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首页> 外文期刊>BJU international >Growth and stretch response of human exstrophy bladder smooth muscle cells: molecular evidence of normal intrinsic function.
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Growth and stretch response of human exstrophy bladder smooth muscle cells: molecular evidence of normal intrinsic function.

机译:人外胚层膀胱平滑肌细胞的生长和拉伸反应:正常内在功能的分子证据。

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OBJECTIVE: To establish primary cultures of smooth muscle cells (SMC) from human exstrophic bladders (E-SMC), and determine their in vitro growth dynamics and responses to mechanical stretch. MATERIALS AND METHODS: Primary cultures of E-SMC from three patients were established from exstrophic bladder tissue using an explant method. Growth dynamics were assessed using tetrazolium-dye uptake. The DNA synthesis rate in response to cyclic stretch-relaxation was determined with thymidine-incorporation assays. Expression of the SMC mitogen heparin-binding epidermal growth factor-like growth factor (HB-EGF) mRNA in response to mechanical stretch was determined using semiquantitative reverse transcription-polymerase chain reaction. RESULTS: The approximate doubling time of the E-SMC grown in the presence of serum was 4 days, consistent with growth rates of SMC reported previously. E-SMC exposed to stretch had greater DNA synthesis, albeit to a lesser extent than previously seen with non-exstrophic SMC. The expression of HB-EGF was also increased in cells exposed to mechanical stimuli, consistent with our previous finding of stretch-regulated HB-EGF gene expression in bladder SMC. CONCLUSIONS: E-SMC had growth characteristics similar to those previously reported in non-exstrophic cells. E-SMC also had stretch-induced expression of HB-EGF mRNA. These observations provide evidence that despite development in an abnormal defunctionalized state, E-SMC retain the potential for normal growth, and may modulate this response through mechanisms similar to those operating in normal bladder SMC.
机译:目的:建立人外来膀胱(E-SMC)平滑肌细胞(SMC)的原代培养,并测定其体外生长动力学和对机械拉伸的反应。材料与方法:采用外植体法从外来膀胱组织中建立三例E-SMC的原代培养物。使用四唑鎓染料摄取评估生长动力学。用胸苷掺入测定法测定响应于循环舒张松弛的DNA合成速率。使用半定量逆转录-聚合酶链反应确定SMC促细胞分裂素肝素结合表皮生长因子样生长因子(HB-EGF)mRNA在机械拉伸中的表达。结果:血清中存在的E-SMC的倍增时间约为4天,与先前报道的SMC的生长速率一致。暴露于拉伸状态的E-SMC具有更大的DNA合成,尽管程度比以前非限制性SMC更低。暴露于机械刺激的细胞中HB-EGF的表达也增加,这与我们先前在膀胱SMC中拉伸调节的HB-EGF基因表达的发现一致。结论:E-SMC的生长特性与以前在非营养细胞中报道的相似。 E-SMC还具有拉伸诱导的HB-EGF mRNA表达。这些观察提供了证据,尽管在异常失功能状态下发育,但E-SMC保留了正常生长的潜力,并可能通过类似于在正常膀胱SMC中运行的机制调节这种反应。

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