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The role of nitric oxide in the effects of ovarian steroids on spontaneous myometrial contractility in rats

机译:一氧化氮在卵巢类固醇对大鼠自发性子宫肌层收缩性影响中的作用

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Forty ovariectomized rats were apportioned into one control and three experimental groups (n=10 each) to evaluate the role of nitric oxide in the effects of ovarian steroids on spontaneous myometrial contractility in rats. The control group (group Ov) received sesame oil once daily for 10 days, whereas rats in the experimental groups were treated with progesterone (2 mg/(rat day); group P), 17beta-estradiol (10 microg/(rat day); group E2), or progesterone and 17beta-estradiol together (group E2+P). The functionality of the arginine-nitric oxide synthase (NOS)-nitric oxide (NO) pathway in the uterine horns of sacrificed rats was evaluated in an isolated organ bath. L-Arginine, sodium nitroprusside (SNP) and 8-Br-cGMP decreased uterine contractile tension induced by electric field stimulation (EFS) in the Ov, P, and E2+P groups, but not in the E2 group. In addition, L-arginine was ineffective when applied together with a NOS inhibitor, L-nitro-N-arginine (L-NNA). The percentage of contractile inhibition was higher in the Ov and P groups compared to the E2+P group. Immunohistochemical evaluation revealed that expression of neuronal NOS (nNOS), inducible NOS (iNOS), and endothelial NOS (eNOS) in smooth muscles and nerve cells did not differ among the groups. Expression of nNOS and eNOS was strongly evident in the E2 and E2+P groups at both surface and glandular epithelium of the endometrium. iNOS expression was increased in surface epithelium of the E2 and E2+P groups. However, iNOS expression was only increased in glandular epithelial cells of the E2+P group. In conclusion, the L-arginine-NOS-NO pathway inhibits myometrial contractions via cGMP-dependent and -independent mechanisms, and while progesterone maintains the nitric oxide effects, estrogen prevents them. These results suggest that NOS does not mediate the effects of estrogen.
机译:将40只卵巢切除的大鼠分为一个对照组和三个实验组(每组10只),以评估一氧化氮在卵巢类固醇对大鼠自发性子宫肌层收缩性的影响中的作用。对照组(Ov组)每天接受一次芝麻油,持续10天,而实验组中的大鼠接受孕酮(2 mg /(大鼠日); P组),17β-雌二醇(10 microg /(大鼠日)治疗。 ; E2组),或孕激素和17β-雌二醇一起(E2 + P组)。在离体器官浴中评估了处死大鼠子宫角中精氨酸一氧化氮合酶(NOS)-一氧化氮(NO)通路的功能。在Ov,P和E2 + P组中,L-精氨酸,硝普钠(SNP)和8-Br-cGMP降低了电场刺激(EFS)引起的子宫收缩张力,但在E2组中没有。此外,当与NOS抑制剂L-硝基-N-精氨酸(L-NNA)一起使用时,L-精氨酸无效。与E2 + P组相比,Ov和P组的收缩抑制百分比更高。免疫组织化学评估显示,两组平滑肌和神经细胞中神经元NOS(nNOS),诱导型NOS(iNOS)和内皮型NOS(eNOS)的表达没有差异。在子宫内膜的表面和腺上皮的E2和E2 + P组中,nNOS和eNOS的表达非常明显。在E2和E2 + P组的表面上皮中iN​​OS表达增加。但是,iNOS表达仅在E2 + P组的腺上皮细胞中增加。总之,L-精氨酸-NOS-NO途径通过cGMP依赖性和非依赖性机制抑制肌层收缩,而孕酮维持一氧化氮的作用,而雌激素则阻止了这些作用。这些结果表明,NOS不介导雌激素的作用。

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