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- High Pressure inactivation of microorganisms. 微生物高压失活。
- Inactivation of HIV in blood plasma by high hydrostatic pressure. 高静水压血浆中HIV的失活。
- We know a lot about the structure of gene now. 如今我们对基因的结构有了较多的了解。
- Principles of Gene Engineering II. 简明基因工程原理2。
- We know a lot about the structure of genes now. 如今我们对基因的结构有了较多的了解。
- Biallelic inactivation of the NF2 gene was detected in 36% of meningiomas. NF2双等位基因钝化可在36%25的脑膜瘤中检测到。
- inactivation of gene 基因灭活(分)
- Mechanisms and Kinetics of Pressure Inactivation of Enzymes. 压力失活酶机制及动力学。
- The present study demonstrated that ERW down-regulated VEGF gene transcription and protein secretion through inactivation of ERK. 本研究显示电解还原水(ERW)可藉由使ERK(细胞外讯息传递)的失能化,抑制VEGF的基因转录及蛋白质分泌。
- Inactivation of TP53 and activation of c-Myc may play a role in the transcriptive activation of hTERT gene in breast carcinoma. 抑癌基因TP53功能失活及原癌基因c-Myc转录水平上调可能与乳腺癌hTERT基因转录激活有关。
- These tiny seeds of genes are called "roe. 这些微小的基因种子被称作“鱼卵”。
- Abnormal PTEN expression is associated with PTEN gene mutation, the mutation of PTEN gene is the main mechanism of the inactivation of PTEN gene. 2. 中文摘要结论1.PTEN蛋白表达异常与PTEN基因突变有关,PTEN基因突变是基因失活的重要机制之一。
- The complete set of genes for an organism is called its genome. 一个有机体的全套基因称为它的基因组。
- The inactivation of DCC gene is an important factor which influences prognosis of large intestinal cancer. The mechanism of DCC gene inactivation is mainly DCC sequence mutation. 结论:DCC基因失活可能是影响大肠癌预后的重要因素之一;肝转移者发生DCC表达失活的主要机制是发生了基因突变.
- It indicated that Cu??2+? was a synergist for inactivation of HAV by vitamin C. 这说明铜离子对维生素C灭活甲型肝炎病毒有增效作用。
- Inactivation of lipase in wheat g erm by microwave was studied in this paper . 要研究了利用微波技术钝化小麦胚芽中解脂酶的方法。
- Joint effect of two kind of genes on gastric cancer? 两种基因联合抗胃癌作用是否增强?
- TRM is a set of genes that is regulated by a common set of TFs. 所谓的转录调控模组指的是由共同的转录因子们所调控的基因群。
- Undesired immune responses limit duration of gene expression. 无法预计的免疫反应限制了基因表达的时间.
- The destruction on inactivation of cyanide ion may be accomplished by complexion formation. 可以通过形成络合物的方法来破坏氰离子发生钝化作用。