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MA Hong, LÜ Xuefei, DAI Rongji, LI Yujuan, ZHANG Yongqian, LI Xiaoqiong, WANG Rui, QING Hong, LI Qiang, SUI Li, ZHUANG Fengyuan, DENG Yulin. Space Life Science of China in 2015[J]. 空间科学学报, 2016, 36(5): 788-804. doi: 10.11728/cjss2016.05.788
引用本文: MA Hong, LÜ Xuefei, DAI Rongji, LI Yujuan, ZHANG Yongqian, LI Xiaoqiong, WANG Rui, QING Hong, LI Qiang, SUI Li, ZHUANG Fengyuan, DENG Yulin. Space Life Science of China in 2015[J]. 空间科学学报, 2016, 36(5): 788-804. doi: 10.11728/cjss2016.05.788
MA Hong, LÜ Xuefei, DAI Rongji, LI Yujuan, ZHANG Yongqian, LI Xiaoqiong, WANG Rui, QING Hong, LI Qiang, SUI Li, ZHUANG Fengyuan, DENG Yulin. Space Life Science of China in 2015[J]. Chinese Journal of Space Science, 2016, 36(5): 788-804. doi: 10.11728/cjss2016.05.788
Citation: MA Hong, LÜ Xuefei, DAI Rongji, LI Yujuan, ZHANG Yongqian, LI Xiaoqiong, WANG Rui, QING Hong, LI Qiang, SUI Li, ZHUANG Fengyuan, DENG Yulin. Space Life Science of China in 2015[J]. Chinese Journal of Space Science, 2016, 36(5): 788-804. doi: 10.11728/cjss2016.05.788

Space Life Science of China in 2015

doi: 10.11728/cjss2016.05.788
详细信息
  • 中图分类号: V524

Space Life Science of China in 2015

  • 摘要: With the human space exploration activities, space life science is an emerging interdisciplinary and it covers a wide range of research. Based on our country's manned space station and recoverable satellite science experimental platform, the development of space life science research is very important to acquire new knowledge or new innovation in technology, to give further services to the human space exploration activities, to improve the national economic and social development. Based on present situation, both theoretical and applied researches were continuously performed in 2015. Here, we review and summarize the researches on space life sciences which were contributed by Chinese scientists.

     

  • [1] ZHANG Yushi. Protective Effect of Drageny I on Nervous System and Pharmaco kinetic Study in Rats under the Simulated Microgravity Condition [D]. Beijing:Beijing Institute of Technology, 2011
    [2] CHEN Bo. Protective Effect of Drageny I on Cadiovascular System and Pharmacokinetic Study in Rats under the Simulated Weightlessness Condition [D]. Beijing:Beijing Institute of Technology, 2012
    [3] CHEN Bo, DENG Li, OU Wanlu, et al. Protective effects of dragon's blood on blood coagulation and NO/iNOS level in myocardium and serum of rats in simulated microgravity[J]. J. Beijing Inst. Technol., 2016, 25:152-158
    [4] LI Yujuan, ZHANG Yushi, CHEN Bo, et al. Pharmacokinetics of Loureirin B in the plasma of rats under simulated weightlessness [J]. Space Med. Med. Eng., 2014, 27:79-83
    [5] LI Yujuan, LI George Q, LI Yongzhi, et al. Development and application of an UHPLC-MS method for comparative pharmacokinetic study of phenolic components from dragon's blood in rats under simulated microgravity environment[J]. J. Pharm. Biomed. Anal., 2016, 121:91-98
    [6] LI Deng. Pharmacokinetic Study of Dragon's Blood in Rats under the Simulated Weightlessness Condition [D]. Beijing:Beijing Institute of Technology, 2014
    [7] LI Deng, ZHENG Zhifen, OU Wanlu, et al. Excretion study of pterostilbene in the urine and feces of normal and simulated weightless rats [J]. Space Med. Med. Eng., 2015, 28(2):89-93
    [8] LIN Gan. Pharmacokinetic Study of Promethazine and Ephedrine Combination in Rats under the Simulated Microgravity Condition [D]. Beijing:Beijing Institute of Technology, 2013
    [9] DECAROLIS N A, RIVERA P D, AHN F, et al. Fe particle exposure results in a long-lasting increase in a cellular index of genomic instability and transiently suppresses adult hippocampal neurogenesis [J]. Life Sci. Space Res., 2014, 2:70-79
    [10] RIVERA P D, SHIH H Y, LEBLANC J A, et al. Acute and fractionated exposure to high-LET (56) Fe HZEparticle radiation both result in similar long-term deficits in adult hippocampal neurogenesis [J]. Radiat. Res., 2013, 180:658-667
    [11] SHUKITT-HALE B, CASADESUS G, MCEWEN J J, et al. Spatial learning and memory deficits induced by exposure to iron-56-particle radiation [J]. Radiat. Res., 2000, 154:28-33
    [12] JOSEPH J A, HUNT W A, RABIN B M, et al. Possible "accelerated striatal aging" induced by 56Fe heavy-particle irradiation:implications for manned space flights [J]. Radiat. Res., 1992, 130:88-93
    [13] JOSEPH J A, HUNTW A, RABIN B M, et al. Deficits in the sensitivity of striatal muscarinic receptors induced by 56Fe heavy-particle irradiation:further "age-radiation" parallels [J]. Radiat. Res., 1993, 135:257-261
    [14] MANDA K, UENO M, ANZAI K. Memory impairment, oxidative damage and apoptosis induced by space radiation:ameliorative potential of alpha-lipoic acid [J]. Behav. Brain Res., 2008, 187:387-395
    [15] DENISOVA N A, SHUKITT-HALE B, RABIN B M, et al. Brain signaling and behavioral responses induced by exposure to (56) Fe-particle radiation [J]. Radiat. Res., 2002, 158:725-734
    [16] CHERRY J D, LIU B, FROST J L, et al. Galactic cosmic radiation leads to cognitive impairment and increased abeta plaque accumulation in a mouse model of Alzheimer's disease [J]. PLoS One, 2012, 7:e53275
    [17] YE F, ZHAO T, LIU X, et al. Long-term autophagy and Nrf 2 signaling in the hippocampi of developing mice after carbon ion exposure [J]. Sci. Rep., 2015, 5:18636
    [18] LEI R, ZHAOT, LIQ, et al. Carbon ion irradiated neural injury induced the peripheral immune effects in vitro or in vivo [J]. Int. J. Mol. Sci., 2015, 12:28 334-28 346
    [19] SUI L, ZHANG X L, KONG F Q, et al. Diagnostics and measurements of 7Li ion beam on the new terminal at HI-13 tandem accelerator for biological samples irradiation[J]. Nucl. Phys. Rev., 2015, 32:259-264
    [20] SUI L, WANG Y, WANG X, et al. Clustered DNA damage induced by protons radiation in plasmid DNA[J]. Chin. Sci. Bull., 2013, 58:3217-3223
    [21] SUI L, ZHANG X L, KONG F Q, et al. Clustered DNA damage induced by high LET radiation in normal cells, PTCOG'53, 2014
    [22] KONG F Q, MA N R, SUI L, et al. mRNA expression of Genes PIG3 and cell cycle changes of AHH-1 cells induced by protons [J]. Atom. Energy Sci. Technol., 2015, 49:955-960
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出版历程
  • 收稿日期:  2016-07-06
  • 刊出日期:  2016-09-15

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