Lin Guiting, Reed-Maldonado Amanda B, Wang Bohan, Lee Yung-Chin, Zhou Jun, Lu Zhihua, Wang Guifang, Banie Lia, Lue Tom F
Knuppe Molecular Urology Laboratory, Department of Urology, School of Medicine, University of California-San Francisco, San Francisco, CA, USA.
Knuppe Molecular Urology Laboratory, Department of Urology, School of Medicine, University of California-San Francisco, San Francisco, CA, USA; Department of Urology, The Second Hospital, Zhejiang University, Zhejiang, China.
J Sex Med. 2017 Apr;14(4):493-501. doi: 10.1016/j.jsxm.2017.02.004. Epub 2017 Mar 1.
We previously reported that progenitor cells, or stem cells, exist within penile tissue. We hypothesized that acoustic wave stimulation by low-intensity extracorporeal shockwave therapy (Li-ESWT) would activate local stem or progenitor cells within the penis, producing regenerative effects.
To study the feasibility of in situ penile progenitor cell activation by Li-ESWT.
We performed a cohort analysis of young and middle-age male Sprague-Dawley rats treated with 5-ethynyl-2'-deoxyuridine (EdU) pulse followed by Li-ESWT. In addition, Li-ESWT was applied to cultured Schwann cells and endothelial cells to study the molecular mechanism involved in cell proliferation. Thirty minutes before Li-ESWT, each rat received an intraperitoneal injection of EdU. Li-ESWT was applied to the penis at very low (0.02 mJ/mm at 3 Hz for 300 pulses) or low (0.057 mJ/mm at 3 Hz for 500 pulses) energy levels. The endothelial and Schwann cells were treated with very low energy (0.02 mJ/mm at 3 Hz for 300 pulses) in vitro.
At 48 hours or 1 week after Li-ESWT, penile tissues were harvested for histologic study to assess EdU and Ki-67 cells, and cell proliferation, Ki-67 expression, Erk1/2 phosphorylation, translocation, and angiogenesis were examined in cultured Schwann and endothelial cells after Li-ESWT.
Li-ESWT significantly increased EdU cells within penile erectile tissues (P < .01) at 48 hours and 1 week. There were more cells activated in young animals than in middle-age animals, and the effect depended on dosage. Most activated cells were localized within subtunical spaces. In vitro studies indicated that Li-ESWT stimulated cell proliferation through increased phosphorylation of Erk1/2.
The present results provide a possible explanation for the clinical benefits seen with Li-ESWT.
The main limitation of the present project was the short period of study and the animal model used. Li-ESWT could be less effective in improving erectile function in old animals because of the decreased number and quality of penile stem or progenitor cells associated with aging.
Li-ESWT activation of local penile progenitor cells might be one of the mechanisms that contribute to the beneficial effects of shockwave treatment for erectile dysfunction, which represents a non-invasive alternative to exogenous stem cell therapy. Lin G, Reed-Maldonado AB, Wang B, et al. In Situ Activation of Penile Progenitor Cells With Low-Intensity Extracorporeal Shockwave Therapy. J Sex Med 2017;14:493-501.
我们之前报道过阴茎组织中存在祖细胞或干细胞。我们推测低强度体外冲击波疗法(Li-ESWT)产生的声波刺激会激活阴茎内的局部干细胞或祖细胞,从而产生再生效应。
研究Li-ESWT原位激活阴茎祖细胞的可行性。
我们对接受5-乙炔基-2'-脱氧尿苷(EdU)脉冲处理后再进行Li-ESWT的年轻和中年雄性Sprague-Dawley大鼠进行了队列分析。此外,将Li-ESWT应用于培养的雪旺细胞和内皮细胞,以研究细胞增殖所涉及的分子机制。在Li-ESWT治疗前30分钟,每只大鼠腹腔注射EdU。以非常低(3Hz时0.02mJ/mm,300脉冲)或低(3Hz时0.057mJ/mm,500脉冲)能量水平对阴茎施加Li-ESWT。体外对内皮细胞和雪旺细胞施以非常低的能量(3Hz时0.02mJ/mm,300脉冲)。
Li-ESWT在48小时和1周时显著增加了阴茎勃起组织内的EdU细胞(P <.01)。年轻动物中被激活的细胞比中年动物更多,且该效应取决于剂量。大多数被激活的细胞位于白膜下间隙。体外研究表明,Li-ESWT通过增加Erk1/2的磷酸化来刺激细胞增殖。
目前的结果为Li-ESWT所带来的临床益处提供了一种可能的解释。
本项目的主要局限在于研究周期短以及所使用的动物模型。由于与衰老相关的阴茎干细胞或祖细胞数量和质量下降,Li-ESWT在改善老年动物勃起功能方面可能效果较差。
Li-ESWT激活局部阴茎祖细胞可能是冲击波治疗勃起功能障碍产生有益效果的机制之一,这代表了一种外源性干细胞治疗的非侵入性替代方法。林G、里德-马尔多纳多AB、王B等。低强度体外冲击波疗法原位激活阴茎祖细胞。《性医学杂志》2017年;14:493 - 501。