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生物医学 新论文 文献信息分析报告

已有 1339 次阅读 2023-2-16 10:52 |个人分类:信息分析|系统分类:论文交流




http://www.ebiotrade.com/newsf/

跳跃基因是癌细胞的靶标之一

https://www.ebiotrade.com/newsf/2023-2/20230215081522667.htm

http://www.pubmedplus.cn/P/SearchQuickResult?wd=78f9ab37-5b82-453d-bb5d-8a77127ea2c1

01.Humans47 篇79.661%
02.Animals26 篇44.068%
03.DNA Transposable Elements22 篇37.288%
04.Mice18 篇30.508%
05.Long Interspersed Nucleotide Elements14 篇23.729%
06.Endogenous Retroviruses13 篇22.034%
07.Cell Line, Tumor12 篇20.339%
08.DNA Methylation12 篇20.339%
09.Female10 篇16.949%
10.Promoter Regions, Genetic10 篇16.949%


循环肿瘤细胞免疫逃逸新机制

https://www.ebiotrade.com/newsf/2023-2/20230216065239897.htm

http://www.pubmedplus.cn/P/SearchQuickResult?wd=d4a74598-edf3-48a4-aa36-cca6513ba27d

01.Humans106 篇74.126%
02.Animals54 篇37.762%
03.Tumor Escape46 篇32.168%
04.Neoplasms35 篇24.476%
05.Female34 篇23.776%
06.Male31 篇21.678%
07.Neoplastic Cells, Circulating28 篇19.580%
08.Mice27 篇18.881%
09.Tumor Microenvironment27 篇18.881%
10.Middle Aged23 篇16.084%


改变心脏产生能量的方式是预防心力衰竭的关键

https://www.ebiotrade.com/newsf/2023-2/20230214022852729.htm

http://www.pubmedplus.cn/P/SearchQuickResult?wd=ed442b44-5b45-4938-bb8d-dbebca6b7873

01.Animals41 篇67.213%
02.Humans29 篇47.541%
03.Male18 篇29.508%
04.Heart Failure17 篇27.869%
05.Rats16 篇26.230%
06.Energy Metabolism14 篇22.951%
07.Heart13 篇21.311%
08.Myocardium12 篇19.672%
09.Cardiomegaly7 篇11.475%
10.Female7 篇11.475%

男性短期避孕药来了!研究人员发现了一种潜在的非激素避孕药

https://www.ebiotrade.com/newsf/2023-2/20230215023504221.htm

http://www.pubmedplus.cn/P/SearchQuickResult?wd=f4b764f2-be77-428c-8977-df6191d63d66

01.Contraceptive Agents, Male110 篇100.000%
02.Male104 篇94.545%
03.Humans98 篇89.091%
04.Testosterone51 篇46.364%
05.Contraception48 篇43.636%
06.Spermatogenesis43 篇39.091%
07.Adult29 篇26.364%
08.Animals28 篇25.455%
09.Androgens27 篇24.545%
10.Progestins26 篇23.636%


一种有前途的抗衰老药物能延寿10%https://www.ebiotrade.com/newsf/2023-2/20230216065236063.htm

01.Animals27 篇72.973%
02.Aging19 篇51.351%
03.Humans17 篇45.946%
04.Longevity14 篇37.838%
05.Antioxidants11 篇29.730%
06.Plant Extracts11 篇29.730%
07.Oxidative Stress8 篇21.622%
08.Caenorhabditis elegans7 篇18.919%
09.Cellular Senescence7 篇18.919%
10.Drugs, Chinese Herbal6 篇16.216%


胶质瘤相关癫痫驱动因素的新见解https://www.ebiotrade.com/newsf/2023-2/20230215023512597.htm


http://www.pubmedplus.cn/P/SearchQuickResult?wd=4c2957ec-78d3-443c-af6d-7f4981799bb4

01.Age Factors1 篇20.000%
02.Animals1 篇20.000%
03.Animals, Newborn1 篇20.000%
04.Arachnoid Cysts1 篇20.000%
05.Astrocytoma1 篇20.000%
06.Brain1 篇20.000%
07.Brain Neoplasms1 篇20.000%
08.Central Nervous System Cysts1 篇20.000%
09.Dermoid Cyst1 篇20.000%
10.Electroencephalography1 篇20.000%

合成生物学家重新设计抗癌药物https://www.ebiotrade.com/newsf/2023-2/20230215023532549.htm


http://www.pubmedplus.cn/P/SearchQuickResult?wd=5fea53cc-b00d-4cb2-8a04-3be1df733b72

01.Humans140 篇80.000%
02.Antineoplastic Agents94 篇53.714%
03.Antimicrobial Cationic Peptides78 篇44.571%
04.Cell Line, Tumor72 篇41.143%
05.Apoptosis67 篇38.286%
06.Cell Survival66 篇37.714%
07.Cell Membrane65 篇37.143%
08.Animals56 篇32.000%
09.Cell Proliferation50 篇28.571%
10.Peptides46 篇26.286%

最致命和耐药的病原体协作,变得更具传染性https://www.ebiotrade.com/newsf/2023-2/20230214022933653.htm

http://www.pubmedplus.cn/P/SearchQuickResult?wd=99cf7ab7-e7ba-4c64-81c7-7767f8a93b59

