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刍议医学检验中现代分子生物学技术的作用
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作者 藏立群 张向芝 《医学信息(医学与计算机应用)》 2014年第10期23-23,共1页
从近几年分子生物学方法的运用来看,以核酸生化作为基础的新技术成为了当前医学检验的最新方法,在医学检验领域上得到了广泛的应用。笔者在前人相关研究的基础上,结合自己的实际工作经验和认识,谈谈分子生物学中的几个相关技术,希望读... 从近几年分子生物学方法的运用来看,以核酸生化作为基础的新技术成为了当前医学检验的最新方法,在医学检验领域上得到了广泛的应用。笔者在前人相关研究的基础上,结合自己的实际工作经验和认识,谈谈分子生物学中的几个相关技术,希望读者可以加深对此的认识和了解。 展开更多
关键词 医学检验 分子生物传感器 分子蛋白组学 分子生物芯片技术
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Hepatitis C virus proteins 被引量:6
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作者 Jean Dubuisson 《World Journal of Gastroenterology》 SCIE CAS CSCD 2007年第17期2406-2415,共10页
Hepatitis C virus (HCV) encodes a single polyprotein, which is processed by cellular and viral proteases to generate 10 polypeptides. The HCV genome also contains an overlapping +1 reading frame that may lead to the s... Hepatitis C virus (HCV) encodes a single polyprotein, which is processed by cellular and viral proteases to generate 10 polypeptides. The HCV genome also contains an overlapping +1 reading frame that may lead to the synthesis of an additional protein. Until recently, studies of HCV have been hampered by the lack of a productive cell culture system. Since the identification of HCV genome approximately 17 years ago, structural, biochemical and biological information on HCV proteins has mainly been obtained with proteins produced by heterologous expression systems. In addition, some functional studies have also been confirmed with replicon systems or with retroviral particles pseudotyped with HCV envelope glycoproteins. The data that have accumulated on HCV proteins begin to provide a framework for understanding the molecular mechanisms involved in the major steps of HCV life cycle. Moreover, the knowledge accumulated on HCV proteins is also leading to the development of antiviral drugs among which some are showing promising results in early- phase clinical trials. This review summarizes the current knowledge on the functions and biochemical features of HCV proteins. 展开更多
关键词 Hepatitis C virus Viral hepatitis VIRALPROTEINS Molecular virology
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Targeting mitochondrial phenotypes for non-communicable diseases
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作者 Zhengtang Qi Shuzhe Ding 《Journal of Sport and Health Science》 SCIE 2016年第2期155-158,共4页
The concept that "Exercise is Medicine" has been challenged by the rising prevalence of non-communicable chronic diseases (NCDs). This is partly due to the fact that the underlying mechanisms of how exercise influ... The concept that "Exercise is Medicine" has been challenged by the rising prevalence of non-communicable chronic diseases (NCDs). This is partly due to the fact that the underlying mechanisms of how exercise influences energy homeostasis and counteracts high-fat diets and physical inactivity is complex and remains relatively poorly understood on a molecular level. In addition to genetic polymorphisms in humans that lead to gross variations in responsiveness to exercise, adaptation in mitochondrial networks is central to physical activity, inactivity, and diet. To harness the benefits of exercise for NCDs, much work still needs to be done to improve health effectively on a societal level such as developing personalized exercise interventions aided by advances in high-throughput genomics, proteomics, and metabolomics. We propose that understanding the mitochondrial phenotype according to the molecular information of genotypes, lifestyles, and exercise responsiveness in individuals will optimize exercise effects for prevention of NCDs. 展开更多
关键词 Energy metabolism EXERCISE MITOCHONDRIAL Non-communicable chronic diseases Physical activity Precision medicine
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Lifeomics leads the age of grand discoveries 被引量:8
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作者 HE FuChu 《Science China(Life Sciences)》 SCIE CAS 2013年第3期201-212,共12页
When our knowledge of a field accumulates to a certain level,we are bound to see the rise of one or more great scientists.They will make a series of grand discoveries/breakthroughs and push the discipline into an '... When our knowledge of a field accumulates to a certain level,we are bound to see the rise of one or more great scientists.They will make a series of grand discoveries/breakthroughs and push the discipline into an 'age of grand discoveries'.Mathematics,geography,physics and chemistry have all experienced their ages of grand discoveries;and in life sciences,the age of grand discoveries has appeared countless times since the 16th century.Thanks to the ever-changing development of molecular biology over the past 50 years,contemporary life science is once again approaching its breaking point and the trigger for this is most likely to be 'lifeomics'.At the end of the 20th century,genomics wrote out the 'script of life';proteomics decoded the script;and RNAomics,glycomics and metabolomics came into bloom.These 'omics',with their unique epistemology and methodology,quickly became the thrust of life sciences,pushing the discipline to new high.Lifeomics,which encompasses all omics,has taken shape and is now signalling the dawn of a new era,the age of grand discoveries. 展开更多
关键词 age of grand discoveries lifeomics life sciences
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