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[在生物卫星“宇宙-782”上进行的哺乳动物细胞培养实验]

[Experiments with cultures of mammalian cells aboard the biosatellite "Cosmos-782"].

作者信息

Sushkov F V, Rudneva S V, Nadtocheĭ G A, Polikarpova S I, Portugalov V V

出版信息

Arkh Anat Gistol Embriol. 1977 Oct;73(10):28-39.

PMID:563224
Abstract

A considerable contribution to the investigation on biological importance of weightlessness was made by the experiments with animals in the artificial Earth satelites (AES) of "Cosmos" type. Cell cultures can serve as an ideal model to get a direct cell response to the effect of external factors. For the experiment in the AES "Cosmos-782", two thoroughly examined cell strains (L and 237) were chosen, which differed in a number of parameters (for example, duration of their mitotic cycles). Density of cell seeding and temperature of their cultivation in the laboratory experiment were calculated in such a way that the whole cycle of the culture development should take place under the conditions of weightlessness: the beginning of lag-phase--before launching and the stationary phase--after landing. The weightlessness was not shown to result in any genetical shifts revealed at chromosomal level. When cultivated after the flight, the cells do not change their mitotic cycle parameters, mitotic course and structural organization. The data obtained in the experiments with AES "Cosmos-368" and "Cosmos-782" (increase of mitotic index, some forms of mitotic pathology during the first terms of cultivation after the flight and enlargement of cellular nuclei) demonstrate the changes in the cell population which have formed under the conditions of weightlessness. Similar changes are observed while the cells propagate in the laboratory conditions. Indirect data on an earlier cell culture aging during the flight do not exclued the possibility that under weightlessness the rate of cell propagation could differ from that under gravitation.

摘要

在“宇宙”系列人造地球卫星(AES)上用动物进行的实验,对失重生物学重要性的研究做出了重大贡献。细胞培养可作为一种理想模型,用于直接获取细胞对外界因素作用的反应。在AES“宇宙 - 782”实验中,选择了两种经过充分研究的细胞系(L和237),它们在许多参数上存在差异(例如,它们有丝分裂周期的持续时间)。在实验室实验中,计算细胞接种密度和培养温度时,要确保培养物发育的整个周期应在失重条件下进行:延迟期开始——发射前,稳定期——着陆后。未发现失重会导致染色体水平上出现任何遗传变化。飞行后培养时,细胞不会改变其有丝分裂周期参数、有丝分裂过程和结构组织。在AES“宇宙 - 368”和“宇宙 - 782”实验中获得的数据(有丝分裂指数增加、飞行后培养初期出现某些形式的有丝分裂病理学以及细胞核增大)表明,在失重条件下形成的细胞群体发生了变化。在实验室条件下细胞繁殖时也观察到类似变化。关于飞行期间细胞培养提前老化的间接数据并不排除在失重条件下细胞繁殖速率可能与重力条件下不同的可能性。

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