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Updated: Dec 10, 2025

Murine Model of Allergen Induced Asthma
Published on: May 14, 2012
Chrysin-loaded PLGA attenuates OVA-induced allergic asthma by modulating TLR/NF-κB/NLRP3 axis
Saheli Roy1, Krishnendu Manna2, Tarun Jha3
1Cancer Biology & Inflammatory Disorder, Indian Institute of Chemical Biology (CSIR-IICB), Kolkata, West Bengal, India.
Abstract:
Asthma, one of the significant public health problems, is triggered by certain inflammatory processes in the airways that are not addressed propitiously by current therapies. Though pieces of evidence on allergic asthma mitigation by the anti-inflammatory bioflavonoid chrysin (CHR) are accumulating, poor bioavailability, and low solubility curtail drug development. To overcome these shortcomings, CHR loaded nanoparticle (CHR-NP) was formulated, and its salutary effect in preclinical murine allergic asthma model via the peroral route was evaluated. The spherical nanosized particles showed slow, sustained release in vitro. Moreover, CHR-NP dramatically reduced the serum IgE, ovalbumin (OVA)-induced lung histological alteration, as well as Th2 (T-helper 2) cytokines in the bronchoalveolar lavage fluid (BALF). It also suppressed the elevated serum pro-inflammatory cytokines and their upstream TLR/NF-κB/NLRP3 pathway activation in lung superior to CHR and almost identical to dexamethasone (DEX). Thus this study suggests the potentiality of CHR-NP in ameliorating allergic asthma progression.
Insights
Chrysin nanoparticles effectively treat allergic asthma in mice by reducing inflammation and improving airway histology. This novel formulation offers a promising therapeutic strategy for asthma management.
Area of Science:
- * Pharmacology and Nanotechnology
- * Immunology and Respiratory Medicine
Background:
- * Asthma is a prevalent respiratory condition driven by airway inflammation, with current treatments having limitations.
- * Chrysin (CHR), a bioflavonoid, shows anti-inflammatory potential for allergic asthma but suffers from poor bioavailability and solubility.
- * Nanoparticle formulation is explored to enhance CHR delivery and efficacy.
Purpose of the Study:
- * To formulate and evaluate chrysin-loaded nanoparticles (CHR-NP) for the treatment of allergic asthma.
- * To assess the in vitro release profile and in vivo therapeutic effects of CHR-NP via oral administration.
- * To investigate the impact of CHR-NP on key inflammatory markers and pathways in a preclinical asthma model.
Main Methods:
- * Formulation of spherical, nanosized chrysin-loaded nanoparticles (CHR-NP) with sustained in vitro release.
- * Evaluation of CHR-NP in a murine model of ovalbumin (OVA)-induced allergic asthma.
- * Measurement of serum IgE, bronchoalveolar lavage fluid (BALF) Th2 cytokines, serum pro-inflammatory cytokines, and TLR/NF-κB/NLRP3 pathway activation.
Main Results:
- * CHR-NP exhibited slow and sustained drug release in vitro.
- * CHR-NP significantly reduced serum IgE levels and OVA-induced lung histological damage.
- * CHR-NP suppressed Th2 cytokines in BALF and attenuated pro-inflammatory cytokine signaling via the TLR/NF-κB/NLRP3 pathway, outperforming free CHR and nearing dexamethasone efficacy.
Conclusions:
- * Chrysin-loaded nanoparticles (CHR-NP) demonstrate significant potential for ameliorating allergic asthma progression.
- * The oral delivery of CHR-NP offers a viable strategy to overcome the bioavailability limitations of chrysin.
- * CHR-NP effectively modulates key inflammatory pathways involved in allergic asthma pathogenesis.
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