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Extract Alleviates Allergic Airway Inflammation via Balancing TH1/TH2 Homeostasis and Inhibiting Mast Cell Degranulation. | LitMetric

AI Article Synopsis

  • A new term, "combined allergic rhinitis and asthma syndrome (CARAS)," describes patients who suffer from both allergic rhinitis and asthma due to an imbalance of TH1/TH2 immune responses and mast cell degranulation.
  • A study tested the effects of an herbal extract, AGE, on CARAS in a mouse model, finding that AGE reduced symptoms like nasal rubbing and sneezing, while also lowering IgE and histamine levels.
  • AGE treatment improved the histological changes in nasal and lung tissues, shifted the immune response towards TH1 favorability by increasing IL-12 and T-bet levels, and significantly suppressed TH2 cytokines, suggesting AGE's potential as a therapeutic option for CARAS

Article Abstract

A new terminology "combined allergic rhinitis and asthma syndrome (CARAS)" was introduced to describe patients suffering from both allergic rhinitis (AR) and asthma. The pathogenesis of allergic airway inflammation has been well known, with the main contribution of TH1/TH2 imbalance and mast cell degranulation. has been used as an herbal medicine with its hepaprotective, anti-inflammatory, and antioxidant properties. In this study, the effect of extracts (AGE) on the ovalbumin (OVA)-induced CARAS mouse model was investigated. AGE administration significantly alleviated the nasal rubbing and sneezing, markedly down-regulated both OVA-specific IgE, IgG, and histamine levels, and up-regulated OVA-specific IgG in serum. The altered histology of nasal and lung tissues of CARAS mice was effectively ameliorated by AGE. The AGE treatment group showed markedly increased levels of the TH1 cytokine interleukin (IL)-12 and TH1 transcription factor T-bet. In contrast, the levels of the TH2 cytokines, including IL-4, IL-5, IL-13, and the TH2 transcription factor GATA-3, were notably suppressed by AGE. Moreover, AGE effectively prevented mast cell degranulation in vitro and mast cell infiltration in lung tissues in vivo. Based on these results, we suggest that AGE could be a potential therapeutic agent in OVA-induced CARAS by virtue of its role in balancing the TH1/TH2 homeostasis and inhibiting the mast cell degranulation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9739372PMC
http://dx.doi.org/10.3390/ijms232315377DOI Listing

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