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
Experimental study of gastric cancer cell apoptosis induced by survivin antisense RNA This is no death; there is truth eternal life. 反义生存素诱导胃癌细胞凋亡的实验研究这是一个奇迹:死亡不存在;而永恒的生命则确实存在。
The in situ hybridization effort estimation between antisense RNA probe and random primed DNA probe; Comparative study of two different kinds of needle approach after veni-puncture 不同方式标记非放射性探针原位杂交效果评价静脉穿刺后两种不同拔针方式的对比性研究
Effect of antisense RNA of NF-κ B on proliferation of vascular smooth muscle cells in spontaneously hypertensive rats 核因子-κB反义RNA对自发性高血压大鼠血管平滑肌细胞增殖的作用
It has been shown that this occurs in bacteria in that antisense RNA sets up base pairs with a certain messenger RNA ( m-RNA) precisely where the ribosomes would start their reading. 在细菌的细胞分离增殖活动中已被证实,反义RNA通过精确的碱基配对从而在此信使RNA的核糖体开始进行转录与翻译活动。
The effect of liposome-mediated telomerase antisense RNA on telomerase activity and cell proliferation of MCF-7 cells 脂质体介导端粒酶反义RNA对人乳腺癌细胞MCF-7活性及增殖的影响
In this case, instead, antisense RNA sets up base pairs far away from where the reading should start? but still manages to stop the reading. 在这种情况下,反而是反义RNA从远处的碱基配对开始转录,但它仍可达成阻止转录的开始。
Recombinant vector carrying antisense RNA to dual-target BAG-1 and Bcl-2 induces SGC-7901 cell apoptosis BAG-1、Bcl-2双靶区反义RNA重组载体诱导SGC-7901细胞凋亡
It was previously known that short, tiny control RNA, called antisense RNA, can stop the activity of genes by placing themselves so that "reading" of the code is impeded. 最初大家都只知道它的序列很短,是极其微小的RNA控制片断,大家叫它为反义RNA,它通过置换作用而阻止抑制基因的活性,从而阻碍密码子的转录与翻译活动。
Antisense RNA now being used in an attempt to provide an agent against bacteriophage genes to help in the constant struggle between lactic acid bacteria and their phages. 现在正在使用反义RNA技术试图提供一种抗噬菌体遗传因子的试剂,从而帮助乳酸菌和它们的噬菌体进行长期不问断的斗争。
Antisense RNA of survivin was confirmed by restriction enzyme digestion and DNA sequencing. 经限制性酶切和测序鉴定所构建的反义核酸是否正确;
Transcription of antisense RNA of hepatitis B virus through retroviral mediated gene transfer 逆转录病毒载体介导乙型肝炎病毒反义基因的转录表达
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
Effects of Telomerase Antisense RNA and bcl-2 Ribozyme on Hepatocarcinoma Cell Telomerase Activity Expression and Apoptosis 端粒酶反义RNA与bcl-2核酶对肝癌细胞端粒酶活性表达及细胞凋亡的影响
Objective: To study the effects of dual target antisense RNA against HBV infection. 目的:研究双靶区反义RNA的逆转录病毒载体的转染、表达及其抗乙肝病毒(HBV)的作用。
Antisense RNA technology was an effective way to silencing specific gene, and was widely employed in plant breeding. 反义RNA技术是一种很有效的使基因沉默的方法,目前已广泛应用于植物的遗传育种中。
Antisense RNA molecules deactivates target gene by binding to the sense strand. 反义RNA技术是用反义RNA链去抑制靶基因的活性,从而达到对目的基因调控的一项分子生物学技术。
Conclusion The RT-PCR method can extract the gallbladder cancer cell's hTR gene. Construction of the eukaryon expression vector containing the antisense RNA gene is the foundation for gene therapy of gallbladder cancer. 结论RT-PCR法可调出胆囊癌hTR基因有效片段,成功构建了针对hTR模板区的反义RNA基因的真核表达载体,为胆囊癌的基因治疗奠定了良好的基础。
CONCLUSION Telomerase antisense RNA repressed expression can inhibit laryngeal carcinoma cells of Hep 2 growth significantly. 结论以端粒酶反义RNA降低端粒酶表达的方法对人喉癌细胞系Hep-2的生长有明显抑制作用。
Conclusions: VEGF antisense RNA may be one of the antiangiogenesis for the new strategy of tumor treatment. 结论采用VEGF反义RNA可能成为抗血管形成肿瘤治疗的新策略之一。
Conclusion Antisense RNA of RAGE 、 NF-κ B single/ double gene coexpression vector were successfully construct. 结论RAGE、NFκB反义RNA单/双基因共表达载体构建成功。
Antisense oligonucleotide ( ASON) includes antisense RNA, antisense DNA and Ribozyme. 反义寡核苷酸包括反义RNA、反义DNA和Ribozyme。
Objective To reverse the drug resistance of glioma by antisense RNA. 目的利用反义技术逆转胶质瘤的耐药性。
Objective To investigate the anti-angiogenic effect of amphiregulin ( AR) antisense RNA expression in breast cancer. 目的研究双调蛋白(AR)反义RNA表达对乳腺癌血管生成的抑制作用。
AIM To construct eukaryotic vector expressing antisense RNA of HAb18G. 目的构建HAb18G反义RNA表达质粒载体。
We discussed the mechanisms of ribozyme, gene silencing and antisense RNA in plant protection through the way of gene transformation. 我们利用基因转化方法,对核酶、基因沉默和反义RNA技术在抗病中的应用进行探讨。
The changes in growth characteristics and tumorigenicity of human lung squamous carcinoma cells transfected with ODC antisense RNA expression plasmid and the molecular mechanism of these changes were studied systematically. 我们采用反义RNA技术,首次构建了ODC反义RNA真核表达质粒,并对被其转染的人肺鳞癌细胞在生长特性、致瘤性方面的改变及其分子机理进行了较系统的研究。
The combination of antisense RNA with the target genes can affect the expression through a variety of different mechanisms. 反义寡核苷酸与靶标基因的RNA结合后可通过多种不同的机制影响靶标基因的表达。