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肝癌死亡率显著差异地区肝癌病例HBV标记对比
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作者 余万霰 张永虹 +2 位作者 余奇 张宝初 吴磊 《现代预防医学》 CAS 北大核心 2008年第6期1004-1006,共3页
[目的]随着病毒环境基因组研究的进展,已发现HBV基因组序列存在明显地理差异,本研究对我国肝癌死亡率最高地区之一的江苏省启东市和肝癌死亡率一般性地区之一的江西省南昌市的生活原地肝癌病例的HBV感染免疫学标记进行对比分析,从HBV感... [目的]随着病毒环境基因组研究的进展,已发现HBV基因组序列存在明显地理差异,本研究对我国肝癌死亡率最高地区之一的江苏省启东市和肝癌死亡率一般性地区之一的江西省南昌市的生活原地肝癌病例的HBV感染免疫学标记进行对比分析,从HBV感染机制上探索我国肝癌死亡率具有显著差异的原因,为我国HBV并肝癌的遗传性环境基因组研究开拓思路。[方法]选择启东与南昌生活原地的肝癌病例,采集HBV感染免疫学标记(HBsAg、抗-HBs、HBeAg、抗-Hbe、抗-HBc)阳性数据,随机输入SPSS10、0软件程序,排列出感染模式,用卡方检验方法对两地区模式标记及单项标记进行对照性统计学分析。[结果]南昌高于启东的模式有:I型HBsAg(+)、HBeAg(+)抗-HBc(+),Ⅱ型HBsAg(+)、抗-HBe(+)、抗-HBc(+)及Ⅲ型HBsAg(+)、抗-HBc(+)。启东高于南昌的模式有:IV型HBsAg(+)、HBeAg(+),V型抗-HBe(+)抗-HBc(+)及VI型抗-HBc(+),均P﹤0.05。5项免疫标记单列进行比较统计,HBsAg(+)存在统计学差异(P﹤0.05),南昌高于启东。[结论]南昌与启东肝癌病例的HBV感染模式存在明显差异,关键是启东肝癌病例HBsAg表达率极低。 展开更多
关键词 肝癌 HBV 感染标记 自然环境差异 生活原地
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Mineral photoelectrons and their implications for the origin and early evolution of life on Earth 被引量:8
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作者 LU AnHuai WANG Xin +5 位作者 LI Yan DING HongRui WANG ChangQiu ZENG CuiPing HAO RuiXia YANG XiaoXue 《Science China Earth Sciences》 SCIE EI CAS 2014年第5期897-902,共6页
Energy is the key issue of all life activities.The energy source and energy yielding pathway are the key scientific issues of the origin and early evolution of life on Earth.Current researches indicate that the utiliz... Energy is the key issue of all life activities.The energy source and energy yielding pathway are the key scientific issues of the origin and early evolution of life on Earth.Current researches indicate that the utilization of solar energy in large scale by life was an important breaking point of the early evolution of life on Earth and afterwards life gradually developed and flourished.However,in the widespread biochemical electron transfer of life activities,it is still not clear whether the electron source is sun or how electrons originated from sun.For billions of years,the ubiquitous semiconducting minerals in epigeosphere absorb solar energy,forming photoelectrons and photoholes.In reductive and weak acidic environment of early Earth,when photoholes were easily scavenged by reducing matters,photoelectrons were separated.Photoelectrons could effectively reduce carbon dioxide to organic matters,possibly providing organic matter foundation for the origin of life.Photoelectrons participated in photoelectron transfer chains driven by potential difference and transfer into primitive cells to maintain metabolisms.Semiconducting minerals,by absorbing ultraviolet,also protected primitive cells from being damaged by ultraviolet in the origin of life.Due to the continuous photoelectrons generation in semiconducting minerals and utilization by primitive cells,photoelectrons from semiconducting minerals’photocatalysis played multiple roles in the origin of life on early Earth,such as organic synthesis,cell protection,and energy supply.This mechanism still plays important roles in modern Earth surface systems. 展开更多
关键词 natural semiconducting minerals PHOTOELECTRONS MICROORGANISMS energy source origin of life
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