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[通过适应缺氧的周期性作用预防应激状态下正常杀伤细胞活性的降低]

[Prevention of the depression of normal killer activity in stress via adaptation to the periodic action of hypoxia].

作者信息

Sukhikh G T, Meerson F Z

出版信息

Biull Eksp Biol Med. 1985 Apr;99(4):458-9.

PMID:4039204
Abstract

It has been demonstrated that progressive adaptation of BALB/c mice for 28 days to periodic action of pressure chamber hypoxia prevents the stress-induced depression of normal killer activity. Moreover, preadaptation to hypoxia reverses the stress-provoked inhibition of DNA synthesis in the thymic and spleen cells.

摘要

已证明,将BALB/c小鼠在压力舱低氧环境下进行28天的渐进性适应性处理,可防止应激诱导的正常杀伤活性降低。此外,对低氧的预适应可逆转应激引起的胸腺和脾细胞DNA合成抑制。

相似文献

1
[Prevention of the depression of normal killer activity in stress via adaptation to the periodic action of hypoxia].[通过适应缺氧的周期性作用预防应激状态下正常杀伤细胞活性的降低]
Biull Eksp Biol Med. 1985 Apr;99(4):458-9.
2
[The effect of adaptation to stress exposures and to periodic hypoxia on the cardiomyocyte trigger activity of the papillary muscles in the rat].[应激暴露适应和周期性低氧对大鼠乳头肌心肌细胞触发活动的影响]
Biull Eksp Biol Med. 1991 Nov;112(11):456-9.
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[Interstrain differences in cellular glucocorticoid reception in mice and the degree of suppression of normal killer activity during immobilization stress].[小鼠细胞糖皮质激素受体的品系间差异以及固定应激期间正常杀伤活性的抑制程度]
Biull Eksp Biol Med. 1987 Mar;103(3):273-6.
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[Prevention of stress dyslipidemia by adapting animals to the periodic action of hypoxia].通过使动物适应缺氧的周期性作用预防应激性血脂异常
Biull Eksp Biol Med. 1986 Dec;102(12):681-3.
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[Adaptation to stress can enhance animal resistance to sublethal hypoxia to a greater extent than adaptation to hypoxia].
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[Spleen and thymus lymphoid tissue in hypoxia (a biometric study)].[缺氧状态下的脾脏和胸腺淋巴组织(一项生物统计学研究)]
Arkh Anat Gistol Embriol. 1984 Feb;86(2):81-5.
7
[A comparative analysis of the generalized activation of stress protein synthesis during adaptation to stress and hypoxia].
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[The antimutagenic effect of adaptation to stress].[适应应激的抗诱变作用]
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[Protective action of adaptation to high-altitude hypoxia in arrhythmia and cardiac fibrillation].[高原低氧适应对心律失常和心房颤动的保护作用]
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[Super-resistance to hypoxic hypoxia in adaptation to stress exposures: its possible mechanisms].
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