课题基金 / 基金详情

Mechanisms of airway neurogenic inflammation by asthma-inducing allergens

Mechanisms of airway neurogenic inflammation by asthma-inducing allergens
哮喘诱发过敏原引起气道神经源性炎症的机制
批准号:
8356178
负责人:
ARMEN N AKOPIAN
金额:
$18.68万
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-08-03 至 2014-07-31

项目摘要

项目成果

ARMEN N AKOPIAN的其他基金

相似基金

相关文献

中文摘要
翻译
描述(由申请人提供):哮喘是最常见的呼吸道慢性炎症性疾病。它影响了大约3410万美国人的一生,哮喘患者的数量还在继续增长。使用吸入短效β -2激动剂的标准治疗仅对急性症状有效。虽然在使用吸入皮质类固醇的同时避免过敏原和刺激物可能对一些患者有所帮助,但这些预防措施仍然无法完全阻止哮喘。此外,哮喘病例对现有的标准治疗会有不同的反应。因此,寻找对各种治疗有良好反应的哮喘亚组的具体机制是当前哮喘研究的关键目标。过敏原和环境刺激物在儿童和成人哮喘的发生和维持中起着关键作用。这是公认的
英文摘要
DESCRIPTION (provided by applicant): Asthma is the most common chronic inflammatory disease of the airways. It affects approximately 34.1 million Americans throughout their lifetime, and the number of people with asthma continues to grow. Standard treatment using an inhaled short-acting beta-2 agonist is only effective against acute symptoms. Though avoiding allergens and irritants while utilizing inhaled corticosteroids may help some patients, these preventatives are still ineffective in completely deterring asthma. Furthermore, cases of asthma will have varying responses to the standard treatments available. Accordingly, finding the specific mechanisms for the defined subgroups of asthma that respond well to various types of treatments is a current critical goal of asthma research. Allergens and environmental irritants play a key role in initiation and maintenance of asthma in children and adults. It is well accepted that airway inflammation plays an important role in the development of airway hyperresponsiveness (AHR) in asthmatic patients. Recent evidence demonstrates airway inflammation during asthma in animals and humans may be at least partially neurogenic in nature. This neurogenic inflammation is induced by neuropeptides released from airway innervating C-fibers of sensory neurons with nodose (ND), jugular, and dorsal root (T1-T6) ganglia (DRG) origin. However, the molecular and physiological mechanisms involving allergens and a combination of allergens and environmental irritants inducing neurogenic inflammation of airways are largely unknown. One of the possibilities is that neuropeptides such as substance P (SP) and calcitonin gene-related peptide (CGRP), which trigger neurogenic inflammation, could be released from sensory nerve terminals innervating airways upon stimulation by certain allergens. According to this mechanism, certain allergens would be able to promote neurogenic acute and/or chronic inflammation of the airways. To address this critical question of how exposure to certain allergens results in initiation of neurogenic inflammation of the airways, we hypothesize that certain asthma-inducing mold and house dust mite allergens - DerP1, DerP3&9 and PenC13 - belonging to the protease family initiate inflammation of the airways by activating the sensory neurons innervating these airways and by sensitizing the effects of acrolein and carvacrol (potent tobacco smoke and environmental irritants) on sensory neurons. This conceptually innovative hypothesis which proposes distinct mechanisms of airway inflammation by mold and house dust mite allergens has a strong potential for scientific and medical developments. PUBLIC HEALTH RELEVANCE: The management of asthma represents a major scientific and health care challenge as many of the currently used medications are ineffective in completely deterring asthma or may produce debilitating side effects. Here we propose a novel hypothesis for the initiation of neurogenic inflammation of airways by certain house dust mite and mold asthma-inducing allergens, and by a combination of these allergens and environmental irritants from cigarette smoke, smog and pollution. This conceptually innovative hypothesis has implications for both the scientific and medical fields by expanding our understanding of the role of the peripheral nervous system in initiation of airway inflammation by certain allergens, and by creating a foundation for novel therapeutic strategies aiming to correct the underlying causes of the initiation of asthma by allergens and environmental irritants.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Lymphotoxin-beta receptor peripheral signaling regulates the transition to inflammation and neuropathy-induced chronic pain
Lymphotoxin-Beta Receptor Peripheral Signaling Regulates the Transition to Inflammation and Neuropathy-Induced Chronic Pain
Lymphotoxin-beta receptor peripheral signaling regulates the transition to inflammation and neuropathy-induced chronic pain
海外基金