Recurrent infections drive persistent bladder dysfunction and pain via sensory nerve sprouting and mast cell activity

神经生长因子 肥大细胞 间质性膀胱炎 医学 固有层 感觉神经 泌尿系统 炎症 盆腔疼痛 膀胱 免疫学 感觉系统 粘膜下层 伤害 病理 内科学 受体 生物 上皮 外科 神经科学
作者
Byron W. Hayes,Hae Woong Choi,Abhay P. S. Rathore,Chunjing Bao,Jianling Shi,Yul Huh,Michael W. Kim,Andrea Mencarelli,Pradeep Bist,Lai Guan Ng,Chuyan Shi,Joo Hwan Nho,Aram Kim,Hana Yoon,Dong-Hoon Lim,Johanna L. Hannan,J. Todd Purves,Francis M. Hughes,Ru‐Rong Ji,Soman N. Abraham
出处
期刊:Science immunology [American Association for the Advancement of Science]
卷期号:9 (93): eadi5578-eadi5578 被引量:17
标识
DOI:10.1126/sciimmunol.adi5578
摘要

Urinary tract infections (UTIs) account for almost 25% of infections in women. Many are recurrent (rUTI), with patients frequently experiencing chronic pelvic pain and urinary frequency despite clearance of bacteriuria after antibiotics. To elucidate the basis for these bacteria-independent bladder symptoms, we examined the bladders of patients with rUTI. We noticed a notable increase in neuropeptide content in the lamina propria and indications of enhanced nociceptive activity. In mice subjected to rUTI, we observed sensory nerve sprouting that was associated with nerve growth factor (NGF) produced by recruited monocytes and tissue-resident mast cells. Treatment of rUTI mice with an NGF-neutralizing antibody prevented sprouting and alleviated pelvic sensitivity, whereas instillation of native NGF into naïve mice bladders mimicked nerve sprouting and pain behavior. Nerve activation, pain, and urinary frequency were each linked to the presence of proximal mast cells, because mast cell deficiency or treatment with antagonists against receptors of several direct or indirect mast cell products was each effective therapeutically. Thus, our findings suggest that NGF-driven sensory sprouting in the bladder coupled with chronic mast cell activation represents an underlying mechanism driving bacteria-independent pain and voiding defects experienced by patients with rUTI.
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