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首页> 外文期刊>Journal of Leukocyte Biology: An Official Publication of the Reticuloendothelial Society >Professional phagocytic granulocytes of the bony fish gilthead seabream display functional adaptation to testicular microenvironment.
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Professional phagocytic granulocytes of the bony fish gilthead seabream display functional adaptation to testicular microenvironment.

机译:骨鱼金头鲷的专业吞噬粒细胞显示出对睾丸微环境的功能适应性。

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摘要

It has been shown previously that professional phagocytic granulocytes are present in the testis of the gilthead seabream, a seasonal breeding teleost that offers an excellent model for studying the testicular regression process that occurs in seasonal testicular involution and sex change. It is unexpected that testicular granulocytes produce interleukin-1beta, a regulator for spermatogonia proliferation in mammals, but are not involved in the elimination of degenerative germ cells. Here, we show that phagocytosis and reactive oxygen intermediate (ROI) production were suppressed dramatically in testicular phagocytic granulocytes, compared with their level of activity in the head-kidney, the main hematopoietic organ in fish. Furthermore, testicular-conditioned media modulated migration, phagocytosis, and ROI production of head-kidney phagocytic granulocytes, and the addition of testicular cells impaired their ROI production capacity. Until now, monocytes/macrophages were believed to be the only innate immune cells able to develop into functional subsets, whereas neutrophils only infiltrate the tissues upon infection or inflammation. Our findings demonstrate, however, that fish professional phagocytic granulocytes also display functional adaptation to different microenvironments and strongly suggest a role for these cells in the reorganization of the testis during post-spawning.
机译:先前已经证明,在金头鲷的睾丸中存在专业的吞噬性粒细胞,季节性繁殖硬骨鱼为研究季节性睾丸退化和性别改变中发生的睾丸退化过程提供了极好的模型。出乎意料的是,睾丸粒细胞会产生白介素-1β(一种调节哺乳动物精原细胞增殖的调节剂),但并不参与消除变性生殖细胞。在这里,我们表明,与鱼类的主要造血器官头部肾脏的活性水平相比,睾丸吞噬性粒细胞的吞噬作用和活性氧中间(ROI)产生受到显着抑制。此外,睾丸条件培养基调节头肾吞噬粒细胞的迁移,吞噬作用和ROI产生,而睾丸细胞的添加会损害其ROI产生能力。迄今为止,人们认为单核细胞/巨噬细胞是唯一能够发展为功能性亚型的先天免疫细胞,而嗜中性粒细胞仅在感染或发炎时才渗透到组织中。然而,我们的发现表明,鱼类的专业吞噬粒细胞也显示出对不同微环境的功能适应性,并强烈暗示了这些细胞在产卵后在睾丸重组中的作用。

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