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The Screening of Genes Sensitive to Long-Term, Low-Level Microwave Exposure and Bioinformatic Analysis of Potential Correlations to Learning and Memory 被引量:2
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作者 ZHAO Ya li li ying xian +6 位作者 MA Hong Bo li Dong li Hai liang JIANG Rui KAN Guang Han YANG Zhen Zhong HUANG Zeng Xin 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2015年第8期558-570,共13页
Objective To gain a better understanding of gene expression changes in the brain following microwave exposure in mice. This study hopes to reveal mechanisms contributing to microwave-induced learning and memory dysfun... Objective To gain a better understanding of gene expression changes in the brain following microwave exposure in mice. This study hopes to reveal mechanisms contributing to microwave-induced learning and memory dysfunction. Methods Mice were exposed to whole body 2100 MHz microwaves with specific absorption rates (SARs) of 0.45 W/kg, 1.8 W/kg, and 3.6 W/kg for 1 hour daily for 8 weeks. Differentially expressing genes in the brains were screened using high-density oligonucleotide arrays, with genes showing more significant differences further confirmed by RT-PCR. Results The gene chip results demonstrated that 41 genes (0.45 W/kg group), 29 genes (1.8 W/kg group), and 219 genes (3.6 W/kg group) were differentially expressed. GO analysis revealed that these differentially expressed genes were primarily involved in metabolic processes, cellular metabolic processes, regulation of biological processes, macromolecular metabolic processes, biosynthetic processes, cellular protein metabolic processes, transport, developmental processes, cellular component organization, etc. KEGG pathway analysis showed that these genes are mainly involved in pathways related to ribosome, Alzheimer's disease, Parkinson's disease, long-term potentiation, Huntington's disease, and Neurotrophin signaling. Construction of a protein interaction network identified several important regulatory genes including synbindin (sbdn), Crystallin (CryaB), PPP1CA, Ywhaq, Psap, Psmb1, Pcbp2, etc., which play important roles in the processes of learning and memory. Conclusion Long-term, low-level microwave exposure may inhibit learning and memory by affecting protein and energy metabolic processes and signaling pathways relating to neurological functions or diseases. 展开更多
关键词 LONG-TERM Low-level MICROWAVE Gene chip Learning and memory
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长期航天飞行心血管保护:问题与挑战 被引量:8
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作者 邢文娟 邢长洋 +2 位作者 凌树宽 李英贤 高峰 《中国科学:生命科学》 CSCD 北大核心 2022年第2期190-203,共14页
我国即将运行的空间站要求航天员长期驻留太空,航天飞行引发的心血管功能及循环系统调控改变直接影响航天员的健康和工作效能,其中失重是最重要的环境因素.目前人们对短期航天飞行机体的生理变化及适应规律已有一定的经验,但对长期失重... 我国即将运行的空间站要求航天员长期驻留太空,航天飞行引发的心血管功能及循环系统调控改变直接影响航天员的健康和工作效能,其中失重是最重要的环境因素.目前人们对短期航天飞行机体的生理变化及适应规律已有一定的经验,但对长期失重所致的心血管变化规律、特征以及相关生理效应发生机制的认识还不够全面和深入,相应的心血管保护措施仍有待完善.阐明及解决上述问题是我国载人航天发展战略的迫切需求.本文综述了失重/模拟失重条件下机体心血管系统的变化、适应特征及相关机制的国内外研究进展,尤其是针对空间站长期微重力环境的心血管效应、现有心血管保护措施以及存在的问题与挑战进行了分析和讨论,希望为我国面向空间站任务长期航天飞行的心血管保护提供借鉴和新思路. 展开更多
关键词 长期航天飞行 失重 功能失调 重塑 心血管保护 对抗措施
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