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THE EXPRESSION OF APOPTOSIS RELATED GENES IN THE PROCESS OF CANCERATION OF ATYPICAL HYPERPLASIA OF MAMMARY DUCT
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作者 李柏林 马萍 +1 位作者 宋敏 宋继谒 《Chinese Journal of Cancer Research》 SCIE CAS CSCD 2006年第1期45-50,共6页
Objective: To investigate the expression of apoptosis related genes p53 and bcl-2 in atypical hyperplasia of mammary duct and the relationship between the gene expression and oncogenesis of breast. Methods: mRNA of ... Objective: To investigate the expression of apoptosis related genes p53 and bcl-2 in atypical hyperplasia of mammary duct and the relationship between the gene expression and oncogenesis of breast. Methods: mRNA of apoptosis related gene p53 and bcl-2 were detected by in situ hybridization in 44 cases of atypical ductal hyperplasia. p53 protein expression was detected by immunohistochemistry. The data were compared with those of 6 cases of benign hyperplasia and 26 cases of breast carcinoma. Results: The expression of p53 mRNA was 66.7% in benign hyperplasia, 40% in atypical ductal hyperplasia (55.6% in mild, 41.7% in medium, 26.1% in severe) and 19.2% in carcinoma (of which 21.4% were intraductal carcinoma and 16.7% were invasive). The expression of p53 protein was negative in benign hyperplasia, 24% in atypical hyperplasia (mild 11.1%, medium 25%, severe 34.8%), 38.5% in carcinoma (intraductal carcinoma 35.7%, invasive ductal carcinoma 41.7%). The expression of bcl-2 was negative in benign hyperplasia, 78.6% in intraductal carcinoma, 83.3% in invasive ductal carcinoma. Conclusion: Loss and mutation of p53 gene and excessive expression bcl-2 mRNA were detected in severe atypical ductal hyperplasia. 展开更多
关键词 APOPTOSIS expression of gene Atypical hyperplasia of mammary duct
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Selection of suitable internal controls for gene expression normalization in rats with spinal cord injury 被引量:4
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作者 Wei Liu Jie Yu +2 位作者 Yi-Fan Wang Qian-Qian Shan Ya-Xian Wang 《Neural Regeneration Research》 SCIE CAS CSCD 2022年第6期1387-1392,共6页
There is a lack of systematic research on the expression of internal control genes used for gene expression normalization in real-time reverse transcription polymerase chain reaction in spinal cord injury research.In ... There is a lack of systematic research on the expression of internal control genes used for gene expression normalization in real-time reverse transcription polymerase chain reaction in spinal cord injury research.In this study,we used rat models of spinal cord hemisection to analyze the expression stability of 13 commonly applied reference genes:Actb,Ankrd27,CypA,Gapdh,Hprt1,Mrpl10,Pgk1,Rictor,Rn18s,Tbp,Ubc,Ubxn11,and Ywhaz.Our results show that the expression of Ankrd27,Ubc,and Tbp were stable after spinal cord injury,while Actb was the most unstable internal control gene.Ankrd27,Ubc,Tbp,and Actb were consequently used to investigate the effects of internal control genes with differing stabilities on the normalization of target gene expression.Target gene expression levels and changes over time were similar when Ankrd27,Ubc,and Tbp were used as internal controls but different when Actb was used as an internal control.We recommend that Ankrd27,Ubc,and Tbp are used as internal control genes for real-time reverse transcription polymerase chain reaction in spinal cord injury research.This study was approved by the Administration Committee of Experimental Animals,Jiangsu Province,China(approval No.20180304-008)on March 4,2018. 展开更多
关键词 geNorm analysis reference genes internal control genes NORMALIZATION NormFinder analysis reverse transcription-quantitative polymerase chain reaction spinal cord injury stability of gene expression
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Genome-Wide Analysis of Gene Expression in Stationary Phase and Genetic Characterization of Stationary-Phase-Dependent Halocin Gene Expression in the Haloarchaeon Haloferax mediterranei
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作者 Xiaoqing Liu Lei Wang +2 位作者 Jingfang Liu Lei Cai Hua Xiang 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2013年第8期441-444,共4页