01.Humans37 篇53.623%
02.Anti-Bacterial Agents20 篇28.986%
03.Animals19 篇27.536%
04.Mycobacterium tuberculosis16 篇23.188%
05.Drug Resistance, Bacterial13 篇18.841%
06.Microbial Sensitivity Tests13 篇18.841%
07.Tuberculosis13 篇18.841%
08.Antitubercular Agents8 篇11.594%
09.Drug Resistance, Multiple, Bacterial7 篇10.145%
10.Mice7 篇10.145%


EGFR抑制剂治疗耐药性的新靶点https://www.ebiotrade.com/newsf/2023-2/20230214022855869.htm

http://www.pubmedplus.cn/P/SearchQuickResult?wd=c033c4ff-99c6-4d32-98d7-44dacfc80e83


01.Humans139 篇90.850%
02.Interferon-alpha101 篇66.013%
03.Antiviral Agents87 篇56.863%
04.Signal Transduction81 篇52.941%
05.Hepacivirus69 篇45.098%
06.STAT1 Transcription Factor49 篇32.026%
07.Hepatocytes46 篇30.065%
08.Animals42 篇27.451%
09.Hepatitis C41 篇26.797%
10.Cell Line39 篇25.490%

细菌神经元一样用电交流https://www.ebiotrade.com/newsf/2023-2/20230215023538844.htm

http://www.pubmedplus.cn/P/SearchQuickResult?wd=b13c16ef-1027-4cd3-b428-bd5598d6ef67

01.Animals1 篇20.000%
02.Animals, Newborn1 篇20.000%
03.Anti-Bacterial Agents1 篇20.000%
04.Bacillus subtilis1 篇20.000%
05.Biocompatible Materials1 篇20.000%
06.Biofilms1 篇20.000%
07.Brain1 篇20.000%
08.Cerebral Cortex1 篇20.000%
09.Diamond1 篇20.000%
10.Diffusion1 篇20.000%


一种对肿瘤细胞代谢和免疫逃避至关重要的蛋白质

https://www.ebiotrade.com/newsf/2023-2/20230215051811948.htm

http://www.pubmedplus.cn/P/SearchQuickResult?wd=7733f906-d258-415d-b6d7-cabf28a8c097

01.Gene Expression Regulation, Neoplastic159 篇100.000%
02.Tumor Escape159 篇100.000%
03.Humans149 篇93.711%
04.Animals91 篇57.233%
05.Cell Line, Tumor84 篇52.830%
06.Signal Transduction61 篇38.365%
07.Female54 篇33.962%
08.Mice53 篇33.333%
09.Tumor Microenvironment52 篇32.704%
10.Male40 篇25.157%


一种药物可以缓解小鼠的自闭症相关行为

https://www.ebiotrade.com/newsf/2023-2/20230215065649218.htm

http://www.pubmedplus.cn/P/SearchQuickResult?wd=3560cd2d-7f05-42cf-be69-ea682e105ae4

01.Animals5 篇100.000%
02.Mice5 篇100.000%
03.Autism Spectrum Disorder4 篇80.000%
04.Behavior, Animal3 篇60.000%
05.Disease Models, Animal3 篇60.000%
06.Female3 篇60.000%
07.Male3 篇60.000%
08.Autistic Disorder2 篇40.000%
09.Gastrointestinal Microbiome2 篇40.000%
10.Mice, Knockout2 篇40.000%


与自闭症相关的MYT1L突变在萌芽中的脑细胞中引发了“身份危机”https://www.ebiotrade.com/newsf/2023-2/20230215065651788.htm

http://www.pubmedplus.cn/P/SearchQuickResult?wd=0bfbabb4-cdbe-44ed-8ea3-eec58a0820fc

01.Autistic Disorder147 篇100.000%
02.Brain147 篇100.000%
03.Humans104 篇70.748%
04.Animals94 篇63.946%
05.Female59 篇40.136%
06.Male57 篇38.776%
07.Mice47 篇31.973%
08.Neurons34 篇23.129%
09.Disease Models, Animal32 篇21.769%
10.Child30 篇20.408%


分泌素受体调节饮水新机制,为解决水矿物质失衡症状提供新思路https://www.ebiotrade.com/newsf/2023-2/20230215111708651.htm

http://www.pubmedplus.cn/P/SearchQuickResult?wd=02c65c47-dfe6-479a-9482-97eedb1783a8

01.Animals110 篇73.826%
02.Receptors, G-Protein-Coupled92 篇61.745%
03.Receptors, Gastrointestinal Hormone89 篇59.732%
04.Humans74 篇49.664%
05.Secretin74 篇49.664%
06.Male45 篇30.201%
07.Rats45 篇30.201%
08.Mice32 篇21.477%
09.Cyclic AMP29 篇19.463%
10.Molecular Sequence Data25 篇16.779%


小鼠模型来研究猴痘mpox的毒性https://www.ebiotrade.com/newsf/2023-2/20230215111717087.htm

http://www.pubmedplus.cn/P/SearchQuickResult?wd=3714d214-eb72-42f3-bfde-b63ce595fb02

01.Monkeypox48 篇46.154%
02.Monkeypox virus48 篇46.154%
03.Humans47 篇45.192%
04.Animals41 篇39.423%
05.Male17 篇16.346%
06.Disease Outbreaks16 篇15.385%
07.Disease Models, Animal11 篇10.577%
08.Female11 篇10.577%
09.Virulence10 篇9.615%
10.Phylogeny9 篇8.654%

















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