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Effect of two novel CGRP-binding compounds in a closed cranial window rat model.

机译:两种新型CGRP结合化合物在闭合颅窗大鼠模型中的作用。

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We investigated the in vivo effects of two novel calcitonin gene-related peptide (CGRP) binding molecules in the genuine closed cranial window model in the rat. The RNA-Spiegelmer (NOX-C89) and the monoclonal CGRP antibody are CGRP scavengers and might be used as an alternative to CGRP-receptor antagonists in the treatment of migraine. Rats were anaesthetized and a closed cranial window established. Changes in dural and pial artery diameter and mean arterial blood pressure were measured simultaneously. Infusion of the RNA-Spiegelmer or the CGRP antibody alone had no effect on the arteries or the mean arterial blood pressure. We then used a bolus of 0.3 microg/kg CGRP (n=6) or electrical stimulation (25 V, 5 Hz, 1 ms pulse width and of 10 s of duration) (n=6) to induce dilatation of dural and pial arteries (mediated via CGRP-receptors). Pre-treatment with the RNA-Spiegelmer inhibited CGRP-induced vasodilatation of the dural artery (from 38+/-17% to 7+/-3%) and the pial artery (from 14+/-1% to 3+/-2%) (P<0.05). The RNA-Spiegelmer, however, did not significantly inhibit dilatation induced by electrical stimulation (P>0.05). The CGRP antibody caused a significant reduction of the dural artery diameter caused by intravenous CGRP-infusion (from 23+/-5% to 12+/-3%) (P<0.05), but did not inhibit dilatation caused by electrical stimulation (P>0.05). In conclusion, the CGRP scavengers effectively inhibited the effect of circulating CGRP but do not modify the effect of electrical stimulation and the consequent liberation of CGRP from perivascular sensory nerve fibres.
机译:我们在大鼠的真实闭合颅窗模型中研究了两种新型降钙素基因相关肽(CGRP)结合分子的体内作用。 RNA-Spiegelmer(NOX-C89)和单克隆CGRP抗体是CGRP清除剂,可在偏头痛的治疗中用作CGRP受体拮抗剂的替代品。麻醉大鼠并建立闭合的颅窗。同时测量硬脑膜和颈动脉直径的变化以及平均动脉血压。单独输注RNA-Spiegelmer或CGRP抗体对动脉或平均动脉血压无影响。然后,我们使用0.3 microg / kg CGRP推注(n = 6)或电刺激(25 V,5 Hz,1 ms脉冲宽度和10 s的持续时间)(n = 6)诱导硬膜和胸膜动脉扩张(通过CGRP受体介导)。用RNA-Spiegelmer进行预处理可抑制CGRP诱导的硬膜动脉(从38 +/- 17%到7 +/- 3%)和胸膜动脉(从14 +/- 1%到3 +/-)的血管舒张2%)(P <0.05)。然而,RNA-Spiegelmer不能明显抑制电刺激引起的扩张(P> 0.05)。 CGRP抗体可导致静脉CGRP输注引起的硬脑膜动脉直径的显着减小(从23 +/- 5%降至12 +/- 3%)(P <0.05),但并未抑制电刺激引起的扩张( P> 0.05)。总之,CGRP清除剂有效地抑制了循环CGRP的作用,但没有改变电刺激的作用以及随之而来的CGRP从血管周围感觉神经纤维中的释放。

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