The stationary phase of microbial growth is a very complex state regulated by various environmental and physiological factors. An intensive study of stationary phase could promote a comprehensive understanding of the ... The stationary phase of microbial growth is a very complex state regulated by various environmental and physiological factors. An intensive study of stationary phase could promote a comprehensive understanding of the complete life cycle of microorganisms, and may provide important insights into their adaptation to harsh and nutrient-depleted conditions. Although the underlying mechanisms have been weU-studied in bacteria and yeasts (Herman, 2002; Navarro Llorens et al., 2010), less is known about this growth phase in archaea yet. The haloarchaeon Haloferax mediterranei has served as a good model for studying haloarchaeal physiology and metabolism for several decades because of its accelerated growth, remarkable metabolic ability and genomic stability (Han et al., 2012). During stationary phase, H. mediterranei can produce halocin H4 (Cheung et al., 展开更多
关键词 Genome-Wide Analysis of gene expression in Stationary Phase and genetic Characterization of Stationary-Phase-Dependent Halocin gene expression in the Haloarchaeon Haloferax mediterranei KEGG BRE gene down
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FEATURE-EXTRACT ANALYSIS OF SERIAL ANALYSIS OF GENE EXPRESSION DATA
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作者 Su Hongquan Zhu Yisheng 《Journal of Electronics(China)》 2010年第6期848-852,共5页
Serial Analysis of Gene Expression (SAGE) is a powerful tool to analyze whole-genome expression profiles. SAGE data, characterized by large quantity and high dimensions, need reducing their dimensions and extract feat... Serial Analysis of Gene Expression (SAGE) is a powerful tool to analyze whole-genome expression profiles. SAGE data, characterized by large quantity and high dimensions, need reducing their dimensions and extract feature to improve the accuracy and efficiency when they are used for pattern recognition and clustering analysis. A Poisson Model-based Kernel (PMK) was proposed based on the Poisson distribution of the SAGE data. Kernel Principle Component Analysis (KPCA) with PMK was proposed and used in feature-extract analysis of mouse retinal SAGE data. The computa-tional results show that this algorithm can extract feature effectively and reduce dimensions of SAGE data. 展开更多
关键词 Serial Analysis of gene expression (SAGE) Poisson distribution Kernel methods Principle component analysis (PCA)
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A Study on the Molecular Switch of Gene Expression of the Mouse Heart Nuclear DNA Fragments
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作者 袁明秀 JIN +6 位作者 Rui Niu Weiran Chen Zhijun Zhang Zhihong 《High Technology Letters》 EI CAS 2001年第4期1-7,共7页
It is observed by in situ stain that LDH (1 5) ...nNAD + can probably enter the nucleopore and can be bound bound specifically with the genes that encode them. During the in vitro expression, the dilution of heart nuc... It is observed by in situ stain that LDH (1 5) ...nNAD + can probably enter the nucleopore and can be bound bound specifically with the genes that encode them. During the in vitro expression, the dilution of heart nuclear DNA fragments could enhance the expression activity of LDH/DNA and the amount of expressed LDH (1 5) is in proportion to the amount of dissociable LDH (1 5) on the LDH/DNA. With the integration of 14C Leu to the proteins, it is also observed that the addition of LDH (1 5) ...nNAD + can suppress the in vitro expression activity of LDH/DNA. AFM observation shows that the regulation sequence at the both ends of active genes may be bound with such active factors as proteins encoded by the genes which probably is the main molecular switch of gene expression and regulation we have been always searching for. Our work shows the prospective application of the combination of AFM and isotope labeling in the research of biological reaction. 展开更多
关键词 Molecular switch of gene expression Positive and negative feedback regulation mechanism gene expression and regulation AFM
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Responses Taken by Silencing of NFkappaB, STAMP1 and STAMP2 Genes and Expression of NFkB, Act-1, p53 and p73 at -/+ TNFalpha Induced LNCaP Cells
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作者 Ceren Gönen 《Journal of Cancer Therapy》 CAS 2022年第12期685-700,共16页
