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首页> 外文期刊>Neurourology and urodynamics. >Sonic hedgehog regulation of human rhabdosphincter muscle:Potential implications for treatment of stress urinary incontinence
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Sonic hedgehog regulation of human rhabdosphincter muscle:Potential implications for treatment of stress urinary incontinence

机译:人类旋鹅肌肉的声音刺猬调节:对治疗压力尿失禁的潜在影响

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Aims Rhabdosphincter (RS) muscle injury occurs during prostatectomy, and is a leading cause of stress urinary incontinence (SUI). Current SUI treatments engender significant side effects, which negatively impact patient quality of life. Thus an unmet need exists to develop novel RS regeneration methods. We have shown that Sonic hedgehog (SHH) is a critical regulator of penile smooth muscle, and we have developed novel peptide amphiphile nanofiber hydrogel delivery of SHH protein to the penis to regenerate smooth muscle after prostatectomy induced injury. If similar SHH signaling mechanisms regulate RS muscle homeostasis, this innovative technology may be adapted for RS regeneration post‐prostatectomy. We examine the SHH pathway in human RS muscle. Methods Human RS obtained during radical cystoprostatectomy ( n ?=?13), underwent SHH pathway analysis. Primary cultures were established ( n ?=?5), and RS cells were treated with SHH protein, SHH inhibitor, or PBS (control). Immunohistochemical analysis for SHH pathway, skeletal muscle actin, and trichrome stain were performed. RS growth was quantified at 3 and 6 days. Results SHH, it is receptors patched and smoothened, and transcriptional activators, GLI proteins, were identified in human RS muscle. At 3 and 6 days, RS cells increased 62% and 78% ( P ?=?0.0001) with SHH treatment and decreased 40% ( P ?=?0.0001) and 18% ( P ?=?0.039) with SHH inhibition. Conclusions The SHH pathway was identified in human RS. RS growth increased with SHH treatment, indicating intervention may be possible to enhance RS regeneration, and impact SUI. Peptide amphiphile delivery of SHH may be applicable for RS regeneration and SUI prevention.
机译:目的在前列腺切除术期间发生rhabdossclicer(Rs)肌肉损伤,并且是应激尿失禁(SUI)的主要原因。目前的SUI治疗能力显着副作用,对患者的生活质量产生负面影响。因此,存在不需要开发新颖的RS再生方法。我们已经表明,Sonic Hedgehog(SHH)是一种阴茎平滑肌的关键调节器,我们已经开发了新型肽两亲纳米纤维水凝胶水凝胶递送SHH蛋白,在前列腺切除术后再生平滑肌。如果类似的SHH信令机制调节RS肌肉稳态,则这种创新技术可能适用于前列腺后前列腺切除术的RS再生。我们在人类RS肌肉中检查SHH途径。方法在自由基半脑膜切除术期间获得的人Rs(n?=Δ13),完成SHH途径分析。建立了原发性培养物(n?=Δ5),用SHH蛋白,SHH抑制剂或PBS(对照)处理RS细胞。进行了SHH途径,骨骼肌肌动蛋白和血清染色的免疫组织化学分析。 Rs增长在3和6天定量。结果SHH,它是受体的贴片和平滑,并在人RS肌肉中鉴定了转录活化剂GLI蛋白。在3和6天,RS细胞增加了62%和78%(P?= 0.0001),SHH处理,减少了40%(P?= 0.0001)和18%(P?= 0.039),具有SHH抑制。结论SHH途径在人卢比中鉴定出来。随着SHH治疗的RS生长增加,表明干预可能可以增强RS再生,并影响SUI。 SHH的肽两亲递送可适用于Rs再生和SUI预防。

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