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Transcriptional and Translational Plasticity in Rodent Urinary Bladder TRP Channels with Urinary Bladder Inflammation Bladder Dysfunction or Postnatal Maturation

机译:转录和翻译的可塑性与膀胱炎膀胱功能障碍或产后成熟啮齿动物膀胱TRp通道

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摘要

These studies examined transcriptional and translational plasticity of three transient receptor potential (TRP) channels (TRPA1, TRPV1, TRPV4) with established neuronal and non-neuronal expression and functional roles in the lower urinary tract. Mechanosensor and nociceptor roles in either physiological or pathological lower urinary tract states have been suggested for TRPA1, TRPV1 and TRPV4. We have previously demonstrated neurochemical, organizational and functional plasticity in micturition reflex pathways following induction of urinary bladder inflammation using the antineoplastic agent, cyclophosphamide (CYP). More recently, we have characterized similar plasticity in micturition reflex pathways in a transgenic mouse model with chronic urothelial overexpression (OE) of nerve growth factor (NGF) and in a transgenic mouse model with deletion of vasoactive intestinal polypeptide (VIP). In addition, the micturition reflex undergoes postnatal maturation that may also reflect plasticity in urinary bladder TRP channel expression. Thus, we examined plasticity in urinary bladder TRP channel expression in diverse contexts using a combination of quantitative, real-time PCR and western blotting approaches. We demonstrate transcriptional and translational plasticity of urinary bladder TRPA1, TRPV1 and TRVP4 expression. Although the functional significance of urinary bladder TRP channel plasticity awaits further investigation, these studies demonstrate context-(inflammation, postnatal development, NGF-OE, VIP deletion) and tissue-dependent (urothelium + suburothelium, detrusor) plasticity.
机译:这些研究检查了三个瞬态受体电位(TRP)通道(TRPA1,TRPV1,TRPV4)在下尿路中已建立的神经元和非神经元表达及功能作用的转录和翻译可塑性。有人建议在TRPA1,TRPV1和TRPV4的生理或病理性下尿路状态中使用机械传​​感器和伤害感受器。我们先前已经证明了使用抗肿瘤药环磷酰胺(CYP)诱导膀胱炎症后排尿反射途径的神经化学,组织和功能可塑性。最近,我们在具有神经生长因子(NGF)的慢性尿路上皮过表达(OE)的转基因小鼠模型和具有血管活性肠多肽(VIP)缺失的转基因小鼠模型中,在排尿反射途径中表征了相似的可塑性。此外,排尿反射会在产后成熟,这也可能反映出膀胱TRP通道表达的可塑性。因此,我们使用定量,实时PCR和western印迹方法的组合,在各种情况下检查了膀胱TRP通道表达的可塑性。我们证明了膀胱TRPA1,TRPV1和TRVP4表达的转录和翻译可塑性。尽管膀胱TRP通道可塑性的功能意义尚待进一步研究,但这些研究证明了上下文(炎症,产后发育,NGF-OE,VIP缺失)和组织依赖性(尿路上皮+尿路上皮下,逼尿肌)可塑性。

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