Prostate cancer is the most commonly diagnosed cancer and the second leading cause of cancer mortality in men in the Western World. The effects of androgens are mediated by the Androgen Receptor (AR). Therefore, studi... Prostate cancer is the most commonly diagnosed cancer and the second leading cause of cancer mortality in men in the Western World. The effects of androgens are mediated by the Androgen Receptor (AR). Therefore, studies focus on the identification of AR-regulated genes that are also highly expressed in the prostate. STAMP family genes STAMP1/STEAP2 and STAMP2/STEAP4 have only expressed in androgen receptor-positive cells, the role of AR in STAMP family gene expression is an important question. STEAP (Six Transmembrane Epithelial Antigens of Prostate) is the first characterized prostate enriched six transmembrane genes, expressed in metastatic prostate cancer samples, it is tempting to speculate that STAMP/STEAP family genes may be involved in similar functions with a role for both the normal biology and pathophysiology of the prostate. Using siRNA technology in LNCaP cells expressing STAMP genes per se, an apoptosis panel including pro-apoptotic and/or apoptotic molecules was assayed by RT-PCR. In this research project, the prostate-specific STAMP gene family and its regulatory effects on the nuclear factor kappa B and caspase-related pathways were characterized. Considering that the beta-actin response in the control group was high in the immunolabeling studies, an increase in the induction of Tumor Necrosis Factor (TNF) was detected in the signals received with the vital proteins NFkB and akt, which were silenced by siRNA, which means that STAMP genes potentiate vital proteins. 展开更多
关键词 Promoter Analysis RNA/siRNA Regulation of gene expression
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Regulatory role of NFAT1 signaling in articular chondrocyteactivities and osteoarthritis pathogenesis
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作者 MINGCAI ZHANG TANNER CAMPBELL +1 位作者 SPENCER FALCON JINXI WANG 《BIOCELL》 SCIE 2023年第10期2125-2132,共8页
Osteoarthritis (OA), the most common form of joint disease, is characterized clinically by joint pain, stiffness,and deformity. OA is now considered a whole joint disease;however, the breakdown of the articular cartil... Osteoarthritis (OA), the most common form of joint disease, is characterized clinically by joint pain, stiffness,and deformity. OA is now considered a whole joint disease;however, the breakdown of the articular cartilage remains themajor hallmark of the disease. Current treatments targeting OA symptoms have a limited impact on impeding orreversing the OA progression. Understanding the molecular and cellular mechanisms underlying OA development isa critical barrier to progress in OA therapy. Recent studies by the current authors’ group and others have revealedthat the nuclear factor of activated T cell 1 (NFAT1), a member of the NFAT family of transcription factors, regulatesthe expression of many anabolic and catabolic genes in articular chondrocytes of adult mice. Mice lacking NFAT1exhibit normal skeletal development but display OA in both appendicular and spinal facet joints as adults. Thisreview mainly focuses on the recent advances in the regulatory role of NFAT1 transcription factor in the activities ofarticular chondrocytes and its implication in the pathogenesis of OA. 展开更多
关键词 OSTEOARTHRITIS CHONDROCYTE NFAT1 Transcription factor Regulation of gene expression
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The role of microRNA-200a in the occurrence and development of liver disease
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作者 CHEN Ze-shan YANG Yi-ling +4 位作者 LAN Hong-ni ZHU Wen-lin WANG Miao-dong WEN Bin DENG Xin 《Journal of Hainan Medical University》 CAS 2023年第10期61-65,共5页
microRNA(miRNA)is a type of small non-coding RNA that can participate in cell proliferation and apoptosis by regulating gene expression.More and more evidences indicate that miRNA-200a is involved in the occurrence an... microRNA(miRNA)is a type of small non-coding RNA that can participate in cell proliferation and apoptosis by regulating gene expression.More and more evidences indicate that miRNA-200a is involved in the occurrence and development of non-alcoholic fatty liver disease,alcoholic liver disease,drug-induced liver injury,liver fibrosis,and hepatocellular carcinoma.Downstream target genes of serotonin,regulating related signal pathways and playing different roles in the progression of a variety of liver diseases,provide a reference for exploring the mechanism of a variety of chronic liver diseases. 展开更多
