激素释放因子

  • 网络Hormone releasing factor;MRF;luteinizing hormone-releasing factor activity;CRF;CRH;GRF
激素释放因子激素释放因子
  1. 研究中,一定剂量的促皮质激素释放因子激活雌性小白鼠脑细胞的速度要远快于雄性小白鼠。

    In the study , brain cells of female rats were excited by doses of CRF that were too low to affect cells in male rats , the journal Molecular Psychiatry reports .

  2. 生长激素释放因子在CHO细胞的表达

    Expression of Growth Hormone Releasing Factor in CHO Cells

  3. CHO表达生长激素释放因子的生物活性测定

    Determination of the Activity of Growth Hormone Releasing Factor Expressed in CHO Cells

  4. 放射免疫法测定其下丘脑、蓝斑促肾上腺皮质激素释放因子(CRF)。

    CRF in hypothalamus and locus ceruleus was detected by the method of radioimmunoassay .

  5. 建立了间接ELISA定量测定生长激素释放因子(GRF)的方法。

    A new ELISA method was developed to detect Growth Hormone Releasing Factor ( GRF ) in this study .

  6. 目的观察束缚应激对局灶性脑缺血大鼠的运动行为及脑内促肾上腺皮质激素释放因子(CRF)表达的影响。

    Objective To observe the effect of restraint stress on behavior and corticotropin-releasing factor ( CRF ) expression after focal cerebral ischemia in rats .

  7. 几乎只有向脑室内注入秋水仙素之后,才能在其丘脑下部室旁核(PVN)显示促肾上腺皮质激素释放因子(CRF)免疫反应神经元。

    The corticotropin releasing factor immunoreactive ( CRFi ) neurons were exposed in the hypothalamic paraventricular nuclei ( PVN ) almost only after intraventricular injection of colchicine .

  8. 促肾上腺皮质激素释放因子(CRF)是下丘脑-垂体-肾上腺轴的主要调节因子,协调内分泌、自主神经系统、行为学及免疫系统等方面对应激性刺激的反应。

    Corticotropin-releasing factor ( CRF ) is the prime regulator of the hypothalamus-pituitary-adrenal ( HPA ) axis , coordinating endocrine , autonomic , behavioral , and immune responses to stress .

  9. 目的:观察中药金思维对脑缺血模型大鼠海马神经细胞促肾上腺皮质激素释放因子(CRF),蛋白激酶C(PKC)蛋白表达的影响。

    Objective : To explore the influence of one Chinese herbal extract complex ( GETO ) on the expression of corticotropin-releasing factor ( CRF ) and protein kinasec ( PKC ) proteins of the hippocampus in middle cerebral artery orilusion ( MCAO ) rats .

  10. Urocortin(Ucn)是促肾上腺皮质激素释放因子(corticotropin-releasingfactor,CRF)肽类家族中的新成员。自从被发现以来,Ucn已被证实在心血管系统的功能调节中发挥重要的作用。

    As a new member of the corticotropin-releasing factor ( CRF ) peptide family , Urocortin ( Ucn ) has been demonstrated to show protective effect on cardiovascular system since it was isolated .

  11. 牛生长激素释放因子类似物基因的克隆与表达

    Cloning and expression of bovine growth hormone releasing factor analogue gene

  12. 镉的免疫毒性与促肾上腺皮质激素释放因子的关系

    Study on the relationship between cadmium immunotoxicity and corticotropin releasing factor

  13. 生长激素释放因子和垂体腺苷酸环化酶激活肽基因的共表达

    Co-expression of Growth Hormone Releasing Factor and Pituitary Adenylate Cyclase Genes

  14. 家兔肌肉组织表达外源性生长激素释放因子对增重的影响

    Effect of Growth Hormone-releasing Factor Expressed in Rabbit Skeletal Muscle on Rabbit Growth

  15. 镉对大鼠促肾上腺皮质激素释放因子的影响

    Effects of cadmium on rat corticotropin - releasing factor

  16. 人生长激素释放因子基因的高效表达

    The High Expression of hGRF Gene

  17. 牛生长激素释放因子的融合表达及其产物的化学加工

    Fusion Expression of the Synthesized Gene of Bovine Growth Hormone-Releasing Factor and the Chemical-Processing of the Product

  18. 促卵泡激素释放因子

    Follicle stimulating hormone releasing factor

  19. 促黄体生成激素释放因子

    Luteinizing hormone releasing factor

  20. 短期促性腺激素释放因子治疗相关的副作用是常见的,但严重到足以停药的程度是罕见的。

    Adverse effects associated with short-term gonadorelin agonists are common , but are rarely serious enough to require drug withdrawal .

  21. 最后,可以得到的生长激素释放抑制因子的量还是很有限的。

    Finally , relatively limited amounts of somatostatin are available .

  22. 生长抑素是生长激素释放的抑制因子,是一种神经活性肽,广泛分布于中枢神经系统和周围组织,包括眼组织。

    Somatostatin released by growth hormone is an inhibiting factor and active nervous peptide , and it is mainly distributed in center nerve system , peripheral tissue and ocular tissue .

  23. 生长激素释放多肽通过与生长激素释放因子不同的受体起作用

    Effect and Mechanism of Growth Hormone-Releasing Factor to Growth Hormone Release

  24. 生长抑制激素是一类肽类激素,也称之为生长激素抑制激素以及生长激素释放抑制因子,它能调节内分泌系统而且通过与G蛋白偶联的生长抑素受体来影响神经传递及细胞增生。

    Somatostatin ( also known as growth hormone-inhibiting hormone ( GHIH ) or somatotropin release-inhibiting factor ( SRIF )) is a peptide hormone that regulates the endocrine system and affects neurotransmission and cell proliferation via interaction with G-protein-coupled somatostatin receptors .