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Lower esophageal sphincter muscle of patients with achalasia exhibits profound mast cell degranulation

贲门失弛缓症 脱颗粒 肥大细胞 类胰蛋白酶 医学 海勒肌切开术 肌间神经丛 内科学 病理 巨结肠 食管 胃肠病学 免疫学 肌切开术 免疫组织化学 受体
作者
Melissa R. Nelson,Xi Zhang,Robert M. Genta,Kevin Turner,Eitan Podgaetz,Sheré Paris,Jacob Cardenas,Jinghua Gu,Steven G. Leeds,Marc A. Ward,Anh D. Nguyen,Vani J. Konda,Glenn T. Furuta,Zui Pan,Rhonda F. Souza,Stuart J. Spechler
出处
期刊:Neurogastroenterology and Motility [Wiley]
卷期号:33 (5) 被引量:27
标识
DOI:10.1111/nmo.14055
摘要

Abstract Background Eosinophils and mast cells are key effectors of allergy. When they accumulate in the esophagus, their myoactive, pro‐inflammatory, and cytotoxic products potentially could cause achalasia‐like motility abnormalities and neuronal degeneration. We hypothesized that there is an allergy‐mediated form of achalasia. Methods LES muscle samples obtained during Heller myotomy from patients with achalasia or EGJ outflow obstruction (EGJOO) and from organ donor controls were immunostained for tryptase. Eosinophil and mast cell density, and mast cell degranulation were assessed. LES muscle was evaluated by qPCR for genes mediating smooth muscle Ca 2+ handling and contraction. Key Results There were 13 patients (7 men, median age 59; 10 achalasia, 3 EGJOO) and 7 controls (4 men, median age 42). Eosinophils were infrequent in LES muscle, but mast cells were plentiful. Patients and controls did not differ significantly in LES mast cell density. However, 12 of 13 patients exhibited profound LES mast cell degranulation involving perimysium and myenteric plexus nerves, while only mild degranulation was seen in 2 of 7 controls. Hierarchical clustering analysis of qPCR data revealed two “mototype” LES gene expression patterns, with all type II patients in one mototype, and type I and III patients in the other. Conclusions & Inferences LES muscle of patients with achalasia or EGJOO exhibits striking mast cell degranulation, and patients with different achalasia manometric phenotypes exhibit different LES patterns of expression for genes mediating Ca 2+ handling and muscle contraction. Although these findings are not definitive, they support our hypothesis that achalasia can be allergy‐driven.

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