首页> 外文期刊>Developmental and Comparative Immunology: Ontogeny, Phylogeny, Aging: The Official Journal of the International Society of Developmental and Comparative Immunology >Contribution of circulating hemocytes to the regeneration of heavy ion beams (C-12(5+)) irradiated hematopoietic organs in the silkworm, Bombyx mori, through the way of phagocytosis of injured cells after invasion
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Contribution of circulating hemocytes to the regeneration of heavy ion beams (C-12(5+)) irradiated hematopoietic organs in the silkworm, Bombyx mori, through the way of phagocytosis of injured cells after invasion

机译:通过侵袭后受损细胞的吞噬作用,循环血细胞对家蚕Bombyx mori中重离子束(C-12(5+))辐照的造血器官再生的贡献

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摘要

Heavy ion beam irradiation has promising effects on tumor therapy. Our previous study using the domesticated silkworm, Bombyx mori, showed that this irradiation could seriously damage larval hematopoietic organs but they would regenerate later. In the in vitro irradiation, most hemocytes died when hematopoietic organs and wing discs connected with epidermis were directionally irradiated from epidermis to hematopoietic organ and then cultured so as to exclude circulating hemocytes. A few hemocytes had escaped irradiation according to extremely low hematopoiesis in vitro. Almost no hemocytes could incorporate BrdU at 60 h after irradiation, with which living and proliferating hemocytes are also labeled. In the absence of circulating hemocytes, the irradiation-escaped hemocytes in the organs were not enough for cleaning all dead cells because lots of small dead bodies remained in situ post-irradiation. After irradiating hematopoietic organs in larvae (in vivo irradiation), only a few apoptotic cells were found when given the same length of recovery time, and most hemocytes maintained normal morphology. Many hernocytes incorporated BrdU when tested at the same time as the in vitro irradiation but this number was lower than that measured for control organs. Circulating hemocytes, labeled by fluorescent microbeads through phagocytosis before irradiation, were found to have invaded the in vivo irradiated hematopoietic organs where they help the irradiation-escaped hemocytes to clear dead cells in the process of regeneration. Hematopoiesis of the regenerated hematopoietic organs did not fully recover to the level of the control organs according to the number of hernocytes produced in tissue culture. Some of the released hemocytes obviously underwent apoptosis, suggesting a far-reaching bystander effect of carbon ion beams irradiation on hemocytes inside. From these results, it is suggested that, together with irradiation-escaped hemocytes, the invaded circulating hemocytes took part in the regeneration of heavy ion beams irradiated hematopoietic organs through the way of phagocytosis of injured hemocytes in vivo. (c) 2005-Elsevier Ltd. All rights reserved.
机译:重离子束辐射对肿瘤治疗有希望的作用。我们以前使用家养的蚕Bombyx mori进行的研究表明,这种辐照会严重损害幼虫的造血器官,但它们稍后会再生。在体外照射中,当将与表皮连接的造血器官和翼盘从表皮定向照射到造血器官,然后进行培养以排除循环血细胞时,大多数血细胞死亡。根据极低的造血作用,一些血细胞逃脱了辐射。辐射后60 h几乎没有血细胞可以掺入BrdU,还标记了活血和增殖血细胞。在没有循环血细胞的情况下,器官中辐射逃逸的血细胞不足以清洗所有死细胞,因为许多小死体在照射后仍留在原位。照射幼虫的造血器官后(体内照射),在恢复时间相同的情况下,只有少数凋亡细胞被发现,大多数血细胞保持正常形态。与体外照射同时进行测试时,许多疝细胞都掺入了BrdU,但该数量低于对照器官的测量值。发现循环血细胞在辐照前通过吞噬作用被荧光微珠标记,已侵入体内辐照的造血器官,在再生过程中它们帮助逃避辐射的血细胞清除死细胞。再生的造血器官的造血作用没有完全恢复到对照器官的水平,这取决于组织培养物中产生的疝细胞的数量。一些释放的血细胞明显经历了凋亡,这表明碳离子束照射对内部血细胞的深远的旁观者效应。从这些结果表明,与逃逸的血细胞一起,侵入的循环血细胞通过体内吞噬受损血细胞的方式参与了重离子束辐照的造血器官的再生。 (c)2005-Elsevier Ltd.保留所有权利。

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