Birder L A, Ruan H Z, Chopra B, Xiang Z, Barrick S, Buffington C A, Roppolo J R, Ford A P D W, de Groat W C, Burnstock G
Dept. of Medicine, University of Pittsburgh School of Medicine, A 1207 Scaife Hall, Pittsburgh, PA 15261, USA.
Am J Physiol Renal Physiol. 2004 Nov;287(5):F1084-91. doi: 10.1152/ajprenal.00118.2004. Epub 2004 Jul 13.
Purinergic mechanisms appear to be involved in motor as well as sensory functions in the urinary bladder. ATP released from efferent nerves excites bladder smooth muscle, whereas ATP released from urothelial cells can activate afferent nerves and urothelial cells. In the present study, we used immunohistochemical techniques to examine the distribution of purinoceptors in the urothelium, smooth muscle, and nerves of the normal cat urinary bladder as well as possible changes in the expression of these receptors in cats with a chronic painful bladder condition termed feline interstitial cystitis (FIC) in which ATP release from the urothelium is increased. In normal cats, a range of P2X (P2X(1), P2X(2), P2X(3), P2X(4), P2X(5), P2X(6), and P2X(7)) and P2Y (P2Y(1), P2Y(2), and P2Y(4)) receptor subtypes was expressed throughout the bladder urothelium. In FIC cats, there is a marked reduction in P2X(1) and loss of P2Y(2) receptor staining. Both P2X(3) and P2Y(4) are present in nerves in normal cat bladder, and no obvious differences in staining were detected in FIC. Smooth muscle in the normal bladder did not exhibit P2Y receptor staining but did exhibit P2X (P2X(2), P2X(1)) staining. In the FIC bladder smooth muscle, there was a significant reduction in P2X(1) expression. These findings raise the possibility that purinergic mechanisms in the urothelium and bladder smooth muscle are altered in FIC cats. Because the urothelial cells appear to have a sensory function in the bladder, it is possible that the plasticity in urothelial purinergic receptors is linked with the painful bladder symptoms in IC.
嘌呤能机制似乎参与膀胱的运动和感觉功能。传出神经释放的ATP可兴奋膀胱平滑肌,而上皮细胞释放的ATP能激活传入神经和上皮细胞。在本研究中,我们采用免疫组织化学技术,检测正常猫膀胱上皮、平滑肌和神经中嘌呤受体的分布,以及在患有慢性疼痛膀胱疾病即猫间质性膀胱炎(FIC)的猫中这些受体表达的可能变化,FIC中上皮细胞的ATP释放增加。在正常猫中,一系列P2X(P2X(1)、P2X(2)、P2X(3)、P2X(4)、P2X(5)、P2X(6)和P2X(7))和P2Y(P2Y(1)、P2Y(2)和P2Y(4))受体亚型在整个膀胱上皮中表达。在FIC猫中,P2X(1)显著减少,P2Y(2)受体染色缺失。P2X(3)和P2Y(4)在正常猫膀胱的神经中均有表达,在FIC中未检测到染色有明显差异。正常膀胱的平滑肌未显示P2Y受体染色,但显示P2X(P2X(2)、P2X(1))染色。在FIC膀胱平滑肌中,P2X(1)表达显著降低。这些发现提示,FIC猫的上皮和膀胱平滑肌中的嘌呤能机制可能发生了改变。由于上皮细胞在膀胱中似乎具有感觉功能,上皮嘌呤能受体的可塑性可能与IC中的膀胱疼痛症状有关。