Michishita Mai, Yano Kazuo, Tomita Ken-Ichi, Matsuzaki Osamu, Kasahara Ken-Ichi
Laboratory for Pharmacology, Pharmaceuticals Research Center, Asahi Kasei Pharma Corporation, 632-1 Mifuku, Izunokuni, Shizuoka 410-2321, Japan.
Laboratory for Pharmacology, Pharmaceuticals Research Center, Asahi Kasei Pharma Corporation, 632-1 Mifuku, Izunokuni, Shizuoka 410-2321, Japan.
Life Sci. 2016 Dec 1;166:1-7. doi: 10.1016/j.lfs.2016.10.017. Epub 2016 Oct 15.
For patients with benign prostatic hyperplasia (BPH), storage symptoms due to bladder dysfunction are bothersome, and that mechanism elucidation is needed. Piezo1, a mechanically activated ion channel, is believed to play a role in sensing bladder distension. To investigate the involvement of Piezo1 in bladder dysfunction, we examined the expression and distribution of Piezo1 and neurofilament (NF-L) to understand pathological alterations in rat bladders with partial bladder outlet obstruction (pBOO), an animal model of BPH.
Female Sprague-Dawley rats were subjected to sham or pBOO operations. On days 3, 7, and 14 after pBOO, Piezo1 mRNA levels in the bladder were examined by quantitative real-time PCR. The expression of light NF-L was also examined by western blotting. On day 7, the distributions of Piezo1 were examined by in situ hybridization.
The expression levels of Piezo1 mRNA in whole bladder were significantly increased from days 3 to 14 after pBOO. On day 7 in pBOO rats, significant increases in Piezo1 mRNA were observed in the detrusor layer as well as the suburothelial layer, while the predominant distribution was observed in the urothelium of sham rats. Coinciding with the increase in Piezo1, the decreases in NF-L expression were observed in the bladder from pBOO rats.
The increase in Piezo1 in pBOO rat bladders might be involved in the compensatory mechanism associated with bladder denervation including the decrease in NF-L. Inhibition of Piezo-1 may be a new therapeutic approach to ameliorate the storage dysfunction shown in pBOO.
对于良性前列腺增生(BPH)患者,膀胱功能障碍引起的储尿期症状令人困扰,因此需要阐明其机制。Piezo1是一种机械激活离子通道,被认为在感知膀胱扩张中发挥作用。为了研究Piezo1在膀胱功能障碍中的作用,我们检测了Piezo1和神经丝(NF-L)的表达及分布,以了解部分膀胱出口梗阻(pBOO)大鼠膀胱的病理改变,pBOO是BPH的一种动物模型。
对雌性Sprague-Dawley大鼠进行假手术或pBOO手术。在pBOO术后第3、7和14天,通过定量实时PCR检测膀胱中Piezo1 mRNA水平。还通过蛋白质印迹法检测轻链NF-L的表达。在第7天,通过原位杂交检测Piezo1的分布。
pBOO术后3至14天,整个膀胱中Piezo1 mRNA的表达水平显著增加。在pBOO大鼠术后第7天,在逼尿肌层以及尿路上皮层中观察到Piezo1 mRNA显著增加,而在假手术大鼠的尿路上皮中观察到主要分布。与Piezo1的增加一致,在pBOO大鼠膀胱中观察到NF-L表达降低。
pBOO大鼠膀胱中Piezo1的增加可能参与了与膀胱去神经相关的代偿机制,包括NF-L的降低。抑制Piezo-1可能是改善pBOO中出现的储尿功能障碍的一种新的治疗方法。