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一氧化氮化合物对体外猴睫状肌的影响。

Effect of nitric oxide compounds on monkey ciliary muscle in vitro.

机构信息

Department of Ophthalmology & Visual Sciences, University of Wisconsin, 600 Highland Ave, Madison, WI 53792, United States.

出版信息

Exp Eye Res. 2011 Sep;93(3):321-7. doi: 10.1016/j.exer.2010.12.003. Epub 2010 Dec 10.

Abstract

The effects of various nitric oxide compounds and their inhibitors on monkey ciliary muscle contraction in vitro were investigated in both the longitudinal and circular vectors. The responses to nitric oxide compounds in carbachol precontracted ciliary muscle consisted of an initial relaxation often followed by recovery to near carbachol precontracted levels while the compound was still present. Sodium nitroprusside produced the greatest relaxation responses (nearly 100% relaxation in both vectors at 10(-3) M). The highest concentrations of isosorbide dinitrate (10(-4) M) and L-arginine (10(-3) M) produced relaxation responses of approximately 50% in both vectors. 8-Bromo cyclic GMP produced the smallest relaxation responses (25-35%). Nitric oxide synthase inhibition enhanced carbachol contraction up to 20% in the longitudinal but not the circular vector. Phosphodiesterase inhibition did not further enhance the relaxation response to L-arginine. Guanylate cyclase inhibition partially attenuated the relaxation response to sodium nitroprusside. Nitric oxide generating compounds were effective in relaxing precontracted monkey ciliary muscle in vitro. Endogenous production of nitric oxide is likely involved in the regulation of the contractile response in monkey ciliary muscle. Nitric oxide generating compounds may have potential value in therapeutic areas where modulation of ciliary muscle tension is desirable.

摘要

研究了各种一氧化氮化合物及其抑制剂对猴睫状肌体外收缩的纵向和环形向量的影响。在乙酰胆碱预收缩的睫状肌中,对一氧化氮化合物的反应最初是松弛,通常随后恢复到接近乙酰胆碱预收缩水平,而化合物仍然存在。硝普钠产生最大的松弛反应(在 10(-3)M 时,两个向量的松弛率均接近 100%)。硝酸异山梨酯(10(-4)M)和 L-精氨酸(10(-3)M)的最高浓度在两个向量中产生约 50%的松弛反应。8-溴环鸟苷产生最小的松弛反应(25-35%)。一氧化氮合酶抑制在纵向但不在环形向量中增强乙酰胆碱收缩高达 20%。磷酸二酯酶抑制不能进一步增强 L-精氨酸的松弛反应。鸟苷酸环化酶抑制部分减弱了对硝普钠的松弛反应。产生一氧化氮的化合物可有效松弛体外预收缩的猴睫状肌。内源性一氧化氮的产生可能参与调节猴睫状肌的收缩反应。产生一氧化氮的化合物在需要调节睫状肌张力的治疗领域可能具有潜在价值。

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