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The forecast of anticancer targets of cryptotanshinone based on reverse pharmacophore-based screening technology 被引量:5
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作者 YUAN Dong-Ping LONG Jun +2 位作者 LU Yin LIN Jie TONG Li 《Chinese Journal of Natural Medicines》 SCIE CAS CSCD 2014年第6期443-448,共6页
Anticancer targets of cryptotanshinone were evaluated and rapidly forecasted with PharmMapper, a reverse pharmacophore-based screening platform, as well as drug target databases, including PDTD, DrugBank and TTD. The ... Anticancer targets of cryptotanshinone were evaluated and rapidly forecasted with PharmMapper, a reverse pharmacophore-based screening platform, as well as drug target databases, including PDTD, DrugBank and TTD. The pathway analyses for the collection of anticancer targets screened were carried out based on the KEGG pathway database, followed by the forecast of potential pharmacological activities and pathways of the effects of cryptotanshinone, and verification of some of the targets screened using whole cell tests. The results showed that a total of eight targets with anticancer potential were screened, including MAP2K1, RARα, RXRα, PDK1, CHK1, AR, Ang-1 R, and Kif11. These targets are mainly related to four aspects of the cancer growth: the cell cycle, angiogenesis, apoptosis, and androgen receptor. The cell tests showed that cryptotanshinone can inhibit the viability of human hepatoma cells SMMC-7721, which is related to the reduction of expression of MAP2K1 mRNA. This method provides a strong clue for the study of the anticancer effects and mechanisms of action of cryptotanshinone in the future. 展开更多
关键词 CRYPTOTANSHINONE PHARMACOPHORE Reverse screening technology ANTICANCER Human hepatoma cells Forecast of target
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Identification of High-Risk Populations: The Cornerstone of Effective and Cost-Efficient Cancer Screening
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作者 Wei Cao Fei Wang Ni Li 《Biomedical and Environmental Sciences》 2025年第4期401-402,共2页
Cancer screening is a strategy focused on highrisk populations rather than universal populationwide screening, based on a comprehensive evaluation of epidemiological principles and practical feasibility. The effective... Cancer screening is a strategy focused on highrisk populations rather than universal populationwide screening, based on a comprehensive evaluation of epidemiological principles and practical feasibility. The effectiveness of screening depends on factors such as disease prevalence, as well as the sensitivity and specificity of the screening technology employed. 展开更多
关键词 epidemiological principles practical feasibility cancer screening screening technology sensitivity high risk populations disease prevalence practical feasibility epidemiological principles
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It's Closed In Triumph,'97 International Screen Special Printing Technology Exhibition
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《网印工业》 1997年第4期43-43,共1页
’97 Wuhan International Screen Special Printing Technology Exhibition was held from May 21—24, 1997 in Wuhan city,the capital of Hubei Province. 120 famous exhibitors from China, USA, Canada, Holland, Japan, Korea, ... ’97 Wuhan International Screen Special Printing Technology Exhibition was held from May 21—24, 1997 in Wuhan city,the capital of Hubei Province. 120 famous exhibitors from China, USA, Canada, Holland, Japan, Korea, and Hong Kong, Taiwan districts attended the Exhibition. The booth area was more than 5000 m^2. 展开更多
关键词 International Screen Special Printing technology Exhibition than It’s Closed In Triumph
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Fully automated in vivo screening system for multi-organ imaging and pharmaceutical evaluation
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作者 Junhan Duan Guanming Lin +2 位作者 Kangjian Jiao Xiaohui Hong Xudong Lin 《Microsystems & Nanoengineering》 2025年第1期301-311,共11页
Advancements in screening technologies employing small organisms have enabled deep profiling of compounds in vivo.However,current strategies for phenotyping of behaving animals,such as zebrafish,typically involve tedi... Advancements in screening technologies employing small organisms have enabled deep profiling of compounds in vivo.However,current strategies for phenotyping of behaving animals,such as zebrafish,typically involve tedious manipulations.Here,we develop and validate a fully automated in vivo screening system(AISS)that integrates microfluidic technology and computer-vision-based control methods to enable rapid evaluation of biological responses of non-anesthetized zebrafish to molecular gradients.Via precise fluidic control,the AISS allows automatic loading,encapsulation,transportation and immobilization of single-larva in droplets for multi-organ imaging and chemical gradients generation inaccessible in previous systems.Using this platform,we examine the cardiac sensitivity of an antipsychotic drug with multiple concentration gradients,and reveal dramatic diversity and complexity in the accurate chemical regulation of cardiac functions in vivo.This proposed system expands the arsenal of tools available for in vivo screening and facilitates comprehensive profiling of pharmaceuticals. 展开更多
关键词 small organisms automated vivo screening system screening technologies microfluidic technology deep profiling compounds precise flui evaluation biological responses automated vivo screening system aiss
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