Kim Ji-Hyun, Yamamoto Takeshi, Lee Jaemin, Yashiro Tomoe, Hamada Takayuki, Hayashi Shusaku, Kadowaki Makoto
Division of Gastrointestinal Pathophysiology, Institute of Natural Medicine, University of Toyama.
Biomed Res. 2014;35(4):285-93. doi: 10.2220/biomedres.35.285.
Neuro-immune interaction in the gut is substantially involved in the maintenance of intestinal immune homeostasis and the pathology of intestinal immune diseases. We have previously demonstrated that mucosal mast cells and nerve fibers containing CGRP, a neurotransmitter of intrinsic enteric sensory neurons, are markedly increased and exist in close proximity to each other in the colon of food allergy (FA) mice. In the present study, a CGRP-receptor antagonist BIBN4096BS significantly alleviated allergic symptoms in the murine FA model. In addition, the elevated numbers of mucosal mast cells in the proximal colon of FA mice were significantly decreased in that of BIBN4096BS-treated FA mice. Thus, we investigated the effects of CGRP on calcium-independent process in degranulation of mucosal mast cells since CGRP increases intracellular cAMP levels, but not Ca(2+) concentration. CGRP did not alter a calcium ionophore A23187-increased cytosolic Ca(2+) concentration in mucosal-type bone marrow-derived mast cells (mBMMCs), but did augment microtubule reorganization in resting and A23187-activated mBMMCs. Furthermore, CGRP alone failed to cause the degranulation of mBMMCs, but CGRP significantly enhanced the degranulation of mBMMCs induced by A23187. Together, these data indicate that CGRP- enhanced microtubule reorganization augments IgE-independent/non-antigenic stimuli-induced mucosal mast cell degranulation, thereby contributing to the development of FA.
肠道中的神经-免疫相互作用在维持肠道免疫稳态和肠道免疫疾病的病理过程中起着重要作用。我们之前已经证明,在食物过敏(FA)小鼠的结肠中,黏膜肥大细胞和含有降钙素基因相关肽(CGRP,一种肠道内感觉神经元的神经递质)的神经纤维显著增加,并且彼此紧邻存在。在本研究中,一种CGRP受体拮抗剂BIBN4096BS显著减轻了小鼠FA模型中的过敏症状。此外,在接受BIBN4096BS治疗的FA小鼠近端结肠中,FA小鼠黏膜肥大细胞数量的增加显著减少。因此,由于CGRP可增加细胞内cAMP水平,但不改变Ca(2+)浓度,我们研究了CGRP对黏膜肥大细胞脱颗粒中不依赖钙的过程的影响。CGRP并未改变钙离子载体A23187增加的黏膜型骨髓来源肥大细胞(mBMMCs)胞质Ca(2+)浓度,但确实增强了静息和A23187激活的mBMMCs中的微管重组。此外,单独的CGRP未能导致mBMMCs脱颗粒,但CGRP显著增强了A2318