Immature Sword Bean (Canavalia gladiata) Pod Alleviates Allergic Rhinitis (A Double-Blind Trial) Through PI3K/Akt/mTOR Signaling

未成熟剑豆 (Canavalia gladiata) 豆荚通过 PI3K/Akt/mTOR 信号传导缓解过敏性鼻炎(双盲试验)

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作者:Hye-Jeong Hwang, Hyeock Yoon, Joo-Hyung Cho, Seong Lee, Kyung-A Hwang, Young Jun Kim

Background

Allergic rhinitis is an IgE-mediated condition of nasal congestion, runny nose, and sneezing which significantly impairs the quality of life. Current treatments, including antihistamines, often have long-term side effects, leading patients to seek safer alternatives. Objectives: Therefore, in this study, we aimed to evaluate the symptom relief efficacy of immature sword bean pod (SBP) extract, a natural material, in patients with allergic rhinitis, explore the mechanisms by which SBP regulates allergic immune responses, and evaluate its efficacy and safety as a functional ingredient in the management of allergic rhinitis.

Conclusions

These findings suggest that the SBP extract is a promising natural treatment for allergic rhinitis, offering both efficacy and safety by improving key symptoms and reducing inflammatory responses.

Methods

In a double-blind, placebo-controlled, randomized trial involving 64 participants with perennial allergic rhinitis, the subjects were assigned to receive either SBP or placebo orally for six weeks.

Results

The SBP group exhibited significant improvements in nasal congestion (interaction p = 0.031), RQLQ (interaction p = 0.001), sleep (interaction p = 0.004), systemic reaction (interaction p = 0.002), daily life (interaction p = 0.047), and nasal symptoms (interaction p = 0.002). SBP treatment in EoL-1 and HMC-1 cells also led to a notable reduction in eosinophil cationic protein levels (p < 0.05), a key biomarker of allergic inflammation, by inhibiting PI3K/Akt/mTOR activation, resulting in decreased eosinophil activity. Conclusions: These findings suggest that the SBP extract is a promising natural treatment for allergic rhinitis, offering both efficacy and safety by improving key symptoms and reducing inflammatory responses.

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