内脏痛
医学
磁刺激
前额叶皮质
伤害
刺激
神经科学
麻醉
肠易激综合征
深部经颅磁刺激
腹痛
慢性疼痛
神经调节
内科学
胃肠病学
作者
Rui‐Xia Weng,Wei Lin,Qian Sun,Chun-Tao Ma,Fu‐Chao Zhang,Shu-Man Jia,Shufen Hu,Y H Li,Chen-Hao Zhang,You-Jia Yu,Wei-Ming Zhao,Guang-Yin Xu,Rui Li
出处
期刊:Gut
[BMJ]
日期:2026-02-02
卷期号:: gutjnl-2025
标识
DOI:10.1136/gutjnl-2025-337612
摘要
Background Chronic visceral pain in IBS with diarrhoea (IBS-D) is a profound therapeutic challenge. While aberrant central processing is implicated, the key brain regions driving this visceral pain and their suitability as neuromodulatory targets remain undefined. Objective To identify a central hub of visceral pain in IBS-D and elucidate the mechanism by which repetitive transcranial magnetic stimulation (rTMS) confers analgesic effects. Design Combined functional MRI with visceral sensitivity assessments was used to pinpoint hyperactive brain regions of patients with IBS-D. Mechanistic studies were conducted in a well-established IBS mouse model. A clinical trial was performed to validate the therapeutic potential of rTMS in patients with IBS-D. Results Clinical observations identified hyperexcitability of the medial prefrontal cortex (mPFC) as strongly correlated with visceral pain in patients with IBS-D. In IBS mice, visceral pain was driven by the hyperactivity of mPFC glutamatergic (mPFC Glu ) neurons, which received nociceptive inputs from the anterior cingulate cortex via an NR2A-dependent mechanism. Low frequency (lf)-rTMS of the mPFC sustainably alleviated visceral pain in IBS mice by inhibiting mPFC Glu neurons and restoring normal synaptic plasticity. Building on these findings, a clinical trial validated that a 2-week course of mPFC-targeted lf-rTMS in patients with IBS-D effectively alleviated visceral pain and improved bowel habits, effects associated with reduced mPFC activity and sustained for at least 8 weeks. Conclusions Hyperexcitability of the mPFC drives chronic visceral pain in patients with IBS-D and lf-rTMS provides analgesia by suppressing this hyperactivity, offering a novel, mechanism-based neuromodulation strategy for IBS-D treatment.
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