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Hence, for research purposes, there is a need for disease-like models of allergic rhinitis.
sciuri W620 seem to be the most promising, based on experimental studies in mouse models of allergic respiratory diseases.
In rodent models of allergic rhinitis (AR), epithelial histologic assessment necessitates prior decalcification of the nasal osseous structures.
In some instances, murine models of allergic asthma have not recapitulated the human findings, and have led to some costly failures in drug development.
ORMDL3 has also been implicated in endoplasmic reticulum-mediated calcium signaling and stress responses in immune cells [57], as well as in eosinophil trafficking, recruitment, and degranulation in murine models of allergic asthma [58].
Anti-asthma herbal medicine intervention (ASHMI™), a combination of three traditional Chinese medicinal herbs developed in our laboratory, has demonstrated efficacy in both mouse models of allergic asthma, and a double-blind placebo-controlled clinical trial in patients with asthma.
However, only a few studies have demonstrated its regulatory role in animal models of allergic disease.
Only a few studies have shown a regulatory role of this receptor in animal models of allergic diseases.
Murine models of allergic asthma have been used to understand the mechanisms of development and pathology in this disease.
A large majority of studies of mouse models of allergic airways disease utilize the Ovalbumin/Alum model.
Mouse models of allergic asthma have played crucial roles in our understanding of this disease in humans.
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