42,669 research outputs found

    Altered urothelial ATP signaling in a major subset of human overactive bladder patients with pyuria

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    Overactive Bladder (OAB) is an idiopathic condition, characterized by urgency, urinary frequency, and urgency incontinence, in the absence of routinely traceable urinary infection. We have described microscopic pyuria (≥10 wbc/μl) in patients suffering from the worst symptoms. It is established that inflammation is associated with increased ATP release from epithelial cells, and extracellular ATP originating from the urothelium following increased hydrostatic pressure is a mediator of bladder sensation. Here, using bladder biopsy samples, we have investigated urothelial ATP signaling in OAB patients with microscopic pyuria. Basal, but not stretch-evoked, release of ATP was significantly greater from the urothelium of OAB patients with pyuria than from non-OAB patients or OAB patients without pyuria (<10 wbc/μl). Basal ATP release from the urothelium of OAB patients with pyuria was inhibited by the P2 receptor antagonist suramin and abolished by the hemichannel blocker carbenoxolone, which differed from stretch-activated ATP release. Altered P2 receptor expression was evident in the urothelium from pyuric OAB patients. Furthermore, intracellular bacteria were visualized in shed urothelial cells from ∼80% of OAB patients with pyuria. These data suggest that increased ATP release from the urothelium, involving bacterial colonization, may play a role in the heightened symptoms associated with pyuric OAB patients

    Patient-Reported Side Effects of Intradetrusor Botulinum Toxin Type A for Idiopathic Overactive Bladder Syndrome

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    Objective: The aim of the study was a prospective assessment of patient-reported side effects in an open-label study after intradetrusor botulinum toxin injections for idiopathic overactive bladder (OAB). Patients and Methods: Botulinum toxin A injection was performed in 56 patients with idiopathic OAB. Patients were followed up for 6 months concerning side effects and patients' satisfaction. Results: Different types of side effects were assessed such as dry mouth (19.6%), arm weakness (8.9%), eyelid weakness (8.9%), leg weakness (7.1%), torso weakness (5.4%), impaired vision (5.4%) and dysphagia (5.4%). In all cases, symptoms were mild and transient. Urological complications such as gross hematuria (17.9%), acute urinary retention (8.9%) and acute urinary tract infection (7.1%) were noticed. In all cases, acute urinary retention was transient and treated with temporary intermittent self-catheterization. There was no statistically significant correlation between dosage and observed side effects. Patients' satisfaction rate was high (71.4%). Conclusion: Intradetrusor injection of botulinum toxin was associated with a high rate of neurourological side effects. In general, side effects were transient, mild and did not require special treatment. Copyright (C) 2010 S. Karger AG, Base

    Impact of onabotulinumtoxinA on quality of life and practical aspects of daily living : a pooled analysis of two randomized controlled trials

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    Objective: To evaluate the impact of onabotulinumtoxinA on individual domains of the quality of life questionnaires in a pooled analysis of two phase 3 trials in overactive bladder patients with urinary incontinence who were inadequately managed by >= 1 anticholinergic. Methods: Patients received intradetrusor injections of onabotulinumtoxinA 100U (n = 557) or placebo (n = 548). The proportions of patients with a positive response (condition "greatly improved" or "improved") on the Treatment Benefit Scale, and changes in Incontinence Quality of Life scores and King's Health Questionnaire domain scores were analyzed in the overall population and subgroups with clean intermittent catheterization use and urinary tract infection status during the first 12 weeks of treatment. Responses to individual King's Health Questionnaire items were also assessed. Results: Significantly greater proportions of onabotulinumtoxinA-treated patients achieved positive Treatment Benefit Scale response versus placebo (61.8% vs 28.0%; P < 0.001). OnabotulinumtoxinA showed significantly greater improvements versus placebo in Incontinence Quality of Life total (22.5 vs 6.6), Incontinence Quality of Life subscale scores and all domains of the King's Health Questionnaire. Notably, a similar trend was observed regardless of clean intermittent catheterization/urinary tract infection status. Additionally, onabotulinumtoxinA resulted in significantly greater improvements than the placebo in practical aspects of patients daily lives, including pad use, need to change undergarments, sleep, relationship with partner and work life/daily activities. Conclusion: In overactive bladder patients with urinary incontinence, onabotulinumtoxinA 100U demonstrated significant improvements across the individual domains of the quality of life questionnaires, regardless of clean intermittent catheterization or urinary tract infection status, and provided a positive impact on practical aspects of patients' daily lives

    When is better really better? Individuals' experiences of treatment for OAB with anticholinergic medication

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    Overactive bladder (OAB) has been found to have a number of psychological consequences, including anxiety, depression and shame. However, there is little research on how drug treatment, which has been found to be effective at reducing physical symptoms, impacts on these psychological effects. This study aimed to examine patients’ experiences of anticholinergic treatment for OAB, and the impact of both OAB and its treatment on psychological well-being. A cross-sectional, qualitative interview design with a secondary care outpatient sample was used. The approach was idiographic and sought to understand the detailed complexities and nuances of patient experiences. This small-scale qualitative study found that, even where there had been symptom reduction, patients did not feel ‘better’, and found it difficult to let go of worries and fears around OAB. These findings suggest that a person with OAB may need support even after a ‘successful’ treatment, as OAB continues to be at the centre of patients’ lives

    Simultaneous quantification of 12 different nucleotides and nucleosides released from renal epithelium and in human urine samples using ion-pair reversed-phase HPLC

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    Nucleotides and nucleosides are not only involved in cellular metabolism but also act extracellularly via P1 and P2 receptors, to elicit a wide variety of physiological and pathophysiological responses through paracrine and autocrine signalling pathways. For the first time, we have used an ion-pair reversed-phase high-performance liquid chromatography ultraviolet (UV)-coupled method to rapidly and simultaneously quantify 12 different nucleotides and nucleosides (adenosine triphosphate, adenosine diphosphate, adenosine monophosphate, adenosine, uridine triphosphate, uridine diphosphate, uridine monophosphate, uridine, guanosine triphosphate, guanosine diphosphate, guanosine monophosphate, guanosine): (1) released from a mouse renal cell line (M1 cortical collecting duct) and (2) in human biological samples (i.e., urine). To facilitate analysis of urine samples, a solid-phase extraction step was incorporated (overall recovery rate ? 98 %). All samples were analyzed following injection (100 ?l) into a Synergi Polar-RP 80 Å (250 × 4.6 mm) reversed-phase column with a particle size of 10 ?m, protected with a guard column. A gradient elution profile was run with a mobile phase (phosphate buffer plus ion-pairing agent tetrabutylammonium hydrogen sulfate; pH 6) in 2-30 % acetonitrile (v/v) for 35 min (including equilibration time) at 1 ml min(-1) flow rate. Eluted compounds were detected by UV absorbance at 254 nm and quantified using standard curves for nucleotide and nucleoside mixtures of known concentration. Following validation (specificity, linearity, limits of detection and quantitation, system precision, accuracy, and intermediate precision parameters), this protocol was successfully and reproducibly used to quantify picomolar to nanomolar concentrations of nucleosides and nucleotides in isotonic and hypotonic cell buffers that transiently bathed M1 cells, and urine samples from normal subjects and overactive bladder patients
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