首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >Pharmacological characterization of rabbit corpus cavernosum relaxation mediated by the tissue kallikrein-kinin system.
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Pharmacological characterization of rabbit corpus cavernosum relaxation mediated by the tissue kallikrein-kinin system.

机译:组织激肽释放酶-激肽系统介导的兔海绵体松弛的药理学表征。

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摘要

1. The roles of the tissue kallikrein-kinin system and nitric oxide (NO) release in Phoneutria nigriventer venom-induced relaxations of rabbit corpus cavernosum (RbCC) smooth muscle have been investigated by use of a bioassay cascade. 2. Phoneutria nigriventer venom (10-30 micrograms), porcine pancreatic kallikrein (100 mu), rabbit urinary kallikrein (10 mu), bradykinin (BK, 0.3-3 nmol), acetylcholine (ACh, 0.3-30 nmol) and glyceryl trinitrate (GTN, 0.5-10 nmol) caused relaxations of the RbCC strips. Captopril (1 microM) substantially potentiated Phoneutria nigriventer venom- and BK-induced RbCC relaxations without affecting those elicited by GTN. 3. The bradykinin B2 receptor antagonist, Hoe 140 (D-Arg-[Hyp3,Thi5,D- Tic7,Oic8]-BK, 50 nM), aprotinin (10 micrograms ml-1) and the tissue kallikrein inhibitor, Pro-Phe-Aph-Ser-Val- Gln-NH2 (KIZD-06, 1.3 microM) significantly inhibited Phoneutria nigriventer venom-induced RbCC relaxations, without affecting those provoked by GTN and ACh. The B1 receptor antagonist, [Leu9]des Arg10BK (0.5 microM) and soybean trypsin inhibitor (SBTI, 10 micrograms ml-1) had no effect on Phoneutria nigriventer venom-induced RbCC relaxations. 4. The relaxations induced by Phoneutria nigriventer venom, porcine pancreas kallikrein, BK and ACh were significantly inhibited by N omega-nitro-L-arginine methyl ester (L-NAME, 10 microM) but not by D-NAME (10 microM). L-NAME did not affect GTN-induced relaxations. L-Arginine (300 microM), but not D-arginine (300 microM), significantly reversed the inhibitory effect of L-NAME. 5. Our results indicate that Phoneutria nigriventer venom activates the tissue kallikrein-kininogen-kinin system in RbCC strips leading to NO release and suggest a functional role for this system in penile erection.
机译:1.已通过生物测定级联研究了组织激肽释放酶激肽系统和一氧化氮(NO)释放在黑夜病原毒诱导的兔海绵体(RbCC)平滑肌松弛中的作用。 2. Phoneutria nigriventer毒液(10-30微克),猪胰激肽释放酶(100亩),兔泌尿激肽释放酶(10亩),缓激肽(BK,0.3-3 nmol),乙酰胆碱(ACh,0.3-30 nmol)和三硝酸甘油酯(GTN,0.5-10 nmol)导致RbCC条带松弛。卡托普利(1 microM)在不影响GTN诱导的舒张压的情况下,可显着增强黑腹Phoneutria nigriventer毒液和BK引起的RbCC舒张。 3.缓激肽B2受体拮抗剂Hoe 140(D-Arg- [Hyp3,Thi5,D-Tic7,Oic8] -BK,50 nM),抑肽酶(10微克ml-1)和组织激肽释放酶抑制剂Pro-Phe -Aph-Ser-Val- Gln-NH2(KIZD-06,1.3 microM)显着抑制黑腹Phoneutria nigriventer毒液引起的RbCC松弛,而不会影响由GTN和ACh引起的松弛。 B1受体拮抗剂[Leu9] des Arg10BK(0.5 microM)和大豆胰蛋白酶抑制剂(SBTI,10微克ml-1)对黑腹Phoneutria nigriventer毒诱导的RbCC松弛没有影响。 4. Nω-硝基-L-精氨酸甲酯(L-NAME,10 microM)显着抑制了Phoneutria nigriventer毒液,猪胰腺激肽释放酶,BK和ACh引起的松弛,但D-NAME(10 microM)没有明显抑制。 L-NAME不影响GTN诱导的松弛。 L-精氨酸(300 microM),而不是D-精氨酸(300 microM),显着逆转了L-NAME的抑制作用。 5.我们的结果表明,黑腹风笛毒液会激活RbCC条中的组织激肽释放酶-激肽原-激肽系统,导致NO释放,并提示该系统在阴茎勃起中发挥功能性作用。

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