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Micturition defects and altered bladder function in the klotho mutant mouse model of aging

机译:衰老的klotho突变小鼠模型中的排尿缺陷和膀胱功能改变

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摘要

Introduction and objectives: Symptoms associated with detrusor underactivity (DU) or underactive bladder (UAB) can severely impact a person’s quality of life, and growing old is the main etiological factor of DU and UAB. The gene has been associated with suppression of several aging phenotypes, and there is moderate expression in the bladder. Given this, we hypothesized that the klotho gene is involved in regulation of bladder function. Thus, we examined a premature aging rodent genetic model with hypomorphic expression for alterations in bladder function. Methods: mutant mice are established as a preclinical model of aging. Male and female klotho mice had micturition measured at weeks 4, 6, and 8 through metabolic cage and void spot assays. Histology was assessed at 4, 6, and 8 weeks. Lastly, bladder contraction was assessed using bladder strip tissue bath. All animals were gender- and age-matched with wild-type littermates for analysis. Results: Void spot and bladder contraction assays revealed that mutant mice, similar to other aging models, have increased voiding frequency and decreased voiding volume per micturition event. The in vitro contractile response to electrical stimulation was weaker and muscarinic receptor subtype expression was reduced in the in mutant mouse bladders. These data suggest that mutant mouse bladders had impaired bladder function. Conclusions: mutant mice recapitulate many characteristics of an older dysfunctional bladder, including altered bladder function. Given the short time frame to bladder dysfunction and robustness of the model, this model will provide new insights to drive aging bladder research.
机译:简介和目标:与逼尿肌活动不足(DU)或膀胱活动不足(UAB)相关的症状会严重影响一个人的生活质量,而长大是DU和UAB的主要病因。该基因与几种衰老表型的抑制有关,并且在膀胱中有中等表达。鉴于此,我们假设klotho基因参与膀胱功能的调节。因此,我们检查了亚型表达过早老化的啮齿动物遗传模型,以期改变膀胱功能。方法:建立突变小鼠作为衰老的临床前模型。雄性和雌性klotho小鼠在第4、6和8周通过代谢笼和空斑测定法测量了排尿。在第4、6和8周评估组织学。最后,使用膀胱剥离组织浴评估膀胱收缩情况。所有动物的性别和年龄均与野生型同窝仔相匹配以进行分析。结果:空斑和膀胱收缩试验显示,与其他衰老模型类似,突变小鼠每次排尿事件的排尿频率增加,排尿量减少。在突变小鼠膀胱中,对电刺激的体外收缩反应较弱,毒蕈碱受体亚型表达降低。这些数据表明突变的小鼠膀胱具有受损的膀胱功能。结论:突变小鼠概括了较老的膀胱功能障碍的许多特征,包括膀胱功能改变。鉴于该模型的膀胱功能障碍和健壮性的时限很短,该模型将为推动衰老的膀胱研究提供新的见识。

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