反义RNA,antisense RNA
1)antisense RNA反义RNA
1.IL-1β antisense RNA enhanced sensitivity of HepG2 cells to NK cell mediated cytotoxicity;IL-1β反义RNA在HepG2细胞的表达及对NK细胞杀伤活性的影响
2.The Construction of IL-1β Antisense RNA Eukaryon Expression Vectors;IL-1β反义RNA真核表达载体的构建
3.Inhibitory effect of Cubilin antisense RNA on albumin overload in renal tubules in rats;Cubilin反义RNA对大鼠肾小管超负荷重吸收白蛋白的抑制作用
英文短句/例句

1.From Antisense RNA to RNA Interference: an revolutionary breakthrough led by opportunity and innovation;从反义RNA到RNA干扰:科学突破的机遇与创新
2.Study on the Inhibition of PB1 gene of Aain Influenza Virus by Antisense RNA;反义RNA抑制禽流感病毒PB1基因的研究
3.Construction and Expression of Antisense rmlC Expression Vector;rmlC反义RNA载体的构建及表达
4.Study on Suppressing Expression of Tomato DHS Gene by Antisense RNA反义RNA抑制番茄DHS基因表达的研究
5.Experimental Study of Inhibition of Hepatitis B by Dual-target Antisense RNA in HBV Transgenic Mice;双靶区反义RNA对HBV转基因鼠抗病毒疗效的研究
6.Experimental Study on the Reversing Effect to HepG2/ADM Cell of Recombinant Adenovirus Vector Carring MDR1-Antisence RNA;携mdr1反义RNA重组腺病毒逆转HepG2/ADM的实验研究
7.Studies on the Regulation of Lignin Biosynthesis by Antisense RNA;利用反义RNA技术调节木质素生物合成的研究
8.Inhibitory Effect of MT1-MMP Antisense Nucleotide on Invasion of Human Gastric Cancer Cell Line BGC823;反义RNA对胃癌细胞BGC823侵袭性的抑制作用的研究
9.Applications of antisense-RNA technology in filamentous fungal metabolic engineering-a review反义RNA技术在丝状真菌代谢工程中的应用
10.Construction and transformation of antisense RNA expression vector of Arabidopsis phytochrome A gene拟南芥光敏色素A反义RNA载体的构建及转化
11.Reducing the Maize Amylopectin Content Through Anti-Sense Manipulation用反义RNA技术创造高直链淀粉玉米材料
12.The Influence of pH Value on the Absorption of RNA Interference Oligos of FOXO1 and GDF-8 GenepH值对FOXO1、GDF-8基因反义RNA寡核苷酸吸收的影响
13.Reversion of the Malignant Phenotype of Gastric Cancer by c-erbB-2 Specific Ribozyme and Antisense RNA;c-erbB-2特异性核酶及反义RNA对胃癌细胞恶性表型的逆转
14.Construction of PCNA Antisense RNA Expression Vector and Its Effect on the Malignant Phenotype of Gastric Cancer Cell Line SGC-7901;PCNA反义RNA表达载体的构建及其对胃癌细胞SGC-7901恶性表型的影响
15.The Study on the Anti-Gastric Cancer Effects and Mechanism of B7-H1 Antisense RNA Modified Dendirtic Cells Vaccine;B7-H1反义RNA修饰的树突状细胞疫苗抗胃癌作用及其机理研究
16.Construction of Microsphere Encapusulation of Recombinant Adenovirus Carrying Antisense Multidrug Resistance-associated Protein Gene and the Study of Reversing MRP with Hepatocellular Carcinoma;包载反义RNA重组腺病毒微球的制备及逆转肝细胞癌MRP的研究
17.Antisense Inhibition of COX-2 and NSAIDs Reduce Malignant Phenotype of Bladder Cancer Cells;COX-2反义RNA与NSAIDs抑制膀胱癌细胞恶性表型的实验研究
18.Experimental Study of the Inhibitory Effect on Prostate Cancers by Adenoviral-Mediated Gene Transfer of Antisense ODC;腺病毒介导的鸟氨酸脱羧酶反义RNA抑制前列腺癌的实验研究
相关短句/例句

Anti-sense RNA反义RNA
1.Hepatocarcinoma specific IL-1β anti-sense RNA inhibits implanted hepatocarcinoma in mice肝癌细胞特异性IL-1β反义RNA对小鼠移植肝癌的抑制
2.The aim of this study was to investigate the inhibiting effect of CⅡTA anti-sense RNA on MHCⅡ expression.为了探讨CⅡTA的反义RNA对细胞表面主要组织相容性复合物(majorhistocompatibilitycomplex,MHC,亦称HLA)Ⅱ类抗原表达的抑制作用,克隆与人类CⅡTA基因第114-523位点之间序列互补的反义RNA(arCⅡTA)cDNA序列,并稳定转染Raji细胞,用流式细胞术检测经典MHCⅡ类抗原(HLADR、DP、DQ)表达,并应用RTPCR方法检测CⅡTA、经典MHCⅡ类及恒定链的mRNA水平。
3.Bacteriophage encoded resistance,anti-sense RNA,suicide trap and the application of restriction and modification system are several anti-bacteriophage tactics developed recently.噬菌体编码的抗性、反义RNA技术、自杀陷阱及限制/修饰系统的应用是近年来发展起来的几种抗噬菌体策略,着重对其作用机制、研究进展及其意义作一介绍。
3)VEGF antisense RNAVEGF反义RNA
1.The inhibitory of VEGF antisense RNA on the proliferation and apoptosis of C6 cells in vitro were obserced.目的探讨VEGF反义RNA对C6鼠胶质瘤细胞体外作用。
2.Methods TE-1cells transfected with VEGF antisense RNA、pcDNA3.目的探讨VEGF反义RNA对食管癌细胞在裸鼠体内生长的影响。
4)RNA antisense(AS)RNA反义
5)cdk2 antisense RNAcdk2反义RNA
6)Antisense Tat反义Tat RNA
延伸阅读

反义RNA分子式:CAS号:性质:指能与特定DNA或RNA互补结合、抑制基因表达的RNA片段。在复制水平上,反义RNA与RNA 引物互补结合抑制复制;当反义RNA与mRNA5′非编码区或翻译起始部位结合时,可使mRNA不能与核糖体结合或阻止核糖体沿mRNA移动;与真核基因初始转录产物各加工位点;如5′端帽结构形成位点、内含子外显子结合位点、多聚A形成位点等结合时,则影响mRNA的加工成熟和从核内向胞浆转移,从而达到专一抑制基因表达。这将成为寻找低毒、高选择性抗肿瘤抗病毒药物的途径。在合适的启动子和终止子之间,反向插入靶基因,可构建表达反义RNA的重组体,在细胞内表达反义RNA而抑制靶mRNA的表达。反义RNA可以通过重组DNA技术和人工合成法得到。天然反义RNA调控系统广泛存在于原该生物中。