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- Progesterone hydroxylase 黄体酮羟化酶
- Of or relating to progesterone and its actions. 黄体激素或其活动的或与其有关的
- In the second, progesterone is circulating, too. 而第二次中血液中还出现了黄体酮。
- The invention also relates to tyrosine hydroxylase revulsant. 本发明化合物是酪氨酸羟化酶诱导剂。
- Blood progesterone remains constant throughout pregnancy. 血液孕酮含量在全妊娠期保持不变。
- Blood progesterone remains constant throughout pregnancy . 血液孕酮含量在全妊娠期保持不变。
- Methods: To induce as PCO models by progesterone and HCG. 方法:采用孕激素加HCG建立PCO大鼠模型。
- Conclusion Syringoma may be under the control of progesterone. 结论汗管瘤的发生可能与孕激素有关。
- Blood progesterone remains constant throughout pregnancy in the eve. 牛和绵羊血液孕酮含量在全妊娠期保持不变。
- Exercise also decreased striatal DA transporter and tyrosine hydroxylase immunoreactivity in MPTP-lesioned mice. 运动也可以减少纹状体多巴胺转运体,还能抑制酪氨酸羟化酶的免疫反应性。
- We need cholesterol to make oestrogen, progesterone and testosterone. 从医学角度讲,脂肪、胆固醇可以调节人体内部的激素水平,比如黄体酮、雌激素以及睾丸激素等等。
- But for women, daily injections of progesterone would be painful and costly. 但是转移到人身上,每日注射孕酮既痛苦又昂贵。
- Exercise also decreased striatal DA transporter and tyrosine hydroxylase immunoreactiity in MPTP-lesioned mice. 运动也可以减少纹状体多巴胺转运体,还能抑制酪氨酸羟化酶的免疫反应性。
- Tyrosine hydroxylase (TH), the limited enzyme in the synthesis process of NE, has much to do with depressive disorder. 酪氨酸羟化酶(TH)作为NE合成的限速酶,与抑郁症密切相关。
- A natural or synthetic progestational substance that mimics some or all of the actions of progesterone. 孕激素天然或人工妊娠素物质,其模仿黄体荷尔蒙的部分或全部活动
- Phenylketonuria(PKU) is one kinds of autusomal recessive disease caused by phenylalanine hydroxylase(PAH) gene mutation. 苯丙酮尿症是由于苯丙氨酸羟化酶基因突变引起的常染色体隐性遗传病。
- All the sex hormones, e.g. estrogens, progesterone, and testosterone, are steroids. 所有的性激素,例如雌激素,黄体酮和睾酮都是类固醇。
- After labeled by tyrosine hydroxylase, the differentiated dopaminergic neuron proportion was detected by a flow cytometer. 酪氨酸羟化酶染色标记后通过流式细胞仪检测分化的多巴胺能神经元比率。
- Objective: To study the relationship between the expression of tyrosine hydroxylase (TH) in adrenals and adrenal medulla hyperplasia (AMH) in rats. 目的 :探讨酪氨酸羟化酶 (TH)蛋白在肾上腺髓质增生 (AMH)大鼠肾上腺组织中的表达与肾上腺髓质增生的关系。