Altered brain activity associated with premature ejaculation improved by electroacupuncture in rats

Author:

Wu Ning12,Chen Jian-huai3,Wang Tong1,Yang Bai-bing4,Xing Si-yan4,Gao Song-zhan5,Ni Da-wei1,Du Guang-jun4,Song Tao4,Han You-feng4,Sun Guo-hai4,Gao Qing-qiang4,Xu Chun-lu4,Dai Yu-tian1

Affiliation:

1. Nanjing Drum Tower Hospital Clinical College of Nanjing University of Chinese Medicine Department of Andrology, , Nanjing 210008, China

2. The People’s Hospital of Jiaozuo Department of Urology, , No. 263 Jiefang Middle Road, Jiaozuo 454002, China

3. Affiliated Hospital of Nanjing University of Chinese Medicine Department of Andrology, Jiangsu Province Hospital of Chinese Medicine, , Nanjing 210029, China

4. The Affiliated Hospital of Nanjing University Medical School Department of Andrology, Nanjing Drum Tower Hospital, , Nanjing 210008, China

5. The Third Affiliated Hospital of Zhengzhou University Department of Andrology, , Zhengzhou 450052, China

Abstract

Abstract Background Premature ejaculation (PE) is linked with abnormal brain activity that is modifiable by electroacupuncture (EA). Aim In this study we aimed to explore the central pathological mechanism underlying EA in treating PE. Methods Six-week-old male Sprague–Dawley rats were divided into a PE group (n = 8) and a control group (n = 8) according to ejaculatory frequency during copulatory behavior. All rats underwent EA at the Zusanli acupoint (ST-36) for 4 weeks. Magnetic resonance imaging data were collected before and after EA. Outcomes The behavioral parameters, plasma norepinephrine levels, fractional amplitude of low frequency fluctuation (fALFF), and regional homogeneity (ReHo) were evaluated. Results The PE group ejaculated more times with shorter latency compared with controls. After EA, the ejaculation frequency of the PE group decreased, and the ejaculation latency period increased, with no changes observed in the control group. Norepinephrine levels were higher in the PE group than in the controls and were positively correlated with ejaculation frequency and negatively correlated with ejaculation latency. The PE group showed lower fALFF in the right striatum and higher ReHo in the brainstem compared with controls. After EA, controls showed decreased fALFF in the right striatum, left olfactory bulb, and dorsal fornix and increased ReHo in the right interpeduncular nucleus, as well as decreased ReHo in the left striatum, prelimbic system, right basal forebrain region, septal region, and olfactory bulb, while the model group exhibited increased fALFF in the right hypothalamic region, decreased fALFF in the left globus pallidum and right basal forebrain region and increased ReHo in the right interpeduncular nucleus, as well as decreased ReHo in the left striatum, olfactory bulb, basal forebrain region, dentate gyrus, right dysgranular insular cortex, and striatum. Compared with the controls after EA, the model group showed increased ReHo of the right hypothalamic region and decreased ReHo of the right dysgranular insular cortex. Clinical Implications These findings might enhance the understanding of PE and contribute to new, targeted therapies for PE. Strengths and Limitations The therapeutic effects might be achieved by EA inhibiting the activity in brain regions involved in ejaculatory behavior. However, the curative effect of acupuncture might be underestimated due to some curative effects of sham acupuncture used in the control group. Conclusion In conclusion, the ejaculatory frequency of rats may be reduced and ejaculation latency could be extended by EA at ST-36, which might be achieved by the effects of this treatment on brain activity.

Funder

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

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