Department of Urology, Ludwig-Maximilians-Universitat, Munich, Germany.
J Urol. 2013 Jun;189(6):2364-70. doi: 10.1016/j.juro.2012.11.165. Epub 2012 Dec 3.
We assessed whether spinal inhibition of the cannabinoid degrading enzyme FAAH would have urodynamic effects in normal rats and rats with bladder overactivity induced by partial urethral obstruction or prostaglandin E2. We also determined the expression of FAAH, and the cannabinoid receptors CB1 and CB2 in the sacral spinal cord.
We used 44 rats for functional (cystometry) and Western blot experiments. The FAAH inhibitor oleoyl ethyl amide (3 to 300 nmol) was administered intrathecally (subarachnoidally) or intravenously. The expression of FAAH and CB1/CB2 receptors was determined by Western blot.
Oleoyl ethyl amide given intrathecally affected micturition in normal rats and rats with bladder overactivity but effects were more pronounced in the latter. In normal rats oleoyl ethyl amide only decreased micturition frequency, while it decreased frequency and bladder pressures in rats with bladder overactivity. Intravenous oleoyl ethyl amide (3 to 300 nmol) had no urodynamic effect. FAAH and CB1/CB2 receptors were expressed in the rat sacral spinal cord. The expression of CB1/CB2 receptors but not FAAH was higher in obstructed than in normal rats.
FAAH inhibition in the sacral spinal cord by oleoyl ethyl amide resulted in urodynamic effects in normal rats and rats with bladder overactivity. The spinal endocannabinoid system may be involved in normal micturition control and it appears altered when there is bladder overactivity.
我们评估了脊髓中大麻素降解酶 FAAH 的抑制作用是否会对正常大鼠和因部分尿道梗阻或前列腺素 E2 引起的膀胱过度活动的大鼠产生尿动力学影响。我们还确定了 FAAH 以及脊髓骶骨中大麻素受体 CB1 和 CB2 的表达。
我们使用了 44 只大鼠进行功能(膀胱测压)和 Western blot 实验。FAAH 抑制剂油酸乙酯酰胺(3 至 300nmol)通过鞘内(蛛网膜下腔)或静脉内给药。通过 Western blot 测定 FAAH 和 CB1/CB2 受体的表达。
鞘内给予油酸乙酯酰胺会影响正常大鼠和膀胱过度活动大鼠的排尿,但在后一种大鼠中作用更为明显。在正常大鼠中,油酸乙酯酰胺仅降低排尿频率,而在膀胱过度活动大鼠中则降低排尿频率和膀胱压力。静脉内给予油酸乙酯酰胺(3 至 300nmol)对尿动力学无影响。FAAH 和 CB1/CB2 受体在大鼠骶骨脊髓中表达。与正常大鼠相比,CB1/CB2 受体的表达(但不是 FAAH)在梗阻大鼠中更高。
油酸乙酯酰胺在骶骨脊髓中对 FAAH 的抑制作用导致正常大鼠和膀胱过度活动大鼠产生尿动力学影响。脊髓内源性大麻素系统可能参与正常排尿控制,当出现膀胱过度活动时,其似乎发生改变。