对于研究蚯蚓体腔细胞的抗原驱动增殖可能非常有用。

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