首页> 外文期刊>The Journal of Urology >Unraveling the genetic landscape of bladder development in mice.
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Unraveling the genetic landscape of bladder development in mice.

机译:揭示小鼠膀胱发育的遗传环境。

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PURPOSE: To better understand the pathobiology of human congenital bladder abnormalities and disorders associated with dedifferentiation, such as bladder cancer, we must first unravel the biology of normal bladder development. Therefore, we performed microarray analysis focusing on determining the gene expression profile at the initiation of bladder development. MATERIALS AND METHODS: RNA was extracted from embryonic day 13 and 18 mouse bladders (anatomically equivalent to 7 and 13 weeks of human gestation) and gene expression was evaluated using microarrays. Alterations in select genes of biological interest were confirmed using real-time quantitative polymerase chain reaction and localization was determined by immunohistochemistry. RESULTS: The genetic profile in the initiating mouse bladder at embryonic day 13 was dominated by transcription factors, retinoic acid signaling genes, Eph/ephrin bidirectional signaling molecules and genes associated with regulating cell cycle and differentiation. Later in development at embryonic day 18 genes associated with smooth muscle, innervation and epithelial differentiation were up-regulated. In addition, we examined the functional role of midkine, which was highly expressed at embryonic day 13, using organ culture and to our knowledge we provide the first evidence that this growth factor up-regulates molecules associated with bladder smooth muscle differentiation. CONCLUSIONS: These data provide novel insights into molecules that orchestrate bladder development and highlight genes that may be involved in diseases associated with abnormal differentiation.
机译:目的:为了更好地了解人类先天性膀胱异常和与去分化相关的疾病(如膀胱癌)的病理生物学,我们必须首先阐明正常膀胱发育的生物学。因此,我们进行了微阵列分析,重点是确定膀胱发育开始时的基因表达谱。材料与方法:从胚胎第13天和第18天小鼠膀胱(解剖学上相当于人类妊娠第7周和第13周)提取RNA,并使用微阵列评估基因表达。使用实时定量聚合酶链反应确认了具有生物学意义的所选基因的改变,并通过免疫组织化学确定了定位。结果:胚胎第13天起始小鼠膀胱的遗传特征主要由转录因子,视黄酸信号基因,Eph / ephrin双向信号分子以及与调节细胞周期和分化相关的基因决定。在胚胎发育的后期,与平滑肌,神经支配和上皮分化相关的18个基因被上调。此外,我们通过器官培养检查了在胚胎第13天高表达的Midkine的功能作用,据我们所知,我们提供了第一个证据表明该生长因子上调与膀胱平滑肌分化相关的分子。结论:这些数据为协调膀胱发育的分子提供了新颖的见解,并突出了可能与异常分化相关的疾病有关的基因。

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