关键词 MicroRNAs-200a Liver disease Regulation of gene expression
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Serial analysis of gene expression in mice with lipopoly-saccharide-induced acute lung injury 被引量:3
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作者 孙海晨 钱晓明 +1 位作者 聂时南 吴学豪 《Chinese Journal of Traumatology》 CAS 2005年第2期67-73,共7页
Objective: To monitor the systemic gene expression profile in a murine model of lipopolysaccharide-induced acute lung injury. Methods: Acute lung injury was induced by intratracheal injection of lipopolysaccharide in ... Objective: To monitor the systemic gene expression profile in a murine model of lipopolysaccharide-induced acute lung injury. Methods: Acute lung injury was induced by intratracheal injection of lipopolysaccharide in 3 mice. Another 3 normal mice receiving same volume of normal saline were taken as the controls. The comprehensive gene expression profile was monitored by the recently modified long serial analysis of gene expression. Results: A total of 24 670 tags representing 12 168 transcripts in the control mice and 26 378 tags representing 13 397 transcripts in the mice with lung injury were identified respectively. There were 11 transcripts increasing and 7 transcripts decreasing more than 10 folds in the lipopolysaccharide-treated mice. The most overexpressed genes in the mice with lung injury included serum amyloid A3, metallothionein 2, lipocalin 2, cyclin-dependent kinase inhibitor 1A, lactate dehydrogenase 1, melatonin receptor, S100 calcium-binding protein A9, natriuretic peptide precursor, etc. Mitogen activated protein kinase 3, serum albumin, complement component 1 inhibitor, and ATP synthase were underexpressed in the lung injury mice. Conclusions: Serial analysis of gene expression provides a molecular characteristic of acute lung injury. 展开更多
关键词 Respiratory distress syndrome adult LIPOPOLYSACCHARIDE MICE Serial analysis of gene expression
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MicroRNA let-7b targets important cell cycle molecules in malignant melanoma cells and interferes with anchorage-independent growth 被引量:46
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作者 Julia Schultz Peter Lorenz +2 位作者 Gerd Gross Saleh Ibrahim Manfred Kunz 《Cell Research》 SCIE CAS CSCD 2008年第5期549-557,共9页
A microRNA expression screen was performed analyzing 157 different microRNAs in laser-microdissected tissues from benign melanocytic nevi (n = 10) and primary malignant melanomas (n = 10), using quantitative real-... A microRNA expression screen was performed analyzing 157 different microRNAs in laser-microdissected tissues from benign melanocytic nevi (n = 10) and primary malignant melanomas (n = 10), using quantitative real-time PCR. Differential expression was found for 72 microRNAs. Members of the let-7 family of microRNAs were significantly downregulated in primary melanomas as compared with benign nevi, suggestive for a possible role of these molecules as tumor suppressors in malignant melanoma. Interestingly, similar findings had been described for lung and colon cancer. Overexpression of let-7b in melanoma cells in vitro downregulated the expression of cyclins D1, D3, and A, and cyclin-dependent kinase (Cdk) 4, all of which had been described to play a role in melanoma development. The effect oflet-7b on protein expression was due to targeting of 3'-untranslated regions (3'UTRs) of individual mRNAs, as exemplified by reporter gene analyses for cyclin D1. In line with its downmodulating effects on cell cycle regulators, let-7b inhibited cell cycle progression and anchorage-independent growth of melanoma cells. Taken together, these findings not only point to new regulatory mechanisms of early melanoma development, but also may open avenues for future targeted therapies of this tumor. 展开更多
关键词 melanoma/skin cancer cell cyle CYCLINS SILENCING reactivation of gene expression
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Exploring the dynamic three-dimensional chromatin architecture and transcriptional landscape in goose liver tissues underlying metabolic adaptations induced by a high-fat diet
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作者 Guangliang Gao Rui Liu +9 位作者 Silu Hu Mengnan He Jiaman Zhang Dengfeng Gao Jing Li Jiwei Hu Jiwen Wang Qigui Wang Mingzhou Li Long Jin 《Journal of Animal Science and Biotechnology》 SCIE CAS CSCD 2024年第4期1494-1511,共18页
