Department of Urology, Laboratory for Tissue Engineering and Stem Cell Therapy, University Hospital Zürich, Zürich, Switzerland.
Division of Paediatric Urology, Department of Paediatric Surgery, University Children's Hospital, Zürich, Switzerland.
Neurourol Urodyn. 2018 Nov;37(8):2414-2424. doi: 10.1002/nau.23705. Epub 2018 May 24.
To explore whether autophagy plays a role in the remodeling of bladder smooth muscle cells (SMCs) in children with neurogenic lower urinary tract dysfunction (NLUTD), we investigated the effect of autophagy in NLUTD in the paediatric population.
Bladder biopsies were taken from children with NLUTD and healthy donors as controls. Samples were labeled with the SMC markers calponin, smoothelin, and the autophagy proteins LC3, ATG5, and Beclin1. The contractile ability of bladder derived SMCs was investigated.
ATG5 gene and protein was upregulated in NLUTD muscle tissue compared to normal bladder. NLUTD muscle exhibited a punctated immunostaining pattern for LC3 in a subset of the SMCs, confirming the accumulation of autophagosomes. Pronounced elevation of ATG5 in the SMC in NLUTD tissue was associated with a downregulation of the key contractile proteins smoothelin and calponin. Pharmacological blocking of autophagy completely stopped the cells growth in normal bladder SMCs. Inhibition of autophagy in the NLUTD SMCs, with already elevated levels of ATG5, resulted in a reduction of ATG5 protein expression to the basal level found in normal controls.
Our study suggests that autophagy is an important factor affecting the remodeling of SMCs and the alteration of functionality in bladder smooth muscle tissue in the NLUTD. Since autophagy can be influenced by oral medication, this finding might lead to novel strategies preventing the deterioration of NLUTD muscle.
探讨自噬是否在神经源性下尿路功能障碍(NLUTD)儿童的膀胱平滑肌细胞(SMCs)重构中发挥作用,我们研究了自噬在儿科 NLUTD 中的作用。
从 NLUTD 患儿和健康供体中获取膀胱活检作为对照。将样本用 SMC 标志物钙调蛋白、 smoothelin 和自噬蛋白 LC3、ATG5 和 Beclin1 标记。研究了源自膀胱的 SMC 的收缩能力。
与正常膀胱相比,NLUTD 肌肉组织中的 ATG5 基因和蛋白上调。NLUTD 肌肉在 SMC 中出现 LC3 的点状免疫染色模式,证实了自噬体的积累。NLUTD 组织中 ATG5 的显著升高与关键收缩蛋白 smoothelin 和 calponin 的下调有关。在正常膀胱 SMC 中,自噬的药理学阻断完全阻止了细胞生长。在 NLUTD SMC 中抑制自噬,其 ATG5 水平已经升高,导致 ATG5 蛋白表达减少至正常对照中发现的基础水平。
我们的研究表明,自噬是影响 SMC 重构和 NLUTD 膀胱平滑肌组织功能改变的重要因素。由于自噬可以通过口服药物来影响,这一发现可能会为预防 NLUTD 肌肉恶化提供新的策略。