But adenosine also ACTS as a natural painkiller, becoming active in the skin after an injury to inhibit nerve signals and ease pain in a way similar to lidocaine.
但是腺苷也是一种天然的镇痛剂。受伤后皮肤上的腺苷会变得很活跃,以此来抑制神经信号并缓解疼痛;其缓解方式与利多卡因的作用方式相似。
Conclusions The R PIA, a stable specific adenosine A 1receptor agonist, may mediate delayed myocardial preconditioning which reduces significantly the infarct size of myocardium in rats.
结论RPIA可使大鼠在体心脏产生延迟预适应(显著降低心肌梗死范围) ;
Objective This experiment was expected to test whether adenosine A1 receptors exerted a significant effect on the discharge activities of biphasic expiratory neurons and inspiratory neurons.
目的探讨腺苷A1受体对双相呼气神经元和吸气神经元电活动的影响。
Some researchers have hypothesized that it is the cumulative binding of adenosine to a large number of sites that causes the onset of sleep.
一些研究人员假设,腺苷与大量位点的累积结合导致了睡眠的开始。
Half of the mice lacked a gene that is needed to make adenosine receptors, which are dotted along major nerves.
半数的小鼠缺乏一种制造腺苷酸受体的基因,这种受体沿着(动物的)主要神经分布。
Phosphorus chains form the backbone of DNA and its chemical bonds, particularly in a molecule known as adenosine triphosphate, the principal means by which biological creatures store energy.
磷链构成DNA的骨架及其化学键,特别是在一种叫做三磷酸腺苷的分子中。 三磷酸腺苷是生物体储存能量的一种重要形式。
It blocks adenosine, a chemical that makes you drowsy.
它阻挡腺苷,腺苷是一种使你昏昏欲睡的化学物质。
Research has supported the idea that caffeine, a natural stimulant, Narrows blood vessels by blocking the effects of a hormone called adenosine, which normally keeps them widened.
这一新的研究成果对下面这一理论表示支持,即咖啡因这种天然的刺激物会防碍一种被称为腺苷(adenosine)的激素发挥作用,从而使血管变得狭窄。腺苷的作用则是让血管保持宽敞。
The researchers found that rotation of the acupuncture needles damaged tissue, which caused a release of adenosine, a known anti-inflammatory mediator.
研究者发现,针炙针的旋转破坏了一些组织,从而导致腺苷酸(一种已知的抗发炎介质)的释放。
They found a 24-fold rise in adenosine, which seemed promising.
他们发现,腺苷增加了24倍,这似乎指明了方向。
Through a series of experiments, the UNC researchers showed that PAP removes the phosphate group, generating adenosine.
UNC的研究者通过一系列的实验证明,PAP移除了磷酸基团,产生了腺苷酸。
A a nucleotide derived from adenosine that occurs in muscle tissue; the major source of energy for cellular reactions.
肌肉细胞中由腺苷衍生而来的核苷酸,细胞反应的主要能源。
We conclude that both high myocardial adenosine level and high vagal tone may result in sinus bradycardia and A-V block.
实验结果提示:高腺苷含量及高迷走神经张力均可以起窦性心率减慢及房室传导阻滞。
ObjectiveTo evaluate the beneficial effects of adenosine on myocardial no-reflow in a mini-swine model of acute myocardial infarction (AMI) and reperfusion.
目的评价腺苷防治猪急性心肌梗死(AMI)再灌注后无再流的作用。
For the first time, the researchers discovered that when adenosine receptors are activated on cells that comprise the blood-brain barrier, a gateway into the blood-brain barrier can be established.
当腺苷受体在构成血脑屏障的细胞上被激活后即建立了穿越血脑屏障的通道。这发现在医学史上尚属首次。
The research focuses on adenosine, a natural compound known for its role in regulating sleep, for its effects on the heart, and for its anti-inflammatory properties.
研究关注于腺苷酸,一种调节睡眠,影响心脏,抗炎等特性的天然化合物。
A mononucleotide, C10H14N5O7P, found in animal cells and reversibly convertible to ADP and ATP; adenosine monophosphate.
一磷酸腺苷单核苷酸,C10 H 14n5o 7p,发现于动物细胞中并能可逆地转化为二磷酸腺苷和三磷酸腺苷;一磷酸腺苷。
And they found that the tissues around the treated acupoint get flooded with adenosine, a chemical that provides relief by preventing pain signals from reaching the brain.
科学家们发现扎银针周围的组织出现了大量的腺苷,腺苷通过阻止疼痛信号传到大脑,从而达到止痛的目的。
We found that most molecules participate in just one or two reactions, but a few ( the hubs ), such as water and adenosine triphosphate , play a role in most of them.
我们发现,大部份的分子只会参与一或两种反应,但是有些分子(集散点)却会出现在大部份反应当中,比如水与三磷酸腺苷。
Adenosine monophosphate (AMP) challenge is a diagnostic tool for asthma.
单磷酸腺苷(AMP)为哮喘的一个诊断指标。
Objective To optimize the electroporation parameters in mouse primary lymphocyte cultured in suspension with adenosine deaminase acting on RNA 1(ADAR1) as a reporter gene.
目的以RNA依赖性腺嘌呤脱氨酶(ADAR1)为靶基因优化悬浮培养的小鼠原代淋巴细胞的电穿孔转染条件。
When we are awake, a chemical called adenosine builds up in the bloodstream.
当我们清醒时,血液循环中会产生一种叫做腺苷的化学物质。
Embedded in the membrane of each mitochondrion is a structure called the electron transport chain, which produces adenosine triphosphate (ATP), a molecule that is the source of the cell's energy.
每个线粒体隔膜上镶嵌着一种称为“电子传递链”的结构,它能够产生三磷酸腺苷(atp),这个分子是细胞的能量之源。
Based on it, a novel homogeneous aptamer recognizing based method for adenosine detection was established.
基于此,建立了核酸适配体识别的均相检测腺苷的新方法。
A rapid detection meter for bacterial count based on ATP (adenosine triphosphate) bioluminescence technology was designed.
针对细菌总数现场检测需求,设计了一种基于ATP(三磷酸腺苷)生物发光技术的细菌总数现场快速检测仪。
A rapid detection meter for bacterial count based on ATP (adenosine triphosphate) bioluminescence technology was designed.
针对细菌总数现场检测需求,设计了一种基于ATP(三磷酸腺苷)生物发光技术的细菌总数现场快速检测仪。
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