Background Goose, descendants of migratory ancestors, have undergone extensive selective breeding, resulting in their remarkable ability to accumulate fat in the liver and exhibit a high tolerance for significant ener... Background Goose, descendants of migratory ancestors, have undergone extensive selective breeding, resulting in their remarkable ability to accumulate fat in the liver and exhibit a high tolerance for significant energy intake. As a result, goose offers an excellent model for studying obesity, metabolic disorders, and liver diseases in mammals. Although the impact of the three-dimensional arrangement of chromatin within the cell nucleus on gene expression and transcriptional regulation is widely acknowledged, the precise functions of chromatin architecture reorganization during fat deposition in goose liver tissues still need to be fully comprehended.Results In this study, geese exhibited more pronounced changes in the liver index and triglyceride(TG) content following the consumption of the high-fat diet(HFD) than mice without significant signs of inflammation. Additionally, we performed comprehensive analyses on 10 goose liver tissues(5 HFD, 5 normal), including generating highresolution maps of chromatin architecture, conducting whole-genome gene expression profiling, and identifying H3K27ac peaks in the livers of geese and mice subjected to the HFD. Our results unveiled a multiscale restructuring of chromatin architecture, encompassing Compartment A/B, topologically associated domains, and interactions between promoters and enhancers. The dynamism of the three-dimensional genome architecture, prompted by the HFD, assumed a pivotal role in the transcriptional regulation of crucial genes. Furthermore, we identified genes that regulate chromatin conformation changes, contributing to the metabolic adaptation process of lipid deposition and hepatic fat changes in geese in response to excessive energy intake. Moreover, we conducted a cross-species analysis comparing geese and mice exposed to the HFD, revealing unique characteristics specific to the goose liver compared to a mouse. These chromatin conformation changes help elucidate the observed characteristics of fat deposition and hepatic fat regulation in geese under conditions of excessive energy intake.Conclusions We examined the dynamic modifications in three-dimensional chromatin architecture and gene expression induced by an HFD in goose liver tissues. We conducted a cross-species analysis comparing that of mice. Our results contribute significant insights into the chromatin architecture of goose liver tissues, offering a novel perspective for investigating mammal liver diseases. 展开更多
关键词 Compartment A/B Goose fatty liver Promoter-enhancer interactions Regulation of gene expression
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Experimental study on siRNA expressing vector-based RNA interference targeting c-Myc in human hepatocellular carcinoma cell line BEL-7402
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作者 Shuiliang Wang Qingliu Huang +1 位作者 Yunzong Lian Fenghua Lan 《The Chinese-German Journal of Clinical Oncology》 CAS 2006年第5期332-335,共4页
Objective: To explore the inhibition of the expression of c-Myc in human hepatocellular carcinoma via vector-based RNA interference (RNAi). Methods: Two RNA interference DNA templates targeting c-Myc oncogene were des... Objective: To explore the inhibition of the expression of c-Myc in human hepatocellular carcinoma via vector-based RNA interference (RNAi). Methods: Two RNA interference DNA templates targeting c-Myc oncogene were designed via online software and synthesized. By ligation, the fragments were inserted into pSilencer 1.0-U6 to construct the recombinant siRNA expressing plasmids. The identified recombinants were introduced into BEL-7402 cells with Lipofactamine. The inhibition of c-Myc expression, together with the expression of CDK4, hTERT and Gadd45β in c-Myc down-regulated BEL-7402 cells, were analyzed by semi-quantitative RT-PCR. Results: Two recombinant plasmids pSic-myc-1 and pSic-myc-2, which direct the yields of siRNAs targeting c-Myc in cells, were constructed. Among which, pSic-myc-2 was shown to trigger a RNAi-mediated inhibition of expression of c-Myc in BEL-7402 by up to 90%. In c-Myc knockdown BEL-7402 cells, the expression of CDK4 and hTERT were down-regulated with a ratio of 85% and 57%, respectively, while the expression of Gadd45β was up-regulated by up to 110%. Conclusion: The expression of c-Myc in BEL-7402 could be suppressed by vector-based RNA interference successfully. The knockdown of c-Myc in turn resulted in the changes of expression of genes related to cell proliferation and apoptosis. Thus, our study provided a preliminary data in searching of a c-Myc-targeted RNAi therapy of human hepatocellular carcinoma. 展开更多
关键词 hepatocellular carcinoma C-MYC RNA interference suppression of gene expression
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The High Light Response and Redox Control of Thylakoid FtsH Protease in Chlamydomonas reinhardtii 被引量:4
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作者 Fei Wang Yafei Qi +2 位作者 Alizee Malnoe Yves Choquet Francis-Andre Wollman 《Molecular Plant》 SCIE CAS CSCD 2017年第1期99-114,共16页
In Chlamydomonas reinhardtii, the major protease involved in the maintenance of photosynthetic machinery in thylakoid membranes, the FtsH protease, mostly forms large hetero-oligomers (-1 MDa) comprising FtsH1 and F... In Chlamydomonas reinhardtii, the major protease involved in the maintenance of photosynthetic machinery in thylakoid membranes, the FtsH protease, mostly forms large hetero-oligomers (-1 MDa) comprising FtsH1 and FtsH2 subunits, whatever the light intensity for growth. Upon high light exposure, the FtsH subunits display a shorter half-life, which is counterbalanced by an increase in FTSH1/2 mRNA levels, resulting in the modest upregulation of FtsH1/2 proteins. Furthermore, we found that high light increases the protease activity through a hitherto unnoticed redox-controlled reduction of intermolecular disulfide bridges. We iso- lated a Chlamydomonas FTSH1 promoter-deficient mutant, ftsh1-3, resulting from the insertion of a TOC1 transposon, in which the high light-induced upregulation of FTSH1 gene expression is largely lost. In ftsh1- 3, the abundance of FtsH1 and FtsH2 proteins are loosely coupled (decreased by 70% and 30%, respectively) with no formation of large and stable homo-oligomers. Using strains exhibiting different accumulation levels of the FtsH1 subunit after complementation of ftsh1-3, we demonstrate that high light tolerance is tightly correlated with the abundance of the FtsH protease. Thus, the response of Chlamydomonas to light stress involves higher levels of FtsH 1/2 subunits associated into large complexes with increased proteolytic activity. 展开更多
关键词 chloroplast protease regulation of gene expression PHOTOINHIBITION Chlamydomonas reinhardtii
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Application of systems biology to the study of chronic kidney disease 被引量:2
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作者 CAO Yu-han LU Lin-li ZHANG Jian-dong LIU Bi-cheng 《Chinese Medical Journal》 SCIE CAS CSCD 2012年第14期2603-2609,共7页
Chronic kidney disease (CKD) is a major public health problem that affects about 10% of the general population. Current approaches to characterize the category and progression of CKD are normally based on renal hist... Chronic kidney disease (CKD) is a major public health problem that affects about 10% of the general population. Current approaches to characterize the category and progression of CKD are normally based on renal histopathological results and clinical parameters. However, this information is not sufficient to predict CKD progression risk reliably or to guide preventive interventions. Nowadays, the appearance of systems biology has brought forward the concepts of "-omics" technologies, including genomics, transcriptomics, proteomics, and metabolomics. Systems biology, together with molecular analysis approaches such as microarray analysis, genome-wide association studies (GWAS), and serial analysis of gene expression (SAGE), has provided the framework for a comprehensive analysis of renal disease and serves as a starting point for generating novel molecular diagnostic tools for use in nephrology. In particular, analysis of urinary mRNA and protein levels is rapidly evolving as a non-invasive approach for CKD monitoring. All these systems biological molecular approaches are required for application of the concept of "personalized medicine" to progressive CKD, which will result in tailoring therapy for each patient, in contrast to the "one-size-fits-all" therapies currently in use. 展开更多
关键词 systems biology chronic kidney disease microarray analysis genome-wide association study serial analysis of gene expression
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