期刊文献+

低氧耐受对甘肃鼢鼠心肌结构的影响 被引量:6

The effect of hypoxia tolerance on cardiac muscle structure of Gansu zokor(Myospalax cansus)
在线阅读 下载PDF
导出
摘要 对甘肃鼢鼠(myospalax cansus)和SD大鼠低氧耐受极限及低氧耐受过程中心肌组织显微和超微结构的变化进行比较研究.结果表明:在3.0%、3.5%、4.0%和4.5%的低氧浓度下,SD大鼠平均存活时间分别为0.28±0.07、0.48±0.08、4.87±0.4和5.60±0.76h;甘肃鼢鼠分别为1.03±0.14、2.04±0.27、10和10h以上;在4.0%氧浓度,低氧2和4h后,甘肃鼢鼠左心室心肌超微和显微结构损伤逐渐加重;6h后开始恢复,10h时已恢复正常;SD大鼠在低氧4h后心肌显微和超微结构都发生不可逆改变.由以上结果推测,4.0%的氧浓度接近甘肃鼢鼠正常生活的低氧耐受极限;在4.0%的低氧条件下,甘肃鼢鼠具有调动心肌代偿机制应对急性低氧环境的潜能. A comparative study was carried out to decide the hypoxia tolerance limit,microstructure and ultrastructure variations on cardiac muscle tissue under hypoxia process for Gansu zokor and SD rats.The results showed that: at 3.0%,3.5%,4.0% and 4.5% of the oxygen concentration,the average survival time for SD rats was 0.28±0.07,0.48±0.08,4.87±0.4 and 5.60±0.76 h,respectively;that for Gansu zokor was 1.03±0.14,2.04±0.27,10 and 10 h respectively;at the oxygen concentration of 4.0%,the injury of LV(left ventricle) microstructure and ultrastructure for Gansu zokor was gradually worsened after 2 and 4 h of hypoxia,then began to recover after 6 h and restored to the control group status at 10 h.However,for SD rats,both the cardiac muscle microstructure and ultrastructure of LV were irrevocably changed after 4 h of hypoxia(4.0%).Thus it can be inferred that the oxygen concentration of 4.0% was close to hypoxia tolerance limit in normal life for Gansu zokor.Under the oxygen concentration of 4.0%,the Gansu zokor had potential to mobilize mechanism of compensatory to cope with the acute hypoxia enviroment
出处 《陕西师范大学学报(自然科学版)》 CAS CSCD 北大核心 2012年第2期62-66,共5页 Journal of Shaanxi Normal University:Natural Science Edition
基金 国家自然科学基金资助项目(30670360)
关键词 甘肃鼢鼠 SD大鼠 低氧耐受极限 心肌显微及超微结构 YAN Ting-ting,FAN Wei-wei,HE Jian-ping(College of Life Science,Shaanxi Normal University,Xi′an 710062,Shaanxi,China)
  • 相关文献

参考文献10

  • 1Shams I, Avivi A, Eevo E. Oxygen and carbon dioxide fluctuations in burrows of subterranean blind mole rats indicate tolerance to hypoxic-hypercapnic stresses[J]. Comparative Biochemistry and Physiology, Part A, 2005, 142 : 376-382.
  • 2Nevo E. Mosaic evolution of subterranean mammals : regression , progression and global convergence [J].New York : Oxford University Press , 1999, 146: 312-325.
  • 3魏登邦,魏莲,张建梅,于红妍,王晓君.地下鼠对洞道环境适应机制的研究进展[J].青海大学学报(自然科学版),2007,25(5):54-57. 被引量:4
  • 4齐新章,王晓君,朱世海,饶鑫峰,魏莲,魏登邦.高原鼢鼠和高原鼠兔心脏对低氧环境的适应[J].生理学报,2008,60(3):348-354. 被引量:49
  • 5Arieli R, Nevo E. Hypoxic survival differs between two mole rat species (Spalax ehrenbergi) of humid and arid habitats[J]. Comparative Biochemistry and Physiology, Part A, 1991,100: 543-545.
  • 6Wei Dengbang, Wei Lian, Zhang Jianmei, et al.. Blood- gas properties of plateau zokor (Myospalax baileyi)[J]. Comparative Biochemistry and Physiology, Part A, 2006,145 (3) : 372-375.
  • 7吕国蔚,崔秀玉,于顺,李荛华,邵国.低氧耐受极限与低氧预适应[J].中国神经科学杂志,2004,20(5):388-393. 被引量:31
  • 8Avivi A, Resnick M B, Nevo E, et al.. Adaptive hypoxic tolerance in the subterranean mole rat Spalax ehrenbergi: the role of vascular endothelial growth factor[J].FEBS Lett, 1999,452: 133-140.
  • 9孙希武,叶益新,邓希贤.低氧适应对缺氧性心功能损伤的保护作用及其机制探讨[J].中国应用生理学杂志,1994,10(3):205-208. 被引量:7
  • 10Levitsky D, Dela B D, Schwartz K, et al. Ca^2+ ATPase and function of sarcoplasmic reticulum during cardiac hypertrophy [J]. American Journal of Physiology, 1991,261(4 Sup) :23-26.

二级参考文献81

  • 1张晓飞,吕国蔚.缺氧预适应鼠脑提取液对海马神经元ATP敏感性钾通道活动的影响[J].中华医学杂志,2002,82(2):108-110. 被引量:6
  • 2谢永宏,钱桂生,金发光,殷振杰,张箐,刘福玉.不同气体吸入对高原缺氧犬血流动力学及血气的影响[J].第四军医大学学报,2005,26(6):537-540. 被引量:3
  • 3Hochachka PW, Monge C. Evolution of human hypoxia tolerance physiology[ J]. Adv Exp Med Biol, 2000, 475: 25-43.
  • 4Lu GW, Liu HY. Downregulation of nitric oxide in the brain of mice during their hypoxic preconditioning [ J ]. J Appl Physiol,2001,91(3): 574-576.
  • 5Lu GW, Cui XY, Zhao BM. Alteration of oxygen consumption and energy metabolism during repetitive exposure of mice to hypoxia [J]. Neurochem Res, 1999, 24(5):625-628.
  • 6Lu GW. Hypoxia and its preconditioning[J]. Biol Signals Recept,1999, 8(4-5).
  • 7Mortola JP. Hypoxic hypometabolism in mammals[J]. NIPS,1993, 8: 79-82.
  • 8Hochachka PW, Rupert JL, Monge C. Adaptation and conservation of physiological systems in the evolution of human hypoxic tolerance [J]. Comp Biochem Physiol (Part A), 1999, 124(1) :1-17.
  • 9Hochachka PW, Buck LT, Doll CJ, et al. Unifying theory of hypoxia tolerance: Molecular/metabolic defence and rescue mechanisms for surving oxygen lack[ J ]. Proc Natl Acad Sci USA, 1996,93: 9493-9498.
  • 10Guillemin K, Krasnow MA. The hypoxic response: Huffing and HlFing[J]. Cell, 1997, 89: 9-12.

共引文献87

同被引文献75

引证文献6

二级引证文献13

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部