Zvarova K, Herrera G M, May V, Vizzard M A
Physiology Department, Slovak Health University, Bratislava, Slovak Republic.
J Mol Neurosci. 2014 Nov;54(3):351-9. doi: 10.1007/s12031-014-0302-y. Epub 2014 Apr 17.
We investigated the distribution of CARTp(55-102) in rat lower urinary tract and evaluated its effect on urinary bladder function in vitro. Immunohistochemistry and a vertical isolated tissue bath system were used. Neurons, clusters of nonneuronal endocrine cells, and nerve fibers stained positive for CARTp(55-102) in young adult rat urinary bladder. The CARTp-expressing neuronal elements were nitric oxide synthase (NOS)- and tyrosine hydroxylase (TH)-IR, whereas all nonneuronal CARTp-IR elements stained positively only for TH (100 %). In isolated bladder strips, CARTp significantly increased the amplitude of electric field stimulation (EFS)-induced detrusor contractions at stimulation frequencies ≤12.5 Hz (p ≤ 0.001) as well as amplitude and frequency of spontaneous phasic urinary bladder smooth muscle (UBSM) contractions (p ≤ 0.05). The responses to CARTp stimulation were dose-dependent and increased in the presence of the urothelium. To determine if the CARTp increase in nerve-mediated contractions may involve an action of CARTp on specific neural pathways, we blocked cholinergic, purinergic, and adrenergic pathways and determined CARTp actions on EFS-medicated contractions. CARTp enhancement of EFS-mediated contractions does not involve alteration in purinergic, adrenergic, or cholinergic pathways. The study demonstrates that CARTp(55-102) is highly expressed in rat urinary bladder. CARTp increased the amplitude of EFS-induced detrusor contractions as well as the amplitude and frequency of spontaneous phasic urinary bladder smooth muscle contractions. We conclude that CARTp may alter the release of compounds from the urothelium that leads to an enhancement of UBSM contractility/excitability.
我们研究了CARTp(55 - 102)在大鼠下尿路中的分布,并在体外评估了其对膀胱功能的影响。采用免疫组织化学和垂直离体组织浴系统。在成年幼鼠膀胱中,神经元、非神经元内分泌细胞簇和神经纤维对CARTp(55 - 102)呈阳性染色。表达CARTp的神经元成分是一氧化氮合酶(NOS)和酪氨酸羟化酶(TH)-免疫反应阳性,而所有非神经元CARTp-免疫反应阳性成分仅对TH呈阳性染色(100%)。在离体膀胱条中,CARTp在刺激频率≤12.5 Hz时显著增加电场刺激(EFS)诱导的逼尿肌收缩幅度(p≤0.001)以及自发性阶段性膀胱平滑肌(UBSM)收缩的幅度和频率(p≤0.05)。对CARTp刺激的反应呈剂量依赖性,并且在上皮存在的情况下增强。为了确定CARTp增加神经介导的收缩是否可能涉及CARTp对特定神经通路的作用,我们阻断了胆碱能、嘌呤能和肾上腺素能通路,并确定了CARTp对EFS介导的收缩的作用。CARTp增强EFS介导的收缩不涉及嘌呤能、肾上腺素能或胆碱能通路的改变。该研究表明CARTp(55 - 102)在大鼠膀胱中高度表达。CARTp增加了EFS诱导的逼尿肌收缩幅度以及自发性阶段性膀胱平滑肌收缩的幅度和频率。我们得出结论,CARTp可能改变上皮细胞中化合物的释放,从而导致UBSM收缩性/兴奋性增强。