在上呼吸道 - - B 细胞侧的上呼吸道中对吸入过敏原的过敏敏感化
Ola Grimsholm1, Mohammed Zghaebi2, Bita Hambrecht1
1Department of Pathophysiology and Allergy Research, Center of Pathophysiology, Infectiology and Immunology, Medical University of Vienna, Vienna, Austria.
Allergy
|January 24, 2026
概括
呼吸上皮质屏障功能障碍通过促进对常见过敏原的敏感性来驱动过敏性疾病. B细胞是IgE生产的关键参与者,使其成为过敏性鼻炎和喘等疾病的治疗点.
科学领域:
- 免疫学 免疫学 免疫学
- 过敏研究 研究过敏
- 呼吸系统医学 呼吸系统医学
背景情况:
- 在全球范围内,过敏性疾病正在增加,这与呼吸道上皮质屏障受损有关.
- 吸入的过敏原如花粉和灰尘虫会触发IgE介导的反应,导致过敏性鼻炎 (AR) 和喘.
- B细胞是过敏反应的核心,产生过敏原特定的IgE并驱动疾病的发病.
研究的目的:
- 探索呼吸道粘膜中过敏敏感化的机制.
- 突出B细胞和上皮细胞在过敏疾病中的作用.
- 讨论影响过敏原运输和免疫激活的因素.
主要方法:
- 关于过敏疾病机制的当前文献的综述.
- 分析B细胞在IgE产生和免疫反应中的作用.
- 对上皮细胞对过敏原的先天性免疫反应的检查.
- 讨论过敏原运输和免疫细胞激活途径.
主要成果:
- 呼吸上皮质屏障功能障碍是过敏敏感化的关键驱动因素.
- 通过IgE生产和其他功能,B细胞在AR和喘中起着至关重要的作用.
- 皮质细胞释放警示素,引发2型炎症.
- 过敏原被运送到淋巴结,激活T毛囊辅助细胞并驱动IgE反应.
结论:
- 了解B细胞功能和上皮反应对于向过敏性疾病至关重要.
- 微生物组和环境污染物等因素调节过敏敏感性.
- 诸如淋巴体有机体等先进模型显示出对研究过敏敏感性的前景.
相关概念视频
Allergic Reactions
32.2K
Overview
32.2K
Anatomy of Respiratory System I: Upper Respiratory Tract
5.0K
The upper respiratory tract plays a vital role in the respiratory system, comprising several structures that facilitate air intake and prepare air for the lungs. It also serves as the first line of defense against pathogens and particles. This tract includes the nose and nasal cavity, the oral cavity, the paranasal sinuses, and the pharynx, each with specific functions and features.
Nose and nasal cavity
The nose and nasal cavity represent the main external openings of the respiratory tract....
Nose and nasal cavity
The nose and nasal cavity represent the main external openings of the respiratory tract....
5.0K
Anatomy of Respiratory System II: Lower Respiratory Tract
3.4K
The lower respiratory tract is anatomically composed of several vital structures, including the larynx, trachea, bronchial tree, alveoli, lungs, and pleurae. Each component has a specific function, and all are intricately connected to ensure efficient respiration.
The Larynx
It is located between the pharynx and the trachea, acts as a passageway for air, and hosts several critical structures, such as the epiglottis, vocal cords, and glottis. The epiglottis acts as a gateway, guiding food to the...
The Larynx
It is located between the pharynx and the trachea, acts as a passageway for air, and hosts several critical structures, such as the epiglottis, vocal cords, and glottis. The epiglottis acts as a gateway, guiding food to the...
3.4K
Upper Respiratory Drugs: Decongestants
857
Decongestants are a class of medications used primarily to alleviate nasal congestion, a common symptom resulting from allergies, colds, sinusitis, and other upper respiratory tract infections. These drugs work by activating α-adrenergic receptors, constricting small blood vessels in the nasal membranes. This action results in the opening of clogged nasal passages, thereby facilitating sinus drainage and relieving congestion.
Most decongestants are readily available over-the-counter in...
Most decongestants are readily available over-the-counter in...
857
Upper Respiratory Drugs: First and Second-Generation Antihistamines
1.2K
Antihistamines are a class of drugs widely used to alleviate the symptoms of allergies, such as sneezing, itching, and nasal congestion. They work by inhibiting the actions of histamine, which is released by immune cells in response to allergenic substances or tissue injuries.
Histamine binds to specific receptor sites, known as H1 receptors, on tissue cells, triggering inflammation and swelling. Antihistamines combat these effects by competing with histamine for these receptor sites. By...
Histamine binds to specific receptor sites, known as H1 receptors, on tissue cells, triggering inflammation and swelling. Antihistamines combat these effects by competing with histamine for these receptor sites. By...
1.2K
Drugs Used in Upper Respiratory Disorders: Overview
647
Upper respiratory tract disorders, including viral infections and allergic rhinitis, cause significant discomfort and disrupt daily life. Managing these conditions involves a variety of drugs, such as antihistamines, intranasal steroids, decongestants, antitussives, expectorants, and mucolytics. Specific examples of drugs in each category are provided.
Antihistamines (e.g., Benadryl) block histamines from binding. Histamines are chemicals released during an allergic reaction in the body. As a...
Antihistamines (e.g., Benadryl) block histamines from binding. Histamines are chemicals released during an allergic reaction in the body. As a